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Root Morphology, Plant Growth, Nitrate Accumulation and Nitrogen Metabolism of Temperate Lettuce Grown in the Tropics with Elevated Root-Zone CO2 at Different Root-Zone Temperatures 被引量:3
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作者 Jie He Lin Qin Sing Kong Lee 《American Journal of Plant Sciences》 2016年第14期1821-1833,共14页
This paper investigated the effects of root-zone (RZ) CO<sub>2</sub> concentration ([CO<sub>2</sub>]) on root morphology and growth, nitrate (NO<sub>3</sub>-</sup>) uptake and... This paper investigated the effects of root-zone (RZ) CO<sub>2</sub> concentration ([CO<sub>2</sub>]) on root morphology and growth, nitrate (NO<sub>3</sub>-</sup>) uptake and assimilation of lettuce plants at different root-zone temperatures (RZT). Elevated RZ [CO<sub>2</sub>] stimulated root development, root and shoot growth compared to ambient RZ [CO<sub>2</sub>]. The greatest increase in root growth was observed in plants grown under elevated RZ [CO<sub>2</sub>] of 50,000 ppm. However, RZ [CO<sub>2</sub>] of 10,000 ppm was sufficient to achieve the maximal leaf area and shoot productivity. Lettuce plants exhibited faster shoot and root growth at 20°C-RZT than at ambient (A)-RZT. However, under elevated RZ [CO<sub>2</sub>], the magnitude of increased growth was greater at A-RZT than at 20°C-RZT. Compared to RZ [CO<sub>2</sub>] of 360 ppm, elevated RZ [CO<sub>2</sub>] of 10,000 ppm increased NO<sub>3</sub>-</sup> accumulation and nitrate reductase activity (NRA) in both leaves and roots. NO<sub>3</sub>-</sup> concentrations of leaf and root were higher at 20°C-RZT than at A-RZT in all plants. NRA was higher in root than in leaf especially under A-RZT. The total reduced nitrogen (TRN) concentration was significantly higher in plants grown under elevated RZ [CO<sub>2</sub>] of 10,000 ppm than under ambient RZ [CO<sub>2</sub>] of 360 ppm with greater concentration in 20°C-RZT plants than in A-RZT plants. These results imply that elevated RZ [CO<sub>2</sub>] significantly affected root morphology, root and shoot growth and N metabolism of temperate lettuce with greater impacts at A-RZT than at 20°C-RZT. These findings have practical significance to vegetable production by growing the vegetable crops at cool-RZT with elevated RZ [CO<sub>2</sub>] to enhance its productivity. 展开更多
关键词 LETTUCE Nitrate Assimilation Nitrate Uptake Root Morphology root-zone CO2 root-zone Temperature
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Effect of fertigation frequency on soil nitrogen distribution and tomato yield under alternate partial root-zone drip irrigation 被引量:4
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作者 FENG Xu-yu PU Jing-xuan +5 位作者 LIU Hai-jun WANG Dan LIU Yu-hang QIAO Shu-ting LEI Tao LIU Rong-hao 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2023年第3期897-907,共11页
Alternate partial root-zone drip fertigation (ADF) is a combination of alternating irrigation and drip fertigation,with the potential to save water and increase nitrogen (N) fertilizer efficiency.A 2-year greenhouse e... Alternate partial root-zone drip fertigation (ADF) is a combination of alternating irrigation and drip fertigation,with the potential to save water and increase nitrogen (N) fertilizer efficiency.A 2-year greenhouse experiment was conducted to evaluate the effect of different fertigation frequencies on the distribution of soil moisture and nutrients and tomato yield under ADF.The treatments included three ADF frequencies with intervals of 3 days (F3),6 days (F6) and 12 days (F12),and conventional drip fertigation as a control (CK),which was fertilized once every 6 days.For the ADF treatments,two drip tapes were placed 10 cm away on each side of the tomato row,and alternate drip irrigation was realized using a manual valve on the distribution tapes.For the CK treatment,a drip tape was located close to the roots of the tomato plants.The total N application rate of all treatments was 180 kg ha^(-1).The total irrigation amounts applied to the CK treatment were450.6 and 446.1 mm in 2019 and 2020,respectively;and the irrigation amounts applied to the ADF treatments were 60%of those of the CK treatment.The F3 treatment resulted in water and N being distributed mainly in the 0–40-cm soil layer with less water and N being distributed in the 40–60-cm soil layer.The F6 treatment led to 21.0 and 29.0%higher 2-year average concentration of mineral N in the 0–20 and 20–40-cm soil layer,respectively and a 23.0%lower N concentration in the 40–60-cm soil layer than in the CK treatment.The 2-year average tomato yields of the F3,F6,F12,and CK treatments were 107.5,102.6,87.2,and 98.7 t ha^(-1),respectively.The tomato yield of F3 was significantly higher (23.3%) than that in the F12 treatment,whereas there was no significant difference between the F3 and F6 treatment.The F6 treatment resulted in yield similar to the CK treatment,indicating that ADF could maintain tomato yield with a 40%saving in water use.Based on the distribution of water and N,and tomato yield,a fertigation frequency of 6 days under ADF should be considered as a water-saving strategy for greenhouse tomato production. 展开更多
关键词 alternate partial root-zone irrigation drip fertigation soil water soil mineral content tomato yield
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Effect of Root-Zone Temperature on Growth and Quality of Hydroponically Grown Red Leaf Lettuce (Lactuca sativa L. cv. Red Wave) 被引量:5
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作者 Masaru Sakamoto Takahiro Suzuki 《American Journal of Plant Sciences》 2015年第14期2350-2360,共11页
Soil temperature influences crop growth and quality under field and greenhouse conditions;however, precise investigation using controlled cultivation systems is largely lacking. We investigated effects of root-zone te... Soil temperature influences crop growth and quality under field and greenhouse conditions;however, precise investigation using controlled cultivation systems is largely lacking. We investigated effects of root-zone temperatures on growth and components of hydroponically grown red leaf lettuce (Lactuca sativa L. cv. Red Wave) under a controlled cultivation system at 20&degC. Compared with ambient root-zone temperature exposure, a 7-day low temperature exposure reduced leaf area, stem size, fresh weight, and water content of lettuce. However, root-zone heating treatments produced no significant changes in growth parameters compared with ambient conditions. Leaves under low root-zone temperature contained higher anthocyanin, phenols, sugar, and nitrate concentrations than leaves under other temperatures. Root oxygen consumption declined with low temperature root exposure, but not with root heating. Leaves of plants under low rootzone temperature showed hydrogen peroxide production, accompanied by lipid peroxidation. Therefore, low temperature root treatment is suggested to induce oxidative stress responses in leaves, activating antioxidative secondary metabolic pathways. 展开更多
