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水稻AKT1钾通道的过表达影响钾营养和水稻耐旱性。

Overexpression of the rice AKT1 potassium channel affects potassium nutrition and rice drought tolerance.

作者信息

Ahmad Izhar, Mian Afaq, Maathuis Frans J M

机构信息

Department of Biology, University of York, York YO10 5DD, UK.

Department of Biology, University of York, York YO10 5DD, UK

出版信息

J Exp Bot. 2016 Apr;67(9):2689-98. doi: 10.1093/jxb/erw103. Epub 2016 Mar 11.

Abstract

Potassium (K(+)) is the most important cationic nutrient for all living organisms and has roles in most aspects of plant physiology. To assess the impact of one of the main K(+) uptake components, the K(+) inward rectifying channel AKT1, we characterized both loss of function and overexpression of OsAKT1 in rice. In many conditions, AKT1 expression correlated with K(+) uptake and tissue K(+) levels. No salinity-related growth phenotype was observed for either loss or gain of function mutants. However, a correlation between AKT1 expression and root Na(+) when the external Na/K ratio was high suggests that there may be a role for AKT1 in Na(+) uptake in such conditions. In contrast to findings with Arabidopsis thaliana, we did not detect any change in growth of AKT1 loss of function mutants in the presence of NH4 (+) Nevertheless, NH4 (+)-dependent inhibition was detected during K(+) uptake assays in loss of function and wild type plants, depending on pre-growth conditions. The most prominent result of OsAKT1 overexpression was a reduction in sensitivity to osmotic/drought stress in transgenic plants: the data suggest that AKT1 overexpression improved rice osmotic and drought stress tolerance by increasing tissue levels of K(+), especially in the root.

摘要

钾(K⁺)是所有生物最重要的阳离子养分,在植物生理学的大多数方面都发挥着作用。为了评估主要的钾离子吸收成分之一——钾离子内向整流通道AKT1的影响,我们对水稻中OsAKT1的功能缺失和过表达进行了表征。在许多情况下,AKT1的表达与钾离子吸收和组织中的钾离子水平相关。功能缺失或功能获得突变体均未观察到与盐度相关的生长表型。然而,当外部钠钾比高时,AKT1表达与根中钠离子之间的相关性表明,在这种情况下AKT1可能在钠离子吸收中发挥作用。与拟南芥的研究结果相反,在存在铵根离子(NH₄⁺)的情况下,我们未检测到AKT1功能缺失突变体的生长有任何变化。不过,在功能缺失突变体和野生型植物的钾离子吸收试验中,根据预生长条件,检测到了铵根离子依赖性抑制。OsAKT1过表达最显著的结果是转基因植物对渗透/干旱胁迫的敏感性降低:数据表明,AKT1过表达通过提高组织中的钾离子水平,尤其是在根部,提高了水稻对渗透和干旱胁迫的耐受性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c696/4861017/cbf392e1217d/exbotj_erw103_f0001.jpg

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