Background Thidiazuron(TDZ)is a widely used chemical defoliant in commercial cotton production and is often combined with the herbicide Diuron to form the commercial defoliant mixture known as TDZ·Diuron(T·D...Background Thidiazuron(TDZ)is a widely used chemical defoliant in commercial cotton production and is often combined with the herbicide Diuron to form the commercial defoliant mixture known as TDZ·Diuron(T·D,540 g·L^(-1)suspension).However,due to increasing concerns about the environmental and biological risks posed by Diuron,there is an urgent need to develop safer and more effective alternatives.Jasmonic acid(JA)and its derivatives are key phytohormones in organ senescence and abscission.Results Greenhouse experiments at the seedling stage revealed that Me-JA(0.8 mmol·L^(-1))alone did not induce defoliation.However,its co-application with TDZ(0.45 mmol·L^(-1))at concentrations of 0.6,0.8,and 1.0 mmol·L^(-1)significantly enhanced defoliation efficacy.The most effective combination—TDZ with 0.8 mmol·L^(-1)Me-JA—achieved a 100%defoliation rate at 5 days after treatment(DAT),23.7 percentage points higher than TDZ alone,and comparable to the commercial TDZ·Diuron formulation with equivalent TDZ content.Field trials conducted in Beijing(Shangzhuang),Hebei(Hejian),and Xinjiang(Shihezi)confirmed that the combination of 0.6 mmol·L^(-1)Me-JA with 1.70 mmol·L^(-1)TDZ provided optimal defoliation performance.At 21 DAT,the defoliation rate increased by 13.5–16.3 percentage points compared with TDZ alone.Furthermore,boll opening rates improved by 5.7–12.7 percentage points relative to TDZ-only treatments.Phytohormonal analyses from the Shangzhuang site showed that the combined treatment significantly altered hormone levels in both leaves and petioles.Compared with TDZ alone,the mixture reduced concentrations of auxin(IAA),cytokinins(Z+ZR,iP+iPA,DHZ+DHZR),and gibberellic acid(GA3),while increasing levels of JA,abscisic acid(ABA),and brassinosteroids(BR).These hormonal shifts may underlie the enhanced defoliation observed with the combined treatment.Importantly,the TDZ-Me-JA combination did not adversely affect cotton yield,yield components,or fiber quality.Conclusion The combination of Me-JA and TDZ has a good defoliation effect without affecting crop yield or fiber quality.And it provides a promising foundation for the development of novel,environmentally friendly cotton defoliants.展开更多
OBJECTIVE:To learn the mechanisms between gut microbiome and the autoimmunity benefits on Traditional Chinese Medicine(TCM)in central nervous system(CNS),we investigated the neuro-protection effects and gut mircobiota...OBJECTIVE:To learn the mechanisms between gut microbiome and the autoimmunity benefits on Traditional Chinese Medicine(TCM)in central nervous system(CNS),we investigated the neuro-protection effects and gut mircobiota changes of Heshouwu(Radix Polygoni Multiflori)on experimental autoimmune encephalomyelitis(EAE),an animal model of multiple sclerosis(MS).METHODS:Mice were randomly divided into four groups:EAE mice(control phosphate-buffered saline group),50 mg·kg^(-1)·d^(-1)Heshouwu(Radix Polygoni Multiflori)-treated EAE mice,100 mg·kg^(-1)·d^(-1)Heshouwu(Radix Polygoni Multiflori)-treated EAE mice,and 200 mg·kg^(-1)·d^(-1)Heshouwu(Radix Polygoni Multiflori)-treated EAE mice.The spinal cords were stained with hematoxylin and eosin(HE)and luxol fast blue for evaluating inflammatory infiltration and demyelination.The percentages of granulocyte macrophage-colony stimulating factor(GM-CSF)+CD4+,interleukin 17(IL-17)+CD4+,Foxp3 CD4+,and interferon-γ(IFN-γ)+CD4+T cells in the inguinal lymph nodes(LNs)and brain were determined by flow cytometry analysis.16S rRNA gene sequencing was employed to analyze the changes in gut microbiota.RESULTS:We found that Heshouwu(Radix Polygoni Multiflori)alleviated the disease severity and neuropathology of EAE as evaluated by clinical and histopathologyical scores.Heshouwu(Radix