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Effects of Soybean Oligosaccharides Extracted from Defatted Soybean Meal on Gut Microbiota and Metabolites during in Vitro Fermentation Process 被引量:1
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作者 SU Tingting YANG Xiyuan +6 位作者 YU Qiaoru WU Mengna XU Lei WANG Hui MU Xindi YAO Di WANG Changyuan 《食品科学》 北大核心 2025年第11期164-179,共16页
To investigate the in vitro digestion and fermentation properties of soybean oligosaccharides(SBOS)extracted from defatted soybean meal,the changes in monosaccharide composition and molecular mass were analyzed.Subseq... To investigate the in vitro digestion and fermentation properties of soybean oligosaccharides(SBOS)extracted from defatted soybean meal,the changes in monosaccharide composition and molecular mass were analyzed.Subsequently,the effect of SBOS on microbial community structure and metabolites was studied by 16S rRNA gene sequencing and untargeted metabolomics based on liquid chromatography-mass spectrometry.Results showed that SBOS was not easily enzymolyzed during simulated digestion and could reach the large intestine through the digestive system.The significant decrease in the molecular mass of SBOS after in vitro fermentation indicated its utilization by the gut microbiota,which increased the contents of short-chain fatty acids and lactic acid,thereby reducing the pH of the fermentation broth.Moreover,the core community was found to consist of Blautia,Lactobacillaceae,and Pediococcus.SBOS up-regulated beneficial differential metabolites such as myo-inositol,lactose,and glucose,which were closely related to galactose,amino sugar,and nucleotide sugar metabolism.This study will provide a reference for exploring the relationship between the gut microbiota and the metabolites of SBOS,and provide a basis for the development and application of SBOS as an ingredient for functional products. 展开更多
关键词 soybean oligosaccharides simulated digestion fecal fermentation gut microbiota METABOLITES
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Optimizing canopy-spacing configuration increases soybean yield under high planting density 被引量:3
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作者 Ruidong Li Cailong Xu +4 位作者 Zongsheng Wu Yifan Xu Shi Sun Wenwen Song Cunxiang Wu 《The Crop Journal》 2025年第1期233-245,共13页
Dense cropping increases crop yield but intensifies resource competition,which reduces single plant yield and limits potential yield growth.Optimizing canopy spacing could enhance resource utilization,support crop mor... Dense cropping increases crop yield but intensifies resource competition,which reduces single plant yield and limits potential yield growth.Optimizing canopy spacing could enhance resource utilization,support crop morphological development and increase yield.Here,a three-year study was performed to verify the feasibility of adjusting row spacing to further enhance yield in densely planted soybeans.Of three row-spacing configurations(40-40,20-40,and 20-60 cm)and two planting densities(normal 180,000 plants ha 1 and high 270,000 plants ha 1).The differences in canopy structure,plant morphological development,photosynthetic capacity and their impact on yield were analyzed.Row spacing configurations have a significant effect on canopy transmittance(CT).The 20-60 cm row spacing configuration increased CT and creates a favorable canopy light environment,in which plant height is reduced,while branching is promoted.This approach reduces plant competition,optimizes the developments of leaf area per plant,specific leaf area,leaf area development rate,leaf area duration and photosynthetic physiological indices(F_(v)/F_(m),ETR,P_(n)).The significant increase of 11.9%-34.2%in canopy apparent photosynthesis(CAP)is attributed to the significant optimization of plant growth and photosynthetic physiology through CT,an important contributing factor to yield increases.The yield in the 20-60 cm treatment is 4.0%higher than in equidistant planting under normal planting density,but 5.9%under high density,primarily driven by CAP and pod number.These findings suggest that suitable row spacing configurations optimize the light environment for plants,promote source-sink transformation in soybeans,and further improve yield.In practice,a 20-60 cm row spacing configuration could be employed for high-density soybean planting to achieve a more substantial yield gain. 展开更多
关键词 soybean Planting density Row-spacing configuration Canopy transmittance Yield
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Improvement of neutral protease activity of Bacillus amyloliquefaciens LX-6 by combined ribosome engineering and medium optimization and its application in soybean meal fermentation
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作者 Yifan ZHU Xinyi HUANG +3 位作者 Tao HAN Jiteng WANG Xiaoping YU Zheng MA 《Journal of Zhejiang University-Science B(Biomedicine & Biotechnology)》 2025年第8期805-812,共8页
