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414篇 您的检索式:作者名="Rengel"
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1Toxicity of cadmium and its competition with mineral nutrients for uptake by plants:A review显示文摘Cadmium(Cd)is a toxic heavy metal occurring in the environment naturally and is also generated through various anthropogenic sources and acts as a pollutant.Human health is affected by Cd pollution in farmland soils because food is the main source of Cd intake in the non-smoking population.For crops,Cd toxicity may result from a disturbance in uptake and translocation of mineral nutrients and disturbance in plant metabolism,inhibiting plant growth and development.However,plants have Cd tolerance mechanisms,including restricted Cd uptake,decreased Cd root-to-shoot translocation,enhanced antioxidant enzyme activities,and increased production of phytochelatins.Furthermore,optimal supply of mineral nutrients is one of the strategies to alleviate the damaging effects of Cd on plants and to avoid its entry into the food chain.The emerging molecular knowledge contributes to understanding Cd uptake,translocation,and remobilization in plants.In this review,Cd toxicity and tolerance mechanisms,agricultural practices to minimize Cd accumulation,Cd competition with essential elements(calcium,copper,iron,zinc,and manganese),and genes associated with Cd uptake are discussed in detail,especially regarding how these mineral nutrients and genes play a role in decreasing Cd uptake and accumulation in crop plants.Shiyu QIN Hongen LIU Zhaojun NIE Zed RENGEL Wei GAO Chang LI Peng ZHAO 2020Pedosphere2020,30,2:20
2Cadmium Accumulation and Translocation in Two Jerusalem Artichoke(Helianthus tuberosus L.) Cultivars显示文摘Jerusalem artichoke(Helianthus tuberosus L.) not just can be used for bioethanol production but may be potentially used in phytoremediation for the removal of heavy metal pollutants.Two Jerusalem artichoke cultivars,N2 and N5,were subjected to six cadmium(Cd) concentrations(0,5,25,50,100 and 200 mg L1) to investigate Cd tolerance and accumulation.After 21 days of growth,the effects of Cd on growth,chlorophyll content,net photosynthetic rate,intercellular CO2 concentration and malondialdehyde content were evaluated.Most growth parameters were reduced under Cd stress.The two Jerusalem artichoke cultivars had relatively high Cd tolerance and accumulation capacity(> 100 mg kg1),with N5 being more tolerant and having higher Cd accumulation than N2.Roots accumulated more Cd than stems and leaves.The bioconcentration factors(far higher than 1) and translocation factors(lower than 1) decreased with an increase in Cd applied.The results suggested that Jerusalem artichoke could be grown at relatively high Cd loads,and N5 could be an excellent candidate for phytoremediation of Cd-contaminated soils.CHEN Liang LONG Xiao-Hua ZHANG Zhen-Hua ZHENG Xiao-Tao Z. RENGEL LIU Zhao-Pu 2011Pedosphere2011,21,5:19
3Influence of ammonium and nitrate supply on growth, nitrate reductase activity and N-use efficiency in a natural hybrid pine and its parents显示文摘Selection of tree species with a high capacity to assimilate N and efficiently utilize N resources would facilitate the success of initial tree seedling establishment in infertile soils.The preference for N forms was tested using three pine species(Pinus densata,Pinus tabuliformis and Pinus yunnanensis).Pinus densata is a natural diploid hybrid between P.tabuliformis and P.yunnanensis.Methods Seedlings of three pine species were supplied with nitrate-N,ammonium-N(at two different pH regimes)or combined ammonium and nitrate as a nitrogen source in perlite culture in a controlled environment.Important Findings Seedlings of P.densata had higher total biomass and net photosynthesis when supplied with nitrate-N and ammonium nitrate than with ammonium-N.In parental species,total biomass and net photosynthesis for P.yunnanensis seedlings was higher in ammonium-N than in nitrate-N,whereas the other parental species P.tabuliformis had the highest total biomass among species for all treatments except ammonium with CaCO_(3).Most morphological traits in P.densata seedlings were intermediate between its two parental species.However,N-use efficiency and photosynthetic N-use efficiency of P.densata significantly exceeded both parents when supplied with nitrate-N and ammonium nitrate.The results suggested that the diploid hybrid tree species P.densata has a preference for nitrate and is not well adapted to ammonium-N as a sole nitrogen source regardless of the growth medium pH.Based on changes in environmental conditions,such as predicted future temperature increases in high altitude areas associated with climate change,P.densata is likely to be increasingly competitive and have wide adaptation in high altitude regions.Buqing Yao Jing Cao Changming Zhao Zed Rengel 2011Journal of Plant Ecology2011,4,4:15