关键词 root-zone TEMPERATURE Anthocyanin RED LEAF LETTUCE Hydroponics Drought Stress
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Effect of Partial Root-Zone Irrigating Deuterium Oxide on the Properties of Water Transportation and Distribution in Young Apple Trees 被引量:2
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作者 LIU Song-zhong ZHANG Qiang +2 位作者 LIU Jun SUN Jian WEI Qin-ping 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2014年第6期1268-1275,共8页
Partial root-zone irrigation (PRI) has been proved to be an optimal water-saving irrigation technology, however, few studies were done on water transportation and distribution under PRI. The present study was perfor... Partial root-zone irrigation (PRI) has been proved to be an optimal water-saving irrigation technology, however, few studies were done on water transportation and distribution under PRI. The present study was performed to investigate the water transportation and distribution among the wet and dry root-zones and the shoot using deuterium water (D2O) in 1/4 root-zone PRI experiment. It also aimed to determine and analyze the D2O relative abundance within different types of roots and shoots. The results indicated that water could be transported from roots in wet root-zone to roots in dry root-zone and shoots within 2 h after irrigation. Water transportation in roots of wet-zone was carried out by absorbing root, 1-2 mm root, 2-5 mm root, and〉5 mm root progressively, while through a reverse process in three dry root-zones. In shoots, water was transported to trunk, central trunk, annual branches, shoot and leaf progressively. Thus in the young apple trees subjected to PRI, water was distributed ifrst in the roots, including the roots in the wet and dry root-zones, to satisfy the water need of roots itself, and then transported to the shoot within hours of irrigation. 展开更多
关键词 APPLE D2O partial root-zone drying relative abundance TRANSPORTATION DISTRIBUTION
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Effects of Alternative Partial Root-zone Irrigation and Nitrogen Fertilizer on Plukenetia volubilis Seedlings
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作者 耿艳菁 蔡传涛 蔡志全 《Agricultural Science & Technology》 CAS 2016年第4期890-895,共6页
This study was aimed to investigate the effects of alternative partial rootzone irrigation and nitrogen fertilizer on the potted seedlings of Plukenetia volubilis.A total of 7 treatments were designed with three facto... This study was aimed to investigate the effects of alternative partial rootzone irrigation and nitrogen fertilizer on the potted seedlings of Plukenetia volubilis.A total of 7 treatments were designed with three factors, i.e., irrigation amount, irrigation mode and nitrogen fertilizer. The growth, photosynthesis and water use efficiency were analyzed. The results showed that compared with those under full irrigation, the biomass and water consumption under alternative partial root-zone irrigation were reduced by 5% and 75%, respectively, and the water use efficiency was increased by 60%. Under severe drought conditions, the root cap ratio in the nitrogen fertilizer treatment group was increased by 30%; the leaf area index, photosynthetic rate and biomass under alternative partial root-zone irrigation were reduced by 38%, 9% and 18%, respectively. It indicates that under severe drought conditions, alternative partial root-zone irrigation is not suitable to be matched with application of nitrogen fertilizer. In short, under moderate drought conditions, alternative partial root-zone irrigation could reduce transpiration and improve water use efficiency, and it is an effective water-saving irrigation technology for the plantation of P.volubilis plants. 展开更多
关键词 Plukenetia volubilis L. Alternative partial root-zone irrigation Nitrogen fertilizer GROWTH Water-use efficiency
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Yield Response to Deficit Irrigation and Partial Root-Zone Drying in Processing Tomato (Lycopersicon esculentum Mill,) 被引量:3
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作者 Eugenio Nardella Marcella Michela Giuliani Giuseppe Gatta Antonio De Caro 《Journal of Agricultural Science and Technology(A)》 2012年第2期209-219,共11页
Due to the global expansion of irrigated areas and the limited availability of irrigation water, it is necessary to optimize water use in order to maximize crop yields under water deficit conditions. To evaluate the y... Due to the global expansion of irrigated areas and the limited availability of irrigation water, it is necessary to optimize water use in order to maximize crop yields under water deficit conditions. To evaluate the yield response of two processing tomato hybrids (Ercole and Genius) grown under different irrigation treatments, a field trial was conducted during the 2008 growing season in Southern Italy. Three irrigation treatments were used: the restitution of 70% of maximum evapotranspiration (ETc) both under "Deficit Irrigation" (70DI) and "Partial Root-zone Drying" (70PRD) strategies; full irrigated (FI: 100% ETc). The two water deficit irrigation treatments (DI and PRD) showed stomatal conductance values lower than FI treatment and saved a substantial amount of water maintaining reasonable marketable yield. Moreover, PRD strategy showed slightly higher "Water Use Efficiency" (WUE) values than DI. Finally, "yield response factor" (Ky) showed always values less than unity, indicating the possibility to adopt, within certain limited condition, both DI and PRD in field-grown processing tomato cultivated in Southern Italy. In conclusion, in our experimental conditions, deficit irrigation practices seem to be acceptable relatively to processing tomato yield aspects and Ky could be promoted as a useful indicator for irrigation in water deficit conditions. 展开更多
关键词 TOMATO deficit irrigation partial root-zone drying WUE Ky.