Soybean meal(SBM)prepared by soybean crushing is the most popular protein source in the poultry and livestock industries(Cai et al.,2015)due to its economic manufacture,high protein content,and good nutritional value.... Soybean meal(SBM)prepared by soybean crushing is the most popular protein source in the poultry and livestock industries(Cai et al.,2015)due to its economic manufacture,high protein content,and good nutritional value.Despite these benefits,SBM contains various antigen proteins such as glycinin andβ-conglycinin,which account for approximately 70%of the total proteins of the SBM and reduce digestibility and damage intestinal function(Peng et al.,2018). 展开更多
关键词 damage intestinal function peng antigen proteins soybean crushing ribosome engineering soybean meal fermentation neutral protease Bacillus amyloliquefaciens lx soybean meal sbm prepared
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Soyasaponin β-glucosidase confers soybean resistance to pod borer(Leguminivora glycinivorella)
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作者 Chengyong Feng Xindan Xu +3 位作者 Jia Yuan Mingyu Yang Fanli Meng Guodong Wang 《aBIOTECH》 2025年第2期160-173,共14页
Plant specialized metabolites are commonly stored in glycosylated forms within plant cells,with their homeostasis regulated by glycosyltransferases andβ-glucosidases(BGLUs,also known asβ-glucoside hydrolases(E.C.3.2... Plant specialized metabolites are commonly stored in glycosylated forms within plant cells,with their homeostasis regulated by glycosyltransferases andβ-glucosidases(BGLUs,also known asβ-glucoside hydrolases(E.C.3.2.1.21)).Soyasaponins,the predominant triterpenoid compounds(C30)in soybean seeds,contain two sugar moieties attached at the C3 and C22 positions.While glycosyltransferases involved in soyasaponin biosynthesis have been well characterized,the role of BGLUs in soyasaponin homeostasis remains unclear.In this study,we identified GmSSBG1(Soyasaponinβ-glucosidase1;Glyma.07G258700)as a candidate gene potentially involved in soyasaponin homeostasis through gene to gene co-expression analysis.Biochemical assays demonstrated that GmSSBG1 specifically hydrolyzes arabinose residues at the C22 position of A0-and B0-series soyasaponins.Loss-of-function mutations in GmSSBG1 led to a significant accumulation of A0-and B0-series soyasaponins in mutant seeds,which correlated with a pronounced decrease in resistance to the soybean pod borer(Leguminivora glycinivorella).Our findings provide critical insights into the regulatory mechanisms underlying soyasaponin homeostasis and lay a theoretical foundation for molecular breeding strategies aimed at developing soybean lines with enhanced resistance to soybean pod borer,even to other insect pests. 展开更多
关键词 soybean SOYASAPONIN Β-GLUCOSIDASE soybean pod borer HOMEOSTASIS
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Soybean variety influences the advantages of nutrient uptake and yield in soybean/maize intercropping via regulating root-root interaction and rhizobacterial composition
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作者 Tianqi Wang Jihui Tian +7 位作者 Xing Lu Chang Liu Junhua Ao Huafu Mai Jinglin Tan Bingbing Zhang Cuiyue Liang Jiang Tian 《Journal of Integrative Agriculture》 2025年第10期4048-4062,共15页
Maize/soybean intercropping systems are commonly used in developing countries,but few studies have been performed to elucidate the differences in nutrient efficiency and rhizosphere microbiome,especially when maize is... Maize/soybean intercropping systems are commonly used in developing countries,but few studies have been performed to elucidate the differences in nutrient efficiency and rhizosphere microbiome,especially when maize is intercropped with different soybean varieties.In this study,field experiments were conducted to compare the growth and yield of two soybean(Glycine max)varieties,BD2 and YC03-3,and one maize(Zea mays)variety,Huazhen,in mono-cropped and intercropped cultures.The plant biomass and N content of both crops in BD2/maize intercropping were significantly improved compared to their monoculture,but no such effects were observed in the plants of YC03-3/maize intercropping.The yield of BD2 intercropped with maize exhibited a 37.5%increment above that of BD2 in monoculture.Moreover,19.2-29.1%longer root length of maize and 19.0-39.4%larger root volume of BD2 were observed in BD2/maize intercropping than in monoculture,but no growth advantage was observed in YC03-3/maize intercropping.Maize showed root avoidance when intercropped with BD2,but space competition when intercropped with YC03-3.16S rRNA amplicon sequencing showed that compared with the monoculture system,rhizobacteria community composition in BD2/maize intercropping changed more significantly than that of the YC03-3/maize intercropping system.In BD2/maize intercropping,most of the rhizobacteria community biomarker bacteria of BD2 were positively correlated with plant biomass,as well as plant P and N content.Maize tended to recruit Rhizobiales and Proteobacteria,which showed positive correlation with plant biomass and N content,respectively,as well as soil available N.In conclusion,soybean varieties determined the advantages of maize/soybean intercropping through root-root interactions and modification of rhizobacteria communities.Our insight emphasizes a linkage between root traits and the rhizobacteria community,which shows the importance of optimizing intercropping systems by selection of appropriate crop varieties. 展开更多