4^(15)N isotope fractionation in an aquatic food chain:Bellamya aeruginosa(Reeve) as an algal control agent显示文摘15N isotope tracer techniques and ecological modeling were adopted to investigate the fractionation of nitrogen,its uptake and transformation in algae and snail(Bellamya aeruginosa Reeve).Different algal species were found to differ in their uptake of nitrogen isotopes.Microcystis aeruginisa Ktz.demonstrated the greatest 15N accumulation capacity,with the natural variation in isotopic ratio(δ 15N) and the isotope fractionation factor(ε,‰) being the highest among the species investigated.The transformation and utilization of 15N by snails differed depending on the specific algae consumed(highest for Chlorella pyrenoidosa Chick.,lowest for M.aeruginisa).When snails was seeded in the experimental pond,the algae population structure changed significantly,and total algal biomass as well as the concentration of all nitrogen species decreased,causing an increase in water transparency.A model,incorporating several chemical and biological parameters,was developed to predict algal biomass in an aquatic system when snails was present.The data collected during this investigation indicated that the gastropods such as snails could significantly impact biological community and water quality of small water bodies,suggesting a role for biological control of noxious algal blooms associated with eutrophication.Shiqun Han Shaohua Yan Kaining Chen Zhenhua Zhang Rengel Zed Jianqiu Zhang Wei Song Haiqin Liu 2010Journal of Environmental Sciences2010,22,2:14
5磷和外源生长素对白羽扇豆(Lupinus albus L.)根形态和生理特性的影响显示文摘白羽扇豆(Lupinus albus L.)对磷和生长素表现出高度的根系形态和生理可塑性反应,然而磷和生长素如何调节根形态和生理特性以及它们对根形态和生理的交互效应尚不清楚.本研究通过水培实验旨在评价磷(0或250μmol/L)和生长素(10-8mol/LNAA)对白羽扇豆根特性的影响及其交互效应.结果表明,缺少磷和生长素施用均明显改变了白羽扇豆的根形态(主根长度减少、一级侧根数目增加和排根大量形成)和生理特性(质子释放、柠檬酸分泌和酸性磷酸酶活性增加).外源生长素的施用增加了缺磷白羽扇豆根系的响应度和敏感性.磷和生长素对白羽扇豆根系形态和生理具有明显的交互作用.主成分分析表明,磷解释了根特性64.8%的信息,而生长素解释了21.3%的信息,表明磷供应对白羽扇豆根特性的影响比外源生长素施用更为重要.白羽扇豆能够通过协调根系形态和生理对外部刺激(如缺磷和施用生长素)作出应答,以及优化根形态和生理之间的关系从而最大化获取磷素资源.唐宏亮 申建波 张福锁 Zed Rengel 2013中国科学:生命科学2013,43,3:12
6In-situ nitrogen removal from the eutrophic water by microbial-plant integrated system显示文摘Objective: This study was to assess the influence of interaction of combination of immobilized nitrogen cycling bacteria (INCB) with aquatic macrophytes on nitrogen removal from the eutrophic waterbody, and to get insight into different mechanisms involved in nitrogen removal. Methods: The aquatic macrophytes used include Eichhornia crassipes (sum-mer-autumn floating macrophyte), Elodea nuttallii (winter-growing submerged macrophyte), and nitrogen cycling bacteria in-cluding ammonifying, nitrosating, nitrifying and denitrifying bacteria isolated from Taihu Lake. The immobilization carriers materials were made from hydrophilic monomers 2-hydroxyethyl acrylate (HEA) and hydrophobic 2-hydroxyethyl methylacrylate (HEMA). Two experiments were conducted to evaluate the roles of macrophytes combined with INCB on nitrogen removal from eutrophic water during different seasons. Results: Eichhornia crassipes and Elodea nuttallii had different potentials in purification of eutrophic water. Floating macrophyte+bacteria (INCB) performed best in improving water quality (during the first experiment) and decreased total nitrogen (TN) by 70.2%, nitrite and ammonium by 92.2% and 50.9%, respectively, during the experimental period, when water transparency increased from 0.5 m to 1.8 m. When INCB was inoculated into the floating macrophyte system, the populations of nitrosating, nitrifying, and denitrifying bacteria increased by 1 to 2 orders of magnitude compared to the un-inoculated treatments, but ammonifying bacteria showed no obvious difference between different treatments. Lower values of chlorophyll a, CODMn, and pH were found in the microbial-plant integrated system, as compared to the control. Highest reduction in N was noted during the treatment with submerged macrophyte+INCB, being 26.1% for TN, 85.2% for nitrite, and 85.2% for