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Elevated Root-Zone Temperature Modulates Growth and Quality of Hydroponically Grown Carrots 被引量:1
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作者 Masaru Sakamoto Takahiro Suzuki 《Agricultural Sciences》 2015年第8期749-757,共9页
Air and soil temperatures strongly influence the growth and quality of crops. However, in root vegetables, such as carrot, few experiments aimed at regulating growth and quality by manipulating root-zone temperature h... Air and soil temperatures strongly influence the growth and quality of crops. However, in root vegetables, such as carrot, few experiments aimed at regulating growth and quality by manipulating root-zone temperature have been reported. We investigated the effect of root-zone temperatures (20&degC, 25&degC, 29&degC, and 33&degC) on carrot growth and components using a hydroponic system. High root-zone temperatures for 14 days reduced shoot and rootgrowth and water content. In contrast, total phenolic compounds and soluble-solid content increased in tap roots under high-temperature treatment. Root oxygen consumption was upregulated after 7 days under high-temperature treatment. These results suggest that high root-zone temperatures induce drought-like stress responses that modulate carrot biomass and components. High root-zone temperature treatments administered to hydroponically grown crops may be a valuable tool for improving and increasing the quality and value of crops. 展开更多
关键词 CARROT root-zone TEMPERATURE HYDROPONICS Phenolic Compounds Drought Stress
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Effects of Root-Zone Temperature on Photosynthesis, Productivity and Nutritional Quality of Aeroponically Grown Salad Rocket (Eruca sativa) Vegetable 被引量:1
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作者 Jie He Xin Er See +1 位作者 Lin Qin Tsui Wei Choong 《American Journal of Plant Sciences》 2016年第14期1993-2005,共14页
Although tropical high ambient temperature and humidity severely reduced the productivity of temperate plants, temperate vegetable crops such as lettuce have been successfully grown in Singapore by only cooling its ro... Although tropical high ambient temperature and humidity severely reduced the productivity of temperate plants, temperate vegetable crops such as lettuce have been successfully grown in Singapore by only cooling its root-zone. In this paper, a cool Meditteranean vegetable, Eruca sativa, was studied to understand how different RZTs can impact its shoot productivity, photosynthesis and nutritional quality. All plants were cultivated using aeroponic systems in a tropical greenhouse under hot ambient conditions where roots were subjected to four different root-zone temperatures (RZTs) of 20&deg;C-RZT, 25&deg;C-RZT, 30&deg;C-RZT and fluctuating ambient temperatures ranged from 25&deg;C to 38&deg;C [25&deg;C/38&deg;C (ambient)]-RZT. Parameters studied include shoot fresh weight (FW), photosynthetic gas exchange, midday chlorophyll (Chl) fluorescence F<sub>v</sub>/F<sub>m</sub> ratio, Chl fluorescence photochemical quenching (qP), non-photochemical quenching (qN) and electron transport rate (ETR), total phenolic compounds and mineral content such as potassium (K), calcium (Ca), magnesium (Mg) and iron (Fe). Among the 4 different RZT treatments, E. sativa plants grown under ambient-RZT (25/38&deg;C-RZT) had the lowest shoot and root FW while those plants grown under 20&deg;C-RZT had highest productivity of shoot and root. However, there were no significant differences in shoot and root FW in plants grown at 25&deg;C- and 30&deg;C-RZT. Compared to plants grown under 25&deg;C/38&deg;C (ambient-RZT), light-saturated photosynthetic CO<sub>2</sub> assimilation rate (A<sub>sat</sub>) and stomatal conductance (g<sub>ssat</sub>) were similarly higher in 20&deg;C-, 25&deg;C- and 30&deg;C-RZT. All plants had midday Chl fluorescence F<sub>v</sub>/F<sub>m</sub> ratio lower than <0.8 ranged from 0.785 to 0.606 with the highest and lowest ratios