关键词 maize/soybean intercropping roots bacterial community soybean variety MAIZE
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Gma-miR398c/d negatively regulates soybean resistance to Soybean mosaic virus by targeting SOD family genes
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作者 Bowen Li Liqun Wang +9 位作者 Xueyan Qian Hui Liu Tongtong Jin Jinlong Yin Ting Hu Mengzhuo Liu Dongquan Guo Kai Li Junyi Gai Haijian Zhi 《The Crop Journal》 2025年第5期1490-1502,共13页
Soybean mosaic virus(SMV)poses a substantial threat to the yield and quality of soybean(Glycine max(L.)Merr.),leading to significant economic losses in soybean production.However,the mining of SMVresistance loci and t... Soybean mosaic virus(SMV)poses a substantial threat to the yield and quality of soybean(Glycine max(L.)Merr.),leading to significant economic losses in soybean production.However,the mining of SMVresistance loci and the exploration of the underlying disease resistance mechanisms remain relatively limited.MicroRNAs(miRNAs)are a class of post-transcriptional regulators that play a pivotal role in modulating plant growth,development and responding to various stresses.In this study,we demonstrated the function of the “miR398c/d-GmCSDs”module between soybean resistant and susceptible varieties,focusing on its differential regulatory roles in SMV infection.Specifically,SMV infection downregulated gma-miR398c/d expression in the resistant variety(Qihuang 1,QH),while upregulated them in the susceptible variety(Nannong 1138-2,NN).Transient expression assay in N.benthamiana confirmed that gma-miR398c/d can target six superoxide dismutase(SOD)family genes,which responded to SMV infection in both varieties.Stable overexpression of Gma-MIR398c/d in soybean or inhibition of the corresponding target genes’expression via Bean pod mottle virus(BPMV)-induced gene silencing(VIGS)led to reduced H_(2)O_(2)content and thereby promoted SMV infection.Conversely,plants overexpressing the target genes exhibited the opposite phenotypes.The functions of gma-miR398c/d and their target genes were further validated in N.benthamiana through transient co-expression with SMV infectious clone(pSC7-GFP),indicating that gma-miR398c/d negatively regulated soybean resistance to SMV,while the target genes positively contributed to disease resistance.Collectively,our findings provide novel insights into the regulatory mechanisms underlying soybean resistance to SMV. 展开更多
关键词 soybean soybean mosaic virus MiR398 Target gene Reactive oxygen species
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Application Effects of Various Herbicides and Essential Techniques in Corn and Soybean Strip Intercropping Fields
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作者 Shandong LI Min WANG +2 位作者 Shaoguo ZHANG Yaling ZHAO Tingting YANG 《Plant Diseases and Pests》 2025年第2期19-23,共5页
[Objectives]To address the weeding challenges within the corn and soybean strip intercropping field and identify appropriate herbicide types and application methods suitable for the corn and soybean strip intercroppin... [Objectives]To address the weeding challenges within the corn and soybean strip intercropping field and identify appropriate herbicide types and application methods suitable for the corn and soybean strip intercropping fields in Siyang County.[Methods]The trial comprised six herbicide treatments and one blank control,with investigations conducted to assess efficacy,safety,and yield.[Results]Each herbicide treatment effectively controlled weeds,demonstrated high safety,and enhanced the yields of both soybeans and corn.The combined application of soil sealing with stem and leaf spray exhibited superior overall weed control compared to soil sealing alone.At 28 d following stem and leaf spray,the plant control effect and fresh weight control effect against weeds in the combined treatment of soil sealing with stem and leaf spray all exceeded 89%.[Conclusions]This study offers technical support for advancing the practice of strip intercropping between corn and soybeans. 展开更多
关键词 CORN soybean STRIP INTERCROPPING Control effect HERBICIDE Demonstration test
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Genetic dissection and validation of a new dominant QTL associated with chlorophyll content and its regulatory networks analysis in soybean
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作者 Yuxin Qi Xiangwen Pan +4 位作者 Yanping Wang Chaoyue Zhao Tong Zhang Xiaomei Wang Feifei Wang 《The Crop Journal》 2025年第4期1106-1115,共10页