ammonium at the end of 2nd experiment. And in the treatment, the populations of ammonifying, nitrosating, nitrifying, and de-nitrifying bacteria increased by 1 to 3 orders of magnitude, as compared to the un-inoculated treatments. Similar to the first ex-periment, higher water transparency and lower values of chlorophyll a, CODMn and pH were observed in the plant+ INCB inte-grated system, as compared to other treatments. These results indicated that plant-microbe interaction showed beneficial effects on N removal from the eutrophic waterbody.CHANG Hui-qing YANG Xiao-e FANG Yun-ying PU Pei-min LI Zheng-kui RENGEL Zed 2006Journal of Zhejiang University-Science B(Biomedicine & Biotechnology)2006,7,7:6
7Interactive effects of phosphorus deficiency and exogenous auxin on root morphological and physiological traits in white lupin (Lupinus albus L.)显示文摘White lupin (Lupinus albus) exhibits strong root morphological and physiological responses to phosphorus (P) deficiency and auxin treatments, but the interactive effects of P and auxin in regulating root morphological and physiological traits are not fully understood. This study aimed to assess white lupin root traits as influenced by P (0 or 250 μmol L-1 ) and auxin (10-8 μmol L-1 NAA) in nutrient solution. Both P deficiency and auxin treatments significantly altered root morphological traits, as evidenced by reduced taproot length, increased number and density of first-order lateral roots, and enhanced cluster-root formation. Changes in root physiological traits were also observed, i.e., increased proton, citrate, and acid phosphatase exudation. Exogenous auxin enhanced root responses and sensitivity to P deficiency. A significant interplay exists between P and auxin in the regulation of root morphological and physiological traits. Principal component analysis showed that P availability explained 64.8% and auxin addition 21.3% of the total variation in root trait parameters, indicating that P availability is much more important than auxin in modifying root responses of white lupin. This suggests that white lupin can coordinate root morphological and physiological responses to enhance acquisition of P resources, with an optimal trade-off between root morphological and physiological traits regulated by external stimuli such as P availability and auxin.TANG HongLiang SHEN JianBo ZHANG FuSuo RENGEL Zed 2013Science China(Life Sciences)2013,56,4:5
8Wheat/maize or wheat/soybean strip intercropping显示文摘Long Li Jianhao Sun Fusuo Zhang Xiaolin Li Zdenko Rengel Sicun Yang 2001Field Crops Research2001,,3:2
9A model formative assessment strategy to promote student-centered self-regulated learning in higher education显示文摘Jayakumar Bose Zed Rengel 2009美中教育评论2009,6,12:2
10Genotypic differences in the production and partitioning of carbohydrates between roots and shoots of wheat grown under zinc or manganese deficiency显示文摘Pearson J N Rengel Z 1997Annals of Botany1997,80,:2
11Plant genotype, micronutrient fertilization and take-all infection influence bacterial populations in the rhizosphere of wheat 显示文摘Rengel Z Gutteridge R Hirsch E 1996Plant and Soil1996,183,:1
12Influence of cyclosporin, tacrolimus and rapamycin on renal function and arterial hypertension after renal transplantation 显示文摘Morales JM Andres A Rengel M 2003Nephrel Dial Transplant2003,18,1:1
13Distribution and remobilization of Zn and Mn during grain development in wheat显示文摘Pearson J N Rengel Z 0,,12:1
14Cd accumulation and translocation in four emergent wetland species显示文摘Zhang Z Rengel Z Meney K 2010Water Air and Soil Pollution2010,212,:1
15Kinetics of ammonium, nitrate and phosphorus uptake by Canna indica and Schoenoplectus validus显示文摘Zhenhua Zhang Zed Rengel Kathy Meney 2009Aquatic Botany2009,,2:1
16Importance of seed Zn content for wheat growth on Zn-deficient soil显示文摘Zdenko Rengel Robin D Graham 1995Plant and Soil1995,173,:1
17Uptake of Al across the plasma membrane of plant cells显示文摘Rengel Z Reid R J 1997Plant Soil1997,192,:1
18Canola cultivars differ in nitrogen utilization efficiency at vegetative stage 显示文摘Sveenjak Z Rengel Z 2006Field Crops Research2006,97,23:1
19Root exudation and Fe uptake and transport in wheat genotypes differing in tolerance to Zn deficiency显示文摘Rengel Z Romheld V 2000Plant and Soil2000,222,:1
20Biological nitrogen cycling in the nitraciine 显示文摘Ward B B Kilpatrick K A Rengel' E H 1989Limnology and Oceanography1989,34,3:1
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