recorded in 20&deg;C-RZT and ambient-RZT plants, respectively. These results indicate that cooling the RZ of E. sativa plants protected their PS II from photoinactivation during midday in the greenhouse. There were no significant differences observed in photochemical quenching (qP), non-photochemical quenching (qN) and electron transport rate among plants grown under 20&deg;C-, 25&deg;C- and 30&deg;C-RZT. However, plants grown under ambient-RZT had lower qP, qN and ETR compared to all other plants. E. sativa at 20&deg;C-RZT with the best developed roots had the highest dietary mineral (K, Mg, Ca and Fe) contents but lower total phenolics content. In contrast, ambient-RZT, plants with poorly developed roots had the lowest mineral content but highest total phenolic content. The results of this study suggest that cooling of roots is a feasible method for the cultivation of E. sativa in the tropic, which enhances the content of dietary minerals in shoots. 展开更多
关键词 Chlorophyll Fluorescence Dietary Minerals root-zone Temperature Phenolic Compounds Photosynthetic CO2 Assimilation Rate Stomatal Conductance
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Influences of alternate partial root-zone irrigation and urea rate on water-and nitrogen-use efficiencies in tomato 被引量:5
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作者 Liu Xiaogang Li Fusheng +2 位作者 Zhang Fucang Cai Huanjie Yang Qiliang 《International Journal of Agricultural and Biological Engineering》 SCIE EI CAS 2017年第6期94-102,共9页
Traditional water and fertilizer inputs are often much higher than the actual demands of tomato,which causes a reduction in water-and fertilizer-use efficiencies.To investigate the advantage of alternate partial root-... Traditional water and fertilizer inputs are often much higher than the actual demands of tomato,which causes a reduction in water-and fertilizer-use efficiencies.To investigate the advantage of alternate partial root-zone irrigation(AI)on water-and nitrogen(N)-use efficiencies of tomato modified by water and N management,taking conventional irrigation(CI)as the control,the effects of AI on root morphology and activity,fruit yield and water and N use efficiency were studied using pot experiments.There were four combinations of irrigation levels and growing stages of tomato for AI,i.e.AI_(1)(high water(W_(H))from blooming to harvest stage(BHS)),AI_(2)(W_(H)from blooming to fruit setting stage(BFS)and low water(W_(L))at the harvest stage(HS)),AI_(3)(W_(L)at BFS and W_(H)at HS)and AI_(4)(W_(L)at BHS)at three urea rates,i.e.low urea rate(NL),middle urea rate(N_(M))and high urea rate(N_(H))in the form of urea.Irrigation quotas for W_(H)and W_(L)in AI at BFS or HS were 80%and 60%of that in CI,respectively.Compared to CI,AI decreased water consumption by 16.0%-33.1%and increased water use efficiency of yield(WUE_(y))and dry mass(WUE_(d))by 6.7%-11.9%and 10.2%-15.9%,respectively.AI_(1)did not decline yield,total N uptake(TNU)and N use efficiency(NUE)significantly.Compared to NL,N_(M)enhanced tomato yield,TNU,WUE_(y)and WUE_(d)by 28.5%,35.3%,22.6%and 16.3%,respectively.Compared to CINL,AI_(1)N_(M)reduced water consumption by 12.5%,but increased tomato yield,TNU,WUE_(y)and WUE_(d)by 35.5%,58.4%,54.4%and 53.7%,respectively.Therefore,AI_(1)can improve water use efficiency and total N uptake of tomato simultaneously at medium urea rate. 展开更多
关键词 alternate partial root-zone irrigation nitrogen level nitrogen uptake TOMATO water use efficiency YIELD
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Evaluation of tomato fruit quality response to water and nitrogen management under alternate partial root-zone irrigation 被引量:2
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作者 Yang Hui Cao Hongxia +3 位作者 Hao Xinmei Guo Lijie Li Hongzheng Wu Xuanyi 《International Journal of Agricultural and Biological Engineering》 SCIE EI CAS 2017年第5期85-94,共10页
