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3篇 您的检索式:作者名="Hongye Qu"
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1The OsAMT1.1 gene functions in ammonium uptake and ammoniumepotassium homeostasis over low and high ammonium concentration ranges显示文摘Rice(Oryza sativa) grown in paddy fields is an ammonium(NH^+_4)-preferring crop;however,its AMT-type NH^+_4transporters that mediate root N acquisition have not been well characterized yet.In this study,we analyzed the expression pattern and physiological function of the OsAMT1.1 gene of the AMT1 subfamily in rice.Os AMT1.1 is located in the plasma membrane and is mainly expressed in the root epidermis,stele and mesophyll cells.Disruption of the Os AMT1.1 gene decreased the uptake of NH^+_4,and the growth of roots and shoots under both low NH^+_4and high NH^+_4conditions.Os AMT1.1 contributed to the short-term(5 min)^(15)NH^+_4influx rate by approximately one-quarter,irrespective of the NH^+_4concentration.Knockout of Os AMT1.1 significantly decreased the total N transport from roots to shoots under low NH^+_4conditions.Moreover,compared with the wild type,the osamt1.1 mutant showed an increase in the potassium(K)absorption rate under high NH^+_4conditions and a decrease under low NH^+_4conditions.The mutants contained a significantly high concentration of K in both the roots and shoots at a limited K(0.1 mmol/L)supply when NH^+_4was replete.Taken together,the results indicated that OsAMT1.1 significantly contributes to the NH^+_4uptake under both low and high NH^+_4conditions and plays an important role in Ne K homeostasis in rice.Chang Li Zhong Tang Jia Wei Hongye Qu Yanjie Xie Guohua Xu 2016Journal of Genetics and Genomics2016,43,11:12
2Micro prop- agation of Pinus mazsoniana and mycorrhiza formation in vitro显示文摘ZHU Lihua WU Xiaoqian QU Hongye 2010Plant Cell Tissue Organ Cult2010,102,:1
3Remediation of di(2-ethylhexyl)phthalate(DEHP)contaminated black soil by freeze-thaw aging biochar显示文摘Di(2-ethylhexyl)phthalate(DEHP),a complex structure with high toxicity,is a common organic pollutant.This study investigated the effects of fresh biochar(FBC),and freeze-thaw cycled aged biochar(FTC-BC)on DEHP-contaminated soils using a pot experiment.The specific surface area of FBC increased from 145.20 to 303.50 m~2/g,and oxygen-containing functional groups increased from 1.26 to 1.48 mol/g after freeze-thaw cycles,greatly enhancing the adsorption of DEHP by biochar in the soil.The comprehensive radar chart evaluation showed that FBC and FTC-BC reduced DEHP growth stress and improved the soil properties.Compared with FBC,FTC-BC performed better in protecting the normal growth of pakchoi and improving soil properties.In addition,the application of biochar increased the diversity and abundance of bacteria in the DEHP-contaminated soil and changed the composition of the soil bacterial community.The partial least squares path model(PLS-PM)showed that adding biochar as a soil remediation agent significantly positively impacted soil nutrients and indirectly reduced the DEHP levels in soil and plants by increasing soil microbial diversity.Compared with FBC,FTC-BC creates a more satisfactory living environment for microorganisms and has a better effect on the degradation of DEHP in the soil.This study provides a theoretical basis for future biochar remediation of DEHP-contaminated soils in cold high-latitude regions.Lei Wang Zeyu Dou Chaoran Ma Xiaochen Jia Hongye Wang Wenjing Bao Lei Wang Jianhua Qu Ying Zhang 2024Journal of Environmental Sciences2024,,1:0
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