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应用病毒诱导基因沉默技术研究棉花GhAKT1和GhKT2基因的功能 被引量:3
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作者 穆春 安静 +3 位作者 李婷婷 王逸茹 张明才 田晓莉 《棉花学报》 CSCD 北大核心 2017年第1期40-49,共10页
【目的】本研究旨在揭示棉花钾离子(K^+)吸收机制。【方法】以国欣棉3号和中棉所41为材料,应用病毒诱导基因沉默技术研究棉花K^+通道基因GhAKT1和K^+转运体基因GhKT2的功能。【结果】在低水平供K^+(0.1 mmol·L^(-1))和充分供K^+(2.... 【目的】本研究旨在揭示棉花钾离子(K^+)吸收机制。【方法】以国欣棉3号和中棉所41为材料,应用病毒诱导基因沉默技术研究棉花K^+通道基因GhAKT1和K^+转运体基因GhKT2的功能。【结果】在低水平供K^+(0.1 mmol·L^(-1))和充分供K^+(2.5 mmol·L^(-1))条件下,沉默GhAKT1和GhKT2基因使棉花幼苗的K^+积累量分别降低15%左右和25%以上。此外,沉默GhAKT1和GhKT2基因导致棉花幼苗对K^+的最大吸收速率和亲和能力出现不同程度的下降。药理学试验结果表明,在外界K^+浓度低于250μmol·L^(-1)的条件下,高亲和系统对棉花K^+吸收的贡献大于K^+通道;而且GhAKT1蛋白可能是1个对NH4+比较敏感的组分。【结论】棉花K^+通道蛋白GhAKT1和K^+转运体蛋白GhKT2具有吸收K^+的功能,而且表现出双亲和吸收K^+的特性,可作为改善棉花钾营养的候选基因。 展开更多
关键词 棉花 GhAKT1 GhKT2 K+吸收
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GhKT2: a novel K^+ transporter gene in cotton(Gossypium hirsutum) 被引量:3
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作者 Yiru WANG Juan XU +2 位作者 Mingcai ZHANG Xiaoli TIAN Zhaohu LI 《Frontiers of Agricultural Science and Engineering》 2018年第2期226-235,共10页
Potassium is an essential nutrient for plant growth and productivity of crops. K+transporters are important for K+uptake and transport in plants. However,information on the function of K+transporters and K+channels in... Potassium is an essential nutrient for plant growth and productivity of crops. K+transporters are important for K+uptake and transport in plants. However,information on the function of K+transporters and K+channels in cotton is limited. The KT/KUP/HAK protein family is essential for a variety of physiological processes in plants, including nutrient acquisition and regulation of development. This study, identified a K+transporter gene,Gh KT2, expressed in the roots of cotton(Gossypium hirsutum) cv. Liaomian17. The deduced transcript of Gh KT2 is highly homologous to Cluster II of KUP/HAK/KT K+transporters and is predicted to contain 11 transmembrane domains. Gh KT2 has been localized to the plasma membrane, and its transcripts were detected in roots, stems, leaves and shoot apices of cotton seedlings.Consistently, b-glucuronidase(GUS) expression driven by the Gh KT2 promoter could be detected in roots, mesophyll cells, and leaf veins in transgenic Arabidopsis. In addition,the expression of Gh KT2 was induced by low K+stress in cotton roots and p Gh KT2::GUS-transgenic Arabidopsis seedlings. The Gh KT2-overexpression Arabidopsis lines plants were larger and showed greater K+accumulation than the wild type(WT) regardless of K+concentration supplied. The net K+influx rate, measured by the noninvasive micro-test technique, in root meristem zone of Gh KT2-transgenic Arabidopsis lines was significantly greater than that of WT. Taken together, this evidence indicates that Gh KT2 may participate in K+acquisition from low or high external K+, as well as K+transport and distribution in plants. 展开更多
关键词 COTTON GhKT2 POTASSIUM TRANSPORTER UPTAKE
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