Polygoni Multiflori)increased the diversity and abundance of the gut microbiota,and decreased Firmicutes/Bacteroidetes ratio(F/B ratio).Heshouwu(Radix Polygoni Multiflori)also decreased the concentrations of IL-10,and IL-21 and increase the levels of GM-CSF,IL-17A,IL-17F and IL-22 in serum of EAE mice.Moreover,Heshouwu(Radix Polygoni Multiflori)modulated the T cell responses by inhibiting Th17 cells and restoring Treg cells in the small intestine lymphoid tissues and inguinal lymph nodes.Microbiota-depleted mice receiving Heshouwu(Radix Polygoni Multiflori)-treated fecal microbiota transplantation had lower disease severity,neuropathology scores and alleviation of Th17/Treg imbalance compared to ad libitum group.CONCLUSIONS:Our findings suggested that the vital neuro-protection role of Heshouwu(Radix Polygoni Multiflori)(TCM)in immunomodulation effects partly by regulations of gut microbiome.展开更多
Background Light is a critical factor in plant growth and development,particularly in controlled environments.Light-emitting diodes(LEDs)have become a reliable alternative to conventional high pressure sodium(HSP)lamp...Background Light is a critical factor in plant growth and development,particularly in controlled environments.Light-emitting diodes(LEDs)have become a reliable alternative to conventional high pressure sodium(HSP)lamps because they are more efficient and versatile in light sources.In contrast to well-known specialized LED light spectra for vegetables,the appropriate LED lights for crops such as cotton remain unknown.Results In this growth chamber study,we selected and compared four LED lights with varying percentages(26.44%–68.68%)of red light(R,600–700 nm),combined with other lights,for their effects on growth,leaf anatomy,and photosynthesis of cotton seedlings,using HSP lamp as a control.The total photosynthetic photon flux density(PPFD)was(215±2)μmol·m-2·s-1 for all LEDs and HSP lamp.The results showed significant differences in all tested parameters among lights,and the percentage of far red(FR,701–780 nm)within the range of 3.03%–11.86%was positively correlated with plant growth(characterized by leaf number and area,plant height,stem diameter,and total biomass),palisade layer thickness,photosynthesis rate(Pn),and stomatal conductance(Gs).The ratio of R/FR(4.445–11.497)negatively influenced the growth of cotton seedlings,and blue light(B)suppressed stem elongation but increased palisade cell length,chlorophyll content,and Pn.Conclusion The LED 2 was superior to other LED lights and HSP lamp.It had the highest ratio of FR within the total PPFD(11.86%)and the lowest ratio of R/FR(4.445).LED 2 may therefore be used to replace HPS lamp under controlled environments for the study of cotton at the seedling stage.展开更多
Background:Soil salinity seriously affects cotton growth,leading to the reduction of yield and fiber quality.Recently,genetic engineering has become an efficient tool to increase abiotic stress tolerance in crops.Resu...Background:Soil salinity seriously affects cotton growth,leading to the reduction of yield and fiber quality.Recently,genetic engineering has become an efficient tool to increase abiotic stress tolerance in crops.Results:In this study,isopentyl transferase(IPT),a key enzyme involved in cytokinin(CTK) biosynthesis from Agrobacterium tumefaciens,was selected to generate transgenic cotton via Agrobacterium-mediated transformation.A senescence-inducible SAG12 promoter from Arabidopsis was fused with the IPT gene.Ectopic-expression of SAG12::IPT significantly promoted seed germination or seedling tolerance to salt stress.Two IPTtransgenic lines,OE3 as a tolerant line during seed germination,and OE8 as a tolerant line at seedling stage,were selected for further physiological analysis.The data showed that ectopic-expression of SAG12::IPT induced the accumulation of CTKs not only in leaves and roots,but also in germinating seeds.Moreover,ectopic-expressing IPT increased the activity of antioxidant enzymes,which was associated with the less reactive oxygen species(ROS) accumulation compared with control plants.Also,ectopic-expression of IPT produced higher K^+/Na^+ratio in cotton shoot and root Conclusion:The senescence-induced CTK accumulation in cotton seeds and seedlings positively regulates salt stress partially by elevating ROS scavenging capability.展开更多