Leaf-color mutants have proven valuable for studying chlorophyll metabolism,photosynthesis,and yield improvement.In this study,we identified a yellow-leaf(yl)mutant in soybean(Glycine max),characterized by reduced chl... Leaf-color mutants have proven valuable for studying chlorophyll metabolism,photosynthesis,and yield improvement.In this study,we identified a yellow-leaf(yl)mutant in soybean(Glycine max),characterized by reduced chlorophyll accumulation,lower net photosynthesis rate,and fewer grain number per plant than the wild type.To identify genes associated with chlorophyll content,we performed a largescale linkage mapping study using recombinant inbred lines from a cross between the yl mutant and a green-leaf cultivar across three environments.Using quantitative trait locus sequencing(QTL-seq)analysis,we mapped 12 QTL to chromosomes 5,13,15,19,and 20.Of these QTL,one new dominant locus with the largest LOD,named qCC1,was identified consistently and explained 31.73% of the total phenotypic variation on average.Notably,qCC1 was also associated with yield-related traits,including plant height and pod number per plant.Fine-mapping narrowed down qCC1 to an 82.29-kb region.Within this interval,we identified Glyma.15 g087500.1,encoding an ankyrin repeat-containing protein,as the most likely candidate gene,because its homologs are reported to function in thylakoid membrane biogenesis during plastid development.Phenotypic analysis of near-isogenic lines(NILs)revealed that those harboring the qCC1 allele conferring green leaves displayed significantly enhanced chlorophyll content by 136.53%-323.92%,net photosynthesis rate by 11.64%-42.13%,and yield by 111.32% compared with NILs carrying the allele conferring yellow leaves.Comparative transcriptome profiling of NILs coupled with RT-qPCR validation demonstrated that qCC1 up-regulated one differentially expressed gene(DEG)associated with chlorophyll biosynthesis and six DEGs related to photosystem,whereas it downregulated one gene involved in chlorophyll degradation.These findings provide valuable insights into the biological function and regulatory mechanism of chlorophyll metabolism and offer guidance for breeding soybean varieties with enhanced photosynthetic efficiency and high yield. 展开更多
关键词 soybean Yellow leaf CHLOROPHYLL QTL YIELD
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Unlocking soybean potential:genetic resources and omics for breeding
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作者 Zongbiao Duan Liangwei Xu +6 位作者 Guoan Zhou Zhou Zhu Xudong Wang Yanting Shen Xin Ma Zhixi Tian Chao Fang 《Journal of Genetics and Genomics》 2025年第11期1337-1346,共10页
Soybean(Glycine max)is a vital foundation of global food security,providing a primary source of highquality protein and oil for human consumption and animal feed.The rising global population has significantly increase... Soybean(Glycine max)is a vital foundation of global food security,providing a primary source of highquality protein and oil for human consumption and animal feed.The rising global population has significantly increased the demand for soybeans,emphasizing the urgency of developing high-yield,stresstolerant,and nutritionally superior cultivars.The extensive collection of soybean germplasm resources—including wild relatives,landraces,and cultivars—represents a valuable reservoir of genetic diversity critical for breeding advancements.Recent breakthroughs in genomic technologies,particularly highthroughput sequencing and multi-omics approaches,have revolutionized the identification of key genes associated with essential agronomic traits within these resources.These innovations enable precise and strategic utilization of genetic diversity,empowering breeders to integrate traits that improve yield potential,resilience to biotic and abiotic stresses,and nutritional quality.This review highlights the critical role of genetic resources and omics-driven innovations in soybean breeding.It also offers insights into strategies for accelerating the development of elite soybean cultivars to meet the growing demands of global soybean production. 展开更多
关键词 soybean Genetic resources OMICS BREEDING Crop improvement
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A rapid analysis method to discover antioxidant active components and mechanisms in soybean:untargeted metabolomics combined with network pharmacology and spectrum-effect relationship-component knockout-identification techniques
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作者 Xuqiang Liu Xinjing Meng +3 位作者 Dongqi Liu Junshang Liu Mengqi Lan Wenyi Kang 《Food Science and Human Wellness》 2025年第9期3753-3763,共11页
Soybean is widely used in diets,and numerous reports have highlighted its antioxidant properties.However,constructing a methodology for rapid identifying and predicting a series of antioxidant active ingredients in So... Soybean is widely used in diets,and numerous reports have highlighted its antioxidant properties.However,constructing a methodology for rapid identifying and predicting a series of antioxidant active ingredients in Soybean presents certain challenges.Therefore,we introduced the spectrum-effect relationship-ingredient knockout identification technique to identify a series of antioxidant active ingredients in soybean.By combining untargeted metabolomics with network pharmacology,we predicted the antioxidant active ingredients and their target sites.We successfully identified 4 antioxidant active compounds(daidzein,genistein,daidzein,and glycitin)and 10 corresponding antioxidant targets(epidermal growth factor receptor(EGFR),estrogen receptor 1(ESR1),steroid receptor coactivator(SRC),tumor necrosis factor(TNF),kinase insert domain receptor(KDR),AKT serine/threonine kinase 