A pot experiment was conducted to investigate the effects of different water and nitrogen supply amounts on the comprehensive assessment of tomato fruit quality and root growth parameters under alternate partial root-... A pot experiment was conducted to investigate the effects of different water and nitrogen supply amounts on the comprehensive assessment of tomato fruit quality and root growth parameters under alternate partial root-zone irrigation.Three upper irrigation limitations(i.e.70%(W1),80%(W2)and 90%(W3)of field capacity,respectively)and three N-fertilizer levels(i.e.0.18(N1),0.30(N2)and 0.42(N3)g/kg soil,respectively)were arranged with a randomized complete block design,and alternate partial root-zone irrigation method was applied.Results showed that fruit yields under deficit irrigation(W1 and W2)were decreased by 6.9%and 2.0%respectively compared with W3 under N1 level.Yields of tomato under W1N1 and W1N2 combinations were also reduced by 10.3%and 7.2%,respectively compared with W1N3 combination.Root dry weight,root length,root surface area and root volume were all increased in W1N2 treatment.According to two-way ANOVA,the root parameters except root dry weight,were extremely sensitive to water,nitrogen and the cross effect of the two factors.TSS(total soluble solids),SS(soluble sugars)and OA(organic acid)in the fruits increased with the decrease in irrigation water,OA and NC reduced with decreasing amount of nitrogen.Moreover,within an appropriate range,as more irrigation water and nitrogen were applied,the higher VC(vitamin C)and lycopene contents were identified in the fruits.Eventually,the combinational evaluation method(i.e.entropy method and gray relational analysis)showed that W2N2 ranked highest in comprehensive fruit quality.Therefore,considering the tradeoff between fruit comprehensive quality and yields,upper irrigation limitation of 80%θf and N-fertilizer of 0.30 g/kg soil with alternate partial root-zone irrigation was the optimal cultivation strategy for the greenhouse tomato in autumn-winter season in northwest China. 展开更多
关键词 greenhouse tomato alternate partial root-zone irrigation water and nitrogen root growth comprehensive fruit quality
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Alternate partial root-zone irrigation with high irrigation frequency improves root growth and reduces unproductive water loss by apple trees in arid north-west China 被引量:2
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作者 Shaoqing DU Ling TONG +4 位作者 Shaozhong KANG Fusheng LI Taisheng DU Sien LI Risheng DING 《Frontiers of Agricultural Science and Engineering》 2018年第2期188-196,共9页
Alternate partial root-zone irrigation(APRI)can improve water use efficiency in arid areas. However,the effectiveness and outcomes of different frequencies of APRI on water uptake capacity and physiological water use ... Alternate partial root-zone irrigation(APRI)can improve water use efficiency in arid areas. However,the effectiveness and outcomes of different frequencies of APRI on water uptake capacity and physiological water use have not been reported. A two-year field experiment was conducted with two irrigation amounts(400 and500 mm) and three irrigation methods(conventional irrigation, APRI with high and low frequencies). Root length density, stomatal conductance, photosynthetic rate,transpiration rate, leaf water use efficiency, midday stem and leaf water potentials were measured. The results show that in comparison with conventional irrigation, APRI with high frequency significantly increased root length density and decreased water potentials and stomatal conductance.No differences in the above indicators between the two APRI frequencies were detected. A significantly positive relationship between stomatal conductance and root length density was found under APRI. Overall, alternate partial root-zone irrigation with high frequency has a great potential to promote root growth, expand water uptake capacity and reduce unproductive water loss in the arid apple production area. 展开更多
关键词 alternate partial root-zone irrigation apple tree leaf water use efficiency root length density stomatal conductance water potential