Crop chemical regulation using plant growth regulators(PGRs)represents a key strategy for achieving high-efficiency cotton production in China.This review synthesizes four decades of research on mepiquat chloride(MC),...Crop chemical regulation using plant growth regulators(PGRs)represents a key strategy for achieving high-efficiency cotton production in China.This review synthesizes four decades of research on mepiquat chloride(MC),an inhibitory PGR pivotal to optimizing cotton growth architecture,stress resilience,and yield-quality parameters.We detail MC's stage-specific roles—from root development and flowering acceleration to canopy optimization and assimilate partitioning—and its mechanistic interactions with hormones(e.g.,gibberellin suppression,cytokinin enhancement)under biotic/abiotic stresses.Furthermore,we conceptualize MC deployment into three evolutionary tiers:(1)symptom-guided remedial application,(2)systemic growth-stage programming,and(3)integrated management with agronomic practices.These paradigms,supported by field validation across China's cotton belts,offer a roadmap for precision regulation.Future advancements in nano-formulations,digital agriculture,and PGR synergism are discussed to unlock next-generation yield frontiers.展开更多
基金funded by the China Agriculture Research System(CARS–15–16)。
文摘Background Thidiazuron(TDZ)is a widely used chemical defoliant in commercial cotton production and is often combined with the herbicide Diuron to form the commercial defoliant mixture known as TDZ·Diuron(T·D,540 g·L^(-1)suspension).However,due to increasing concerns about the environmental and biological risks posed by Diuron,there is an urgent need to develop safer and more effective alternatives.Jasmonic acid(JA)and its derivatives are key phytohormones in organ senescence and abscission.Results Greenhouse experiments at the seedling stage revealed that Me-JA(0.8 mmol·L^(-1))alone did not induce defoliation.However,its co-application with TDZ(0.45 mmol·L^(-1))at concentrations of 0.6,0.8,and 1.0 mmol·L^(-1)significantly enhanced defoliation efficacy.The most effective combination—TDZ with 0.8 mmol·L^(-1)Me-JA—achieved a 100%defoliation rate at 5 days after treatment(DAT),23.7 percentage points higher than TDZ alone,and comparable to the commercial TDZ·Diuron formulation with equivalent TDZ content.Field trials conducted in Beijing(Shangzhuang),Hebei(Hejian),and Xinjiang(Shihezi)confirmed that the combination of 0.6 mmol·L^(-1)Me-JA with 1.70 mmol·L^(-1)TDZ provided optimal defoliation performance.At 21 DAT,the defoliation rate increased by 13.5–16.3 percentage points compared with TDZ alone.Furthermore,boll opening rates improved by 5.7–12.7 percentage points relative to TDZ-only treatments.Phytohormonal analyses from the Shangzhuang site showed that the combined treatment significantly altered hormone levels in both leaves and petioles.Compared with TDZ alone,the mixture reduced concentrations of auxin(IAA),cytokinins(Z+ZR,iP+iPA,DHZ+DHZR),and gibberellic acid(GA3),while increasing levels of JA,abscisic acid(ABA),and brassinosteroids(BR).These hormonal shifts may underlie the enhanced defoliation observed with the combined treatment.Importantly,the TDZ-Me-JA combination did not adversely affect cotton yield,yield components,or fiber quality.Conclusion The combination of Me-JA and TDZ has a good defoliation effect without affecting crop yield or fiber quality.And it provides a promising foundation for the development of novel,environmentally friendly cotton defoliants.