1(AKT1),growth factor receptor bound protein 2(GRB2),signal transducer and activator of transcription1(STAT1),mitogen-activated protein kinase 8(MAPK8),B-cell lymphoma-2(BCL2))by our analysis.The validation results from cell experiments revealed that glycitin exhibited the best antioxidant activity and significantly influenced the expression of EGFR and the proteins associated with nuclear factor erythroid 2-related factor 2/NAD(P)H quinone dehydrogenase 1(NRF2/NQO1)signaling pathways.These findings were consistent with the predicted outcomes and were further confirmed in a zebrafish model.It suggests that glycitin may exert antioxidant effects by regulating the expression of EGFR,NRF2,and NQO1 proteins.The results demonstrate that a rapid analytical method for determining antioxidant activity was established. 展开更多
关键词 soybean ANTIOXIDANT Metabolomics Network pharmacology Spectrum-Effect relationship
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Study on Current Situation,Existing Problems and Countermeasures of Soybean Cultivation
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作者 Huajun SUN 《Agricultural Biotechnology》 2025年第1期9-12,18,共5页
As one of the world's three major food crops and an important economic and oil crop,soybean plays a crucial role in ensuring food safety.In recent years,there are many problems in soybean cultivation,production an... As one of the world's three major food crops and an important economic and oil crop,soybean plays a crucial role in ensuring food safety.In recent years,there are many problems in soybean cultivation,production and processing.In view of this situation,this paper comprehensively expounded and decomposed the cultivation situation,existing problems,specific countermeasures and conclusions,so as to re-recognize them.This study provides reference materials for the sustainable and healthy development of the soybean industry. 展开更多
关键词 soybean Cultivation situation PROBLEMS COUNTERMEASURE
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Diethyl aminoethyl hexanoate(DA-6)and planting density optimize soybean growth and yield formation in maize-soybean strip intercropping
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作者 Kai Luo Xiaoting Yuan +12 位作者 Kejing Zhang Yuanyuan Xue Zhidan Fu Ping Lin Yiling Li Yuze Li Tian Pu Xintong Qi Yang Li Xiaochun Wang Wenyu Yang Jaume Flexas Taiwen Yong 《The Crop Journal》 2025年第4期1259-1270,共12页
The exogenous plant growth regulator,diethyl aminoethyl hexanoate(DA-6),in combination with suitable varieties and planting densities,is important to increase yield in the maize-soybean strip intercropping system.To i... The exogenous plant growth regulator,diethyl aminoethyl hexanoate(DA-6),in combination with suitable varieties and planting densities,is important to increase yield in the maize-soybean strip intercropping system.To identify the role of DA-6 in mitigating high-density stress and increasing yield,we conducted a two-year field experiment examining changes in branching architecture and other yield traits of soybeans in maize-soybean strip intercropping systems.In the planting system,two soybean cultivars(ND:Nandou 25 and QH:Qihuang 34)were grown under three planting densities(D1:102,000 plants ha^(-1),D2:130,000 plants ha^(-1),D3:158,000 plants ha^(-1))with DA-6 treatments(DA0:water control;DA60:60 mg L^(-1);DA100:100 mg L^(-1)).Applying DA-6 at 60 mg L^(-1)at the fourth trifoliolate leaf stage increased soybean yield,with QH yield rising by 22.4% and 29.5% at D3 density,and ND yield by 29.5% and 30.0% at D2 density in 2022 and 2023,respectively,compared with D1 under DA0.DA-6improved photosynthesis in both varieties under D2 density,with DA60 increasing ND canopy photosynthetic rate by 15.1%-16.4% and QG by 9.1%-20.6% over two years.In ND,DA-6 enhanced branching,raising the leaf area index by 37%,branch number from 3.6 to 4.7 per plant,and total pod number by 19.7%.In QH,yield grains were mainly due to a 17% increase in the number of stem pods and a 6.5% improvement in hundred-grain weight.In the maize-soybean strip intercropping system,QH achieved a high yield by forming a high-density(D2 to D3)main stem pod,and ND by combining moderate density(D1 to D2)with DA-6-induced branching. 展开更多
关键词 soybean Strip intercropping DA-6 Grain filling Yield formation Planting density
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Multi-Environment Evaluation of Soybean Genotypes for Yield, Stability, and Trait Associations in Croatia
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作者 Ivica Delic Goran Jukic +1 位作者 Ivan Varnica Valentina Spanic 《Phyton-International Journal of Experimental Botany》 2025年第10期3189-3203,共15页