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Understanding root-zone soil moisture in agricultural regions of Central Mexico using the ensemble Kalman filter,satellite-derived information,and the THEXMEX-18 dataset 被引量:1
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作者 Héctor Ernesto Huerta-Bátiz Daniel Enrique Constantino-Recillas +3 位作者 Alejandro Monsiváis-Huertero Juan Carlos Hernández-Sánchez Jasmeet Judge Ramón Sidonio Aparicio-García 《International Journal of Digital Earth》 SCIE EI 2022年第1期52-78,共27页
An Ensemble Kalman Filter(EnKF)-based assimilation algorithm was implemented to estimate root-zone soil moisture(RZSM)using a Soil-Vegetation-Atmosphere Transfer(SVAT)model during a complete growing season of corn in ... An Ensemble Kalman Filter(EnKF)-based assimilation algorithm was implemented to estimate root-zone soil moisture(RZSM)using a Soil-Vegetation-Atmosphere Transfer(SVAT)model during a complete growing season of corn in Central Mexico.Synthetic and field soil moisture(SM)observations and NASA SMAP SM retrievals were used to understand the effect of vertically spatial updates and uncertainties in meteorological forcings on RZSM estimates.Assimilation of RZSM every 3 days using SM observations at 4 depths lowered the averaged standard deviation(ASD)and the root mean square error(RMSE)by 60%and 50%,respectively,compared to the open-loop ASD.The assimilation of synthetic SM at the top 0-5 cm obtained RZSM closer to observations compared to THEXMEX-18 SM measurements and SMAP SM retrievals.Differences between EnKF estimates and SM observations and SMAP SM retrievals are mainly due to misrepresentation of vegetation conditions.The results improved SM estimates up to 10-cm depth using SMAP SM retrievals;however,additional studies are needed to improve SM at deeper layers.The implemented methodology can estimate SM at the top 10 cm of the soil every 3 days to mitigate the impact of the climate change on agricultural production over rainfed areas,particularly in developing countries. 展开更多
关键词 root-zone soil moisture SVAT model ensemble kalman filter soil moisture active-Passive(SMAP)mission agricultural region THEXMEX-18 central Mexico
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Role of alternate and fixed partial root-zone drying on water use efficiency and growth of maize(Zea mays L.)in gypsiferous soils 被引量:1
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作者 Abdulwahab Abdulrazak Al-Kayssi 《International Soil and Water Conservation Research》 SCIE CSCD 2023年第1期145-158,共14页
Alternate partial root-zone drying(APRD)is a water-saving method but can regulate crop physiological responses.A pot experiment has been conducted to study the efficiency of partial and fixed root-zone drying on the g... Alternate partial root-zone drying(APRD)is a water-saving method but can regulate crop physiological responses.A pot experiment has been conducted to study the efficiency of partial and fixed root-zone drying on the growth and production of maize(Zea mays L)in addition to the water use efficiency in soils with different gypsum content.The experimental treatments include three irrigation treatments,i.e.Conventional Irrigation(CI),Alternate Partial Root-zone Drying(APRD)and Fixed Partial Root-zone Drying(FPRD),and three soils with different gypsum content"(60.0[G1],153.7[G2],and 314.2[G3]g kg^(-1))".The vegetative growth,root dry mass and physiological indices(leaf relative water content,carotenoid concentration,proline)have been studied during three stages of maize plant growth(jointing,tasselling,and maturing).The Results showed that compared to CI,APRD and FPRD increased water use efficiency by 38.93 and 14.94%based on dry seed yield.In addition,compared to CI,APRD increased maize seed yield by 4.62-20.71%,while FPRD decreased yield by 19.24-5.28%for the gypsiferous soils G2 and G3,respectively.APRD has a slight effect on leaf water potential,leaf relative water content,carotenoid and proline activities from jointing to maturing stages at the three gypsiferous soils.Results suggest that APRD could make maize plants use water even more productively with better adaptation to water shortages in the gypsiferous soils. 展开更多