基金National Natural Science Foundation of China:Role and Mechanism of Akkermansia-Mediated Activation of Microglia NLRP3 Inflammasome in Multiple Sclerosis(No.82101419)Jiangxi Provincial Natural Science Foundation:the Role and Mechanism of p38 MAPK Signaling Pathway Induced by Intestinal Flora Change in EAE Mice(No.20212BAB216024)+3 种基金Jiangxi Science and Technology Project of Chinese Medicine:Study on the Role and Mechanism of CGAS-STING Signaling Pathway in Microglia Mediated by Rhodiola Sachalinensis in Multiple Sclerosis(No.2021B660,No.2022B1007)Jiangxi Science and Technology Program of Health Commission:the Role and Mechanism of Intestinal Flora Changes in Mediating the Activation of NLRP3 Inflammasome in Microglia in Multiple Sclerosis(No.202210392)Science and Technology Research Project of Jiangxi Education:Study on the Role and Mechanism of p38 MAPK Signaling Pathway Induced by Intestinal Flora Changes in EAE Mice(No.GJJ200215)Scientific Research and Development Project of the First Affiliated Hospital of Nanchang University:Effects of Exercise Training on Intestinal Flora of Multiple Sclerosis Model Rats and Its Mechanism(No.YFYPY202021)。
文摘OBJECTIVE:To learn the mechanisms between gut microbiome and the autoimmunity benefits on Traditional Chinese Medicine(TCM)in central nervous system(CNS),we investigated the neuro-protection effects and gut mircobiota changes of Heshouwu(Radix Polygoni Multiflori)on experimental autoimmune encephalomyelitis(EAE),an animal model of multiple sclerosis(MS).METHODS:Mice were randomly divided into four groups:EAE mice(control phosphate-buffered saline group),50 mg·kg^(-1)·d^(-1)Heshouwu(Radix Polygoni Multiflori)-treated EAE mice,100 mg·kg^(-1)·d^(-1)Heshouwu(Radix Polygoni Multiflori)-treated EAE mice,and 200 mg·kg^(-1)·d^(-1)Heshouwu(Radix Polygoni Multiflori)-treated EAE mice.The spinal cords were stained with hematoxylin and eosin(HE)and luxol fast blue for evaluating inflammatory infiltration and demyelination.The percentages of granulocyte macrophage-colony stimulating factor(GM-CSF)+CD4+,interleukin 17(IL-17)+CD4+,Foxp3 CD4+,and interferon-γ(IFN-γ)+CD4+T cells in the inguinal lymph nodes(LNs)and brain were determined by flow cytometry analysis.16S rRNA gene sequencing was employed to analyze the changes in gut microbiota.RESULTS:We found that Heshouwu(Radix Polygoni Multiflori)alleviated the disease severity and neuropathology of EAE as evaluated by clinical and histopathologyical scores.Heshouwu(Radix Polygoni Multiflori)increased the diversity and abundance of the gut microbiota,and decreased Firmicutes/Bacteroidetes ratio(F/B ratio).Heshouwu(Radix Polygoni Multiflori)also decreased the concentrations of IL-10,and IL-21 and increase the levels of GM-CSF,IL-17A,IL-17F and IL-22 in serum of EAE mice.Moreover,Heshouwu(Radix Polygoni Multiflori)modulated the T cell responses by inhibiting Th17 cells and restoring Treg cells in the small intestine lymphoid tissues and inguinal lymph nodes.Microbiota-depleted mice receiving Heshouwu(Radix Polygoni Multiflori)-treated fecal microbiota transplantation had lower disease severity,neuropathology scores and alleviation of Th17/Treg imbalance compared to ad libitum group.CONCLUSIONS:Our findings suggested that the vital neuro-protection role of Heshouwu(Radix Polygoni Multiflori)(TCM)in immunomodulation effects partly by regulations of gut microbiome.
基金funded by the China Agriculture Research System(CARS-15-16).