This study evaluated agro-morphological traits,grain quality traits,and phenotypic stability of nine soybean genotypes across four environments over two growing seasons(2022–2023).Traits such as days to flowering,day... This study evaluated agro-morphological traits,grain quality traits,and phenotypic stability of nine soybean genotypes across four environments over two growing seasons(2022–2023).Traits such as days to flowering,days to maturity,and disease symptoms were monitored throughout the season.At maturity,parameters including grain yield,grain oil and protein content,1000-seed weight,test weight,scores of lodgings,shattering,plant height,and first pod height were evaluated.In addition,18 morphological traits were scored,of which eight were sufficiently variable for further analysis.In terms of environmental stability,genotypes 2 and 13 excelled,while genotypes 12 and 14 consistently yielded the maximum grain production regardless of season or location.Through the application of PCA,we observed significant genotypic variance along with distinct clustering patterns based on year and location,with overall higher yields observed in the 2023 season.The 2022 season was marked by uneven rainfall that contributed to greater disease pressure.Grain yield exhibited a positive association with test weight and the timing of flowering/maturity,whereas lodging demonstrated a weak yet positive correlation.Although the lodging ratings were generally modest,there seems to be an indirect association between genotypes with somewhat higher scores and enhanced grain yield.Among morphological traits,the intensity of green leaf color and leaf blistering had the strongest influence on grain yield.This study shed information on key distinctions in characteristics and how they relate to grain yield,which could lead to future improvements in output.Some genotypes demonstrated both high yield potential and stability,which are essential for developing cultivars suitable for diverse environments. 展开更多
关键词 Grain yield MORPHOLOGY soybean STABILITY
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Structural variation in Heinong 531 soybean genome underlies yield and resistance traits
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作者 Yu Tian Jia You +8 位作者 Zihao Zheng Hao Zhang Shiyu Guo Xueqing Wang Jinrong Li Lichun Huang Jiajun Wang Ying-hui Li Li-juan Qiu 《The Crop Journal》 2025年第5期1574-1584,共11页
Soybean(Glycine max)is a globally important crop that serves as a primary source of edible oil and protein for both humans and animals.Cultivated soybean varieties exhibit considerable genetic diversity depending on t... Soybean(Glycine max)is a globally important crop that serves as a primary source of edible oil and protein for both humans and animals.Cultivated soybean varieties exhibit considerable genetic diversity depending on their geographical origin.Heinong 531(HN531)is an elite cultivar that was released in China in June 2021 with 22.34%seed oil,high resistance to soybean cyst nematode(SCN)race 3,and enhanced yield.However,the genetic basis for these desirable agronomic traits is unclear.In this study,we generated a high-quality genome assembly for HN531 and used it to systematically analyze genes related to agronomic traits such as resistance to SCN.The assembled genome spans 981.20 Mb,featuring a contig N50 of 19.47 Mb,and contains 58,151 predicted gene models.Pan-genomic comparison with 27 previously reported soybean genomes revealed 95,071 structural variants(SVs)of>50 bp,of which 602 were HN531-specific.Furthermore,we identified a copy number variation at rhg1 that underlies resistance to SCN,and we found elite alleles of functional genes underlying important agronomic traits such as seed oil content,adaptability,and yield.This high-quality HN531 genome can be used to explore the genetic basis for the excellent agronomic traits of this cultivar,and is a valuable resource for breeders aiming to improve HN531 and related cultivars. 展开更多
关键词 soybean Genome assembly Structural variation R genes SCN
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Effect of interfacial synergism between gliadin particles and soybean lecithin on W_(1)/O/W_(2) emulsions:Encapsulation stability,interfacial rheology,nutrition delivery and in vitro digestion
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作者 Xuan Zhang Yongkang Yang +4 位作者 Wenli Zhang Huijie Zheng Xing Rong Xiangwei Zhu Chao Wang 《Grain & Oil Science and Technology》 2025年第4期261-270,共10页
As a natural oil-soluble emulsifier to replace Polyglycerol Polyricinoleate(PGPR),lecithin's application in double emulsions(DEs)remains constrained due to low encapsulation efficiency and stability,while incorpor... As a natural oil-soluble emulsifier to replace Polyglycerol Polyricinoleate(PGPR),lecithin's application in double emulsions(DEs)remains constrained due to low encapsulation efficiency and stability,while incorporating Pickering particles within the inner aqueous phase(W_(1))has emerged as an effective approach to enhance DEs stability.However,the interfacial interactions between Pickering particles in W_(1) and lecithin in oil phase and their effects on the physical,delivery and digestion properties of DEs remain to be explored.In this study,a natural Pickering DEs encapsulating blueberry anthocyanins(ANCs)was developed using lecithin and gliadinbased particles,with gliadin colloid particles(GCPs)introduced into W_(1).The effects of GCP concentration in W_(1) on emulsion droplet size,microstructure,W_(1)/O interfacial rheology,in vitro digestion,and ANCs delivery performance were systematically investigated.Results showed that GCPs in W_(1) accelerated the decreasing of W_(1)/O interfacial tension,indicating that,beyond competitive adsorption,combination between the two might also occur at the interface,which could accelerate the interfacial adsorption of lecithin.GCPs significantly improved the strength of the W_(1)/O interface,thus improving ANCs encapsulation efficiency from 49.66%to 70.60%.Moreover,the droplet size of DEs decreased from 38.94μm to 24.09μm as GCPs concentration increased,indicating that some GCPs might transfer to the outer aqueous phase through phase exchange,acting as hydrophilic emulsifiers.GCPs in W_(1) can modulate ANCs in vitro release,enhancing ANCs'bioaccessibility(31.10%)and antioxidant capacity. 展开更多