关键词 Partial root-zone drying Water use eficiency Cypsiferous soils Maize growth stages Maize grain yield
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Biochar and alternate partial root-zone irrigation greatly enhance the effectiveness of mulberry in remediating lead-contaminated soils
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作者 Lei Wang Qing-Lai Dang Binyam Tedla 《Journal of Plant Ecology》 SCIE CSCD 2020年第6期757-764,共8页
Aims Soil lead contamination has become increasingly serious and phytoremediation can provide an effective way to reclaim the contaminated soils.This study aims to examine the growth,lead resistance and lead accumulat... Aims Soil lead contamination has become increasingly serious and phytoremediation can provide an effective way to reclaim the contaminated soils.This study aims to examine the growth,lead resistance and lead accumulation of mulberry(Morus alba L.)seedlings at four levels of soil lead contamination with or without biochar addition under normal or alternative partial root-zone irrigation(APRI).Methods We conducted a three-factor greenhouse experiment with biochar(with vs.without biochar addition),irrigation method(APRI vs.normal irrigation)and four levels of soil lead(0,50,200 and 800 mg·kg^(-1)).The performance of the seedlings under different treatments was evaluated by measuring growth traits,osmotic substances,antioxidant enzymes and lead accumulation and translocation.Important Findings The results reveal that mulberry had a strong ability to acclimate to soil lead contamination,and that biochar and APRI synergistically increased the biomass and surface area of absorption root across all levels of soil lead.The seedlings were able to resist the severe soil lead contamination(800 mg·kg^(-1) Pb)by adjusting glutathione metabolism,and enhancing the osmotic and oxidative regulating capacity via increasing proline content and the peroxidase activity.Lead ions in the seedlings were primarily concentrated in roots and exhibited a dose–effect associated with the lead concentration in the soil.Pb,biochar and ARPI interactively affected Pb concentrations in leaves and roots,translocation factor and bioconcentration.Our results suggest that planting mulberry trees in combination with biochar addition and APRI can be used to effectively remediate lead-contaminated soils. 展开更多
关键词 Pb-contaminated soil PHYTOREMEDIATION Morus alba L. alternate partial root-zone irrigation BIOCHAR
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作物根区土壤水体中氮的迁移转化模拟研究进展
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作者 代朝猛 杨少林 +2 位作者 李质 张宏程 李思 《同济大学学报(自然科学版)》 北大核心 2026年第3期413-422,共10页
氮素作为作物生长的重要营养元素,其过量施用导致的土壤‒地下水污染制约着农业系统的可持续发展。先阐述了作物根区土壤水体中氮素的迁移转化过程,而后论述了其在土壤地下水中运移的数值模拟理论,重点探讨了土壤水体中氮素迁移转化模拟... 氮素作为作物生长的重要营养元素,其过量施用导致的土壤‒地下水污染制约着农业系统的可持续发展。先阐述了作物根区土壤水体中氮素的迁移转化过程,而后论述了其在土壤地下水中运移的数值模拟理论,重点探讨了土壤水体中氮素迁移转化模拟研究的进展及其不足;基于研究现状,对作物根区土壤水氮动态模拟研究的发展趋势进行了探讨,包括多过程交互机理的定量研究、数据信息的准确获取和先进模拟方法的集成三个方面;最后对作物根区土壤水体中氮的迁移转化模拟后续研究方向进行了展望。 展开更多
关键词 作物根区 氮素 迁移转化 数值模拟
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沙地固定程度对红砂灌丛叶-根功能性状权衡关系的影响
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作者 杨倩 《水土保持通报》 北大核心 2026年第1期48-56,共9页
[目的]研究沙地固定程度对红砂(Reaumuria songarica)灌丛叶-根功能性状的影响,为探究干旱区植物适应策略,保护植物多样性提供更多理论依据与数据支持。[方法]选择鄂尔多斯高原不同固定程度沙地上红砂灌丛作为研究对象,采用方差分析、Pe... [目的]研究沙地固定程度对红砂(Reaumuria songarica)灌丛叶-根功能性状的影响,为探究干旱区植物适应策略,保护植物多样性提供更多理论依据与数据支持。[方法]选择鄂尔多斯高原不同固定程度沙地上红砂灌丛作为研究对象,采用方差分析、Pearson相关性等分析方法,探究叶片与根系的功能性状特征,解析其养分含量规律。[结果](1)流动沙地的植物叶片相较于固定-半固定沙地表现为低肉质化程度(2.08)、低叶含水量(51.68%)、低叶饱和含水量(57.47%)、低叶C(34.9 g/kg)和低叶N(2.32 g/kg)的保守型策略,而根系则表现为更广的根系分布范围和高根N含量的获取型策略。(2)相较于半固定沙地,流动沙地多数指标相对作用强度值(RII)更远离零值。(3)多数叶片与根系的功能性状之间存在显著相关性(p<0.05)。[结论]红砂灌丛在适应胁迫环境时表现出地上地下性状解耦现象,并且随着环境压力的增加,植物性状变化更加明显。 展开更多
关键词 植物功能性状 叶片 根系 荒漠草原过渡带