文摘Background Light is a critical factor in plant growth and development,particularly in controlled environments.Light-emitting diodes(LEDs)have become a reliable alternative to conventional high pressure sodium(HSP)lamps because they are more efficient and versatile in light sources.In contrast to well-known specialized LED light spectra for vegetables,the appropriate LED lights for crops such as cotton remain unknown.Results In this growth chamber study,we selected and compared four LED lights with varying percentages(26.44%–68.68%)of red light(R,600–700 nm),combined with other lights,for their effects on growth,leaf anatomy,and photosynthesis of cotton seedlings,using HSP lamp as a control.The total photosynthetic photon flux density(PPFD)was(215±2)μmol·m-2·s-1 for all LEDs and HSP lamp.The results showed significant differences in all tested parameters among lights,and the percentage of far red(FR,701–780 nm)within the range of 3.03%–11.86%was positively correlated with plant growth(characterized by leaf number and area,plant height,stem diameter,and total biomass),palisade layer thickness,photosynthesis rate(Pn),and stomatal conductance(Gs).The ratio of R/FR(4.445–11.497)negatively influenced the growth of cotton seedlings,and blue light(B)suppressed stem elongation but increased palisade cell length,chlorophyll content,and Pn.Conclusion The LED 2 was superior to other LED lights and HSP lamp.It had the highest ratio of FR within the total PPFD(11.86%)and the lowest ratio of R/FR(4.445).LED 2 may therefore be used to replace HPS lamp under controlled environments for the study of cotton at the seedling stage.
基金supported by The Genetically Modified Organisms Breeding Major Projects of China Grant(2016ZX08005-004)
文摘Background:Soil salinity seriously affects cotton growth,leading to the reduction of yield and fiber quality.Recently,genetic engineering has become an efficient tool to increase abiotic stress tolerance in crops.Results:In this study,isopentyl transferase(IPT),a key enzyme involved in cytokinin(CTK) biosynthesis from Agrobacterium tumefaciens,was selected to generate transgenic cotton via Agrobacterium-mediated transformation.A senescence-inducible SAG12 promoter from Arabidopsis was fused with the IPT gene.Ectopic-expression of SAG12::IPT significantly promoted seed germination or seedling tolerance to salt stress.Two IPTtransgenic lines,OE3 as a tolerant line during seed germination,and OE8 as a tolerant line at seedling stage,were selected for further physiological analysis.The data showed that ectopic-expression of SAG12::IPT induced the accumulation of CTKs not only in leaves and roots,but also in germinating seeds.Moreover,ectopic-expressing IPT increased the activity of antioxidant enzymes,which was associated with the less reactive oxygen species(ROS) accumulation compared with control plants.Also,ectopic-expression of IPT produced higher K^+/Na^+ratio in cotton shoot and root Conclusion:The senescence-induced CTK accumulation in cotton seeds and seedlings positively regulates salt stress partially by elevating ROS scavenging capability.
基金supported by the National Key Research and Development Program Projects of China(2024YFD2300600)the China Agriculture Research System(CARS-15-16)。
文摘Crop chemical regulation using plant growth regulators(PGRs)represents a key strategy for achieving high-efficiency cotton production in China.This review synthesizes four decades of research on mepiquat chloride(MC),an inhibitory PGR pivotal to optimizing cotton growth architecture,stress resilience,and yield-quality parameters.We detail MC's stage-specific roles—from root development and flowering acceleration to canopy optimization and assimilate partitioning—and its mechanistic interactions with hormones(e.g.,gibberellin suppression,cytokinin enhancement)under biotic/abiotic stresses.Furthermore,we conceptualize MC deployment into three evolutionary tiers:(1)symptom-guided remedial application,(2)systemic growth-stage programming,and(3)integrated management with agronomic practices.These paradigms,supported by field validation across China's cotton belts,offer a roadmap for precision regulation.Future advancements in nano-formulations,digital agriculture,and PGR synergism are discussed to unlock next-generation yield frontiers.