关键词 Double emulsion GLIADIN soybean lecithin Interfacial synergism Anthocyanins
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Molecular dissection of hemizygote-dependent dominance of super-early flowering in soybean
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作者 Xin Xu Yang Yu +15 位作者 Bingjun Jiang Dong Cao Lixin Zhang Hongchang Jia Xuegang Sun Li Chen Shan Yuan Fulu Chen Zefu Lu Yanhong Liu Mahmoud Naser Tingting Wu Cunxiang Wu Qingzhu Zhang Shi Sun Tianfu Han 《The Crop Journal》 2025年第3期828-839,共12页
In plants,numerous non-Mendelian inherited dominant effects,including over-,incomplete-,and codominance,are frequently observed,yet they remain insufficiently understood.A novel phenotype has been identified in specif... In plants,numerous non-Mendelian inherited dominant effects,including over-,incomplete-,and codominance,are frequently observed,yet they remain insufficiently understood.A novel phenotype has been identified in specific soybean transformants overexpressing a single 35S::GmFT2a copy:superearly flowering dominance is exclusively observed in hemizygotes,not in homozygotes.Homozygous individual exhibits si RNA-mediated DNA methylation,causing epigenetic transcriptional silencing,whereas no such effect occurs in hemizygotes.Intriguingly,two distinct rounds of DNA methylation establishment occur,each mediated by a different mechanism.The homozygotes that derived from the hemizygous mother plants carrying 35S::GmFT2a locus was associated with the initiation of CHHcontext DNA methylation at 35S promoters mediated by 21 and 22 nucleotide(nt)si RNAs.Subsequently,24 nt si RNAs contribute to additional CHG-and CG-context DNA methylation at 35S promoters during the homozygosity of genes in plants already homozygous in maternal lineage.Reducing DNA methylation levels can be achieved by generating a hemizygous genotype through a crossing experiment with a recessive genotype.This research has unveiled a phenomenon:hemizygote-dependent dominance resulting from transcriptional silencing in homozygote offsprings.It provides new insights into the molecular mechanism underlying dominant effects. 展开更多
关键词 soybean Hemizygote-dependent dominance Flowering time SIRNA DNA methylation
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Novel genetic loci and a functional gene Gm18GRSC3 conferring SMV-SC3 resistance in soybean
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作者 Jiahao Chu Wenlong Li +7 位作者 Zhenqi Shao Zhanwu Yang Xinzhu Xing Hua Zhang Rui Tian Huantao Zhang Xihuan Li Caiying Zhang 《The Crop Journal》 2025年第4期1127-1136,共10页
Soybean mosaic virus(SMV)is a worldwide disease significantly decreasing soybean yield and seed quality.In this study,a genome-wide association study(GWAS)for SMV-SC3 resistance was conducted by using a deep re-sequen... Soybean mosaic virus(SMV)is a worldwide disease significantly decreasing soybean yield and seed quality.In this study,a genome-wide association study(GWAS)for SMV-SC3 resistance was conducted by using a deep re-sequencing dataset of 547 soybean accessions.A total of 11,405 SNPs and 1566 InDels were significantly associated with disease index(DI)at seedling stage and eight yield-and seed quality-related traits to SC3 resistance under eight environments.Among these genetic loci,952 SNPs and 118 InDels were firstly identified to control SC3 resistance,and 52.42% and 42.37% of them were pleiotropic loci across multiple environments.Notably,the 8.47-8.89 Mb genomic region on chromosome 18 was firstly discovvered to associate with DI at seedling stage and four related traits at adult stage across multiple environments.Furthermore,the causal gene Gm18GRSC3 was identified and validated in this stable and pleiotropic locus for resistance to SC3 via positive and negative transgenic strategies.Overexpression of Gm18GRSC3 significantly decreased the accumulation of SC3 in transgenic soybean hairy roots,while silencing of Gm18GRSC3 significantly increased SC3 accumulation in soybean leaves.A functional marker,FM18GSC3,was developed based on the allelic variation of Gm18GRSC3,and the detection efficiency reached to 76% in another 100 soybean accessions.These findings provide valuable genetic loci and a functional gene for the improvement of SMV resistance in soybean. 展开更多
关键词 soybean SMV-SC3 GWAS Genetic loci Functional marker
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A morphological and anatomical study for tracking the growth and development of individual flowers and pods in soybean(Glycine max L.)