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根域靶向灌溉对南太湖特早葡萄根系解剖结构及土壤水肥运移的调控效应
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作者 刘虹君 薛晓斌 +4 位作者 周鱼 宁琳 刘杰 李栋梅 王振平 《果树学报》 北大核心 2026年第2期294-308,共15页
【目的】探究根域靶向灌溉(root-zone targeting irrigation,RTI)对葡萄根系构型及土壤水肥运移的影响。【方法】以2年生南太湖特早葡萄树为试验材料,设置4个处理:常规滴灌(drip irrigation,DI)、100%RTI、75%RTI和50%RTI,分析其对根系... 【目的】探究根域靶向灌溉(root-zone targeting irrigation,RTI)对葡萄根系构型及土壤水肥运移的影响。【方法】以2年生南太湖特早葡萄树为试验材料,设置4个处理:常规滴灌(drip irrigation,DI)、100%RTI、75%RTI和50%RTI,分析其对根系活力、解剖结构及不同土层(0~60 cm)水分迁移和土壤碱解氮、有效磷、速效钾、有机质含量的影响。【结果】(1)水分运动规律结果显示,RTI处理通过将水分直接输送到葡萄根系分布区域,使深层土壤的水分分布优于DI处理。(2)在144 DAP,100%RTI处理的根系活力显著高于DI处理,是DI处理的1.23倍;(3)在144 DAP,75%RTI和50%RTI处理的导管密度分别比DI处理高25%和100%,而导管平均直径则呈相反趋势,分别比DI处理低19%和97%;(4)DI处理导致0~20 cm表层土壤养分显著富集,其碱解氮、有效磷、速效钾及有机质含量为RTI处理的1.54~3.10倍,但深层(30~60 cm)土壤养分整体低于RTI处理。RTI处理通过定向水分输送驱动养分向根系密集分布区迁移,其中100%RTI处理下20~60 cm土层碱解氮、有效磷、速效钾及有机质含量较DI处理高1.19~1.34倍,75%RTI处理下20~60 cm土层养分含量与DI处理结果较为接近。【结论】RTI处理通过优化根系导管结构与深层土壤养分分布,“表层减耗、深层增储”的模式可减少水分蒸发与径流导致的养分损失,增强植株抗旱能力并提高水分利用效率,为干旱区葡萄精准灌溉技术提供了理论依据。 展开更多
关键词 南太湖特早葡萄 根域靶向灌溉 根系 土壤水肥
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基于MWFCNet的树木根区相对介电常数反演
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作者 覃荣翰 樊国秋 +3 位作者 韩巧玲 郑一力 徐吉臣 梁浩 《林业科学》 北大核心 2026年第1期109-121,共13页
【目的】针对树木根区探地雷达(GPR)检测图像复杂、解译困难以及反演精度低等问题,提出一种基于偏移权值指导的改进全卷积神经网络(MWFCNet)的树木根区相对介电常数反演方法,实现树木根区地下相对介电常数环境的高精度反演重建,为树木... 【目的】针对树木根区探地雷达(GPR)检测图像复杂、解译困难以及反演精度低等问题,提出一种基于偏移权值指导的改进全卷积神经网络(MWFCNet)的树木根区相对介电常数反演方法,实现树木根区地下相对介电常数环境的高精度反演重建,为树木根系无损检测和根域土壤环境探测提供一种高效、可靠的技术手段,为树木-土壤介电环境相互作用机制的深入研究提供新的工具和方法。【方法】以成熟三倍体毛白杨根区环境为研究对象,利用开源软件gprMax生成GPR B-scan仿真模拟样本,结合CycleGAN实现样本风格迁移,构建3000对GPR B-scan与对应测线剖面二维相对介电常数模型的训练样本;为解决反演网络对背景介质反演效果不佳的问题,在输入模块中引入GPR偏移图像序列及其对应的偏移权值序列,构建一个以编码器-解码器为主干的网络架构,采用2种不同卷积尺寸并行处理,并通过跳跃连接实现特征图像的多尺度特征提取;应用全连接层进一步整合图像特征,增强特征表达能力,进而输出所测根区地下二维相对介电常数模型。选取结构相似度指数(SSIM)、峰值信噪比(PSNR)和均方误差(MSE)作为GPR反演效果的评价指标,背景方差作为对背景介质还原程度的评价指标。【结果】相较于现有的Enc-Dec、U-net、PInet等方法,在对相同测试集的反演上,MWFCNet方法的SSIM提高0.11%~3.23%,MSE提升0.11~0.73,PSNR提升0.31~5.83 dB;在对背景介质还原程度上,MWFCNet方法的背景方差下降0.035~0.15。【结论】基于MWFCNet的树木根区相对介电常数反演方法能够精准识别出树木粗根位置,实现对GPR测线剖面地下相对介电常数图谱的二维重建还原,结合GPR采样方式还可实现对根区地下三维相对介电环境的重建还原。 展开更多
关键词 基于偏移权值指导的改进全卷积神经网络(MWFCNet) 相对介电常数 树木根区 探地雷达 B-scan图像反演
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抚仙湖流域起垄施肥一体化机械应用对烤烟产量与养分吸收的影响
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作者 陆欣远 钱玭 +4 位作者 徐勇贤 王一柳 王火焰 卢殿君 郑乐 《中国农学通报》 2026年第4期52-58,共7页
探究抚仙湖流域烤烟根区专用肥与起垄施肥一体化机械化配套应用的效果,为该区域烤烟生产提供理论依据和技术支撑。通过田间试验,设置不施肥和当地常规复合肥、根区专用肥9-9-32、根区专用肥9-9-32+枸溶性钾肥3种配方,采用分次撒施、常... 探究抚仙湖流域烤烟根区专用肥与起垄施肥一体化机械化配套应用的效果,为该区域烤烟生产提供理论依据和技术支撑。通过田间试验,设置不施肥和当地常规复合肥、根区专用肥9-9-32、根区专用肥9-9-32+枸溶性钾肥3种配方,采用分次撒施、常规机械起垄施肥、起垄施肥一体机械施肥3种施肥方式,共6个处理。分析起垄施肥一体机根区施肥对烟株生长与养分吸收的影响,并综合评价烤烟根区施肥机械化的效果。结果表明,起垄施肥一体机单穴施肥量均匀性、施肥间距稳定性等参数的变异系数均小于5%,符合当地机械化施肥作业要求。相较当地复合肥+硫酸钾肥分次撒施处理(T2),根区专用肥+枸溶性钾肥配套机械化根区施肥处理(T6)在不同生长时期均可显著促进烤烟生长及养分吸收累积(P<0.05),其中烟叶产量、产值分别增加13.4%、13.7%;T6处理中部烟叶钾含量、钙含量、镁含量分别较T2提高15.3%、15.8%、13.5%,钙、镁的吸收量则分别提高79.9%、97.6%。主成分分析表明,T6处理综合效应最优。综上,在抚仙湖流域采用烤烟根区专用肥,并配套起垄施肥一体化机械,能够显著促进烤烟产量与烟钾含量提升,达到增产提质的效果,并有助于减少化肥用量和环境污染。 展开更多
关键词 烤烟 根区施肥 机械化施肥 产量 养分吸收
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土壤水分动态模拟二区模型参数的时间稳定性研究
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作者 李霖 李炎 +2 位作者 王仰仁 李金玉 柴俊芳 《节水灌溉》 北大核心 2026年第2期84-91,100,共9页
田间土壤水分动态预测是灌溉预报的关键,建立有效的土壤水分动态模拟模型对于实现精准灌溉、提高作物产量和水资源利用率具有重要意义。严格采用非饱和土壤水分运动达西定律,将根区土壤水分平衡方程和储水区土壤水分平衡方程进行了联立... 田间土壤水分动态预测是灌溉预报的关键,建立有效的土壤水分动态模拟模型对于实现精准灌溉、提高作物产量和水资源利用率具有重要意义。严格采用非饱和土壤水分运动达西定律,将根区土壤水分平衡方程和储水区土壤水分平衡方程进行了联立求解,分析推导改进并建立二区模型。以山西省霍泉站2016-2023年冬小麦复播夏玉米的试验资料作为计算依据,运用改进后的二区模型对每个年份中全生育期灌水较多和不灌水的两个处理进行0~80 cm土壤水分动态过程模拟。以拟合结果误差平方和最小为目标函数,采用规划求解率定模型参数,计算在Microsoft Excel 2016软件中完成。经逐年依次组合模拟验证,结果表明:①改进后的二区模型在0~80 cm的土壤含水率模拟值与实测值呈现出较高的吻合度,7个年度模拟结果对应的R^(2)均超过0.74;模拟结果的平均相对误差在9%以内,43.2%的模拟结果相对误差小于±5%,72.0%的模拟结果相对误差小于±10%;模拟的土壤水分数值和实测数值基本一致。②随着样本数的增加,即年度数的增加,模型根区和储水区的土壤水分特征参数都呈现出一定的变化趋势和规律。总体而言,该方法下建立的二区模型具有较高的模拟精度,并且随着年度数的增加,该模型的参数具有较好稳定性。 展开更多
关键词 灌溉预报 根区 二区模型 土壤水分特征参数
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