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作者 Fang Li Yi-Ping Shao +4 位作者 Irsa Ejaz Zhen-Yuan Chen Zhi-Wei Wang Xin Wang Shun-Li Zhou 《The Crop Journal》 2025年第1期304-309,共6页
A morphology-based growth stage system should describe the growth and development of a crop and thereby help farmers and agronomists in formulating reasonable managementmeasures conducive to the development of marketa... A morphology-based growth stage system should describe the growth and development of a crop and thereby help farmers and agronomists in formulating reasonable managementmeasures conducive to the development of marketable products.However,existing growth stage systems for soybean are either based on plant growth or covered particular phases of flower or pod development,making it difficult to use for tracking the entire growth period of individual flowers and pods.Therefore,the first flower and pod,located at the base of the primary raceme in the eighth trifoliate node of the main stem,were chosen to illustrate growth dynamics during the full reproductive period.The size and fresh weight of the primary raceme in the eighth trifoliate leaf axil,the first flower and pod,the pistils in the first flower,and seeds in the first pod were examined,and the growth of these organs was depicted.Integrating the morphological characteristics and growth features of flowers and pods,as well as existing growth stage systems,the growth and development were delineated in 13 stages.In detail,we classified the flower phase based on the relative positions of floral components,inspired by the ratio of bract to flower used for staging,refined the lag phase proposed previously,retained the use of pod length to define the early pod phase,and innovatively described the late pod phase by the seed appearance.The developmental events in each stage of flower and pod were distinctive and closely connected to the corresponding morphology.Taken together,a more detailed growth stage system for describing individual flowers and pods in soybean was established.This system will serve as a valuable research tool for describing the development,gene expression,and cellular metabolism associated with the formation of flowers,pods,and seeds. 展开更多
关键词 soybean Growth stage system Flower and pod Morphology ANATOMY Growth and development
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DAFFnet:Seed classification of soybean variety based on dual attention feature fusion networks
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作者 Lingyu Zhang Laijun Sun +2 位作者 Xiuliang Jin Xiangguang Zhao Shujia Li 《The Crop Journal》 2025年第2期619-629,共11页
Rapid,accurate seed classification of soybean varieties is needed for product quality control.We describe a hyperspectral image-based deep-learning model called Dual Attention Feature Fusion Networks(DAFFnet),which se... Rapid,accurate seed classification of soybean varieties is needed for product quality control.We describe a hyperspectral image-based deep-learning model called Dual Attention Feature Fusion Networks(DAFFnet),which sequentially applies 3D Convolutional Neural Network(CNN)and 2D CNN.A fusion attention mechanism module in 2D CNN permits the model to capture local and global feature information by combining with Convolution Block Attention Module(CBAM)and Mobile Vision Transformer(MViT),outperforming conventional hyperspectral image classification models in seed classification. 展开更多
关键词 soybean seed Classification Deep learning Neural networks Attention mechanisms
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Crossing latitude introduction delayed flowering and facilitated dry matter accumulation of soybean as a forage crop
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作者 Dong An Xingfa Lai +3 位作者 Tianfu Han Jean Marie Vianney Nsigayehe Guixin Li Yuying Shen 《Journal of Integrative Agriculture》 2025年第4期1436-1447,共12页
Grain soybean(Glycine max(L.)Merr.)shows potential as a forage crop following its introduction from low to high latitudes due to in its growth phenotype.However,the application of this approach is impeded by the diver... Grain soybean(Glycine max(L.)Merr.)shows potential as a forage crop following its introduction from low to high latitudes due to in its growth phenotype.However,the application of this approach is impeded by the diverse ecological types of soybean,their adaptability to the introduction,and the uncertainty surrounding the growth phenotype post-introduction.This study introduced 24 grain soybean varieties from low-latitude regions(22-31°N)to the high-latitude northwestern Loess Plateau(39°N)between 2018 and 2019.The growth phenotypes were observed,and their forage productivity potential was assessed.All varieties displayed delayed flowering following cross-latitude introduction,with the vegetative growth phase of some varieties even exceeding their entire growth duration at their origin.Rapid dry matter accumulation rates indicated growth adaptation performance and formed the basis for soybean forage yield.Varieties from the tropical South China region exhibited significant yield advantages,with dry matter yields of 8.97-14.68 t ha^(-1)and crude protein yields of 1.44-2.51 t ha^(-1).Varieties HX3 and GX7 from this region demonstrated optimal growth adaptability and productivity in the cross-latitude environment,achieving the highest dry matter yields of 14.68 and 13.86 t ha^(-1),respectively.As a result,HX3 and GX7 are recommended for local farming systems to provide high-quality forage.The cross-latitude introduction of soybean is proposed as a viable and efficient strategy for forage improvement and application. 展开更多
关键词 forage soybean latitude span vegetative growth INTRODUCTION variety screening
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