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细胞分裂素和细胞分裂素信号在拟南芥低钾胁迫响应中的调控作用。

Regulatory roles of cytokinins and cytokinin signaling in response to potassium deficiency in Arabidopsis.

机构信息

RIKEN Plant Science Center, Yokohama, Kanagawa, Japan.

出版信息

PLoS One. 2012;7(10):e47797. doi: 10.1371/journal.pone.0047797. Epub 2012 Oct 24.

Abstract

Potassium (K) is an important plant macronutrient that has various functions throughout the whole plant over its entire life span. Cytokinins (CKs) are known to regulate macronutrient homeostasis by controlling the expression of nitrate, phosphate and sulfate transporters. Although several studies have described how CKs signal deficiencies for some macronutrients, the roles of CKs in K signaling are poorly understood. CK content has been shown to decrease under K-starved conditions. Specifically, a CK-deficient mutant was more tolerant to low K than wild-type; however, a plant with an overaccumulation of CKs was more sensitive to low K. These results suggest that K deprivation alters CK metabolism, leading to a decrease in CK content. To investigate this phenomenon further, several Arabidopsis lines, including a CK-deficient mutant and CK receptor mutants, were analyzed in low K conditions using molecular, genetic and biochemical approaches. ROS accumulation and root hair growth in low K were also influenced by CKs. CK receptor mutants lost the responsiveness to K-deficient signaling, including ROS accumulation and root hair growth, but the CK-deficient mutant accumulated more ROS and exhibited up-regulated expression of HAK5, which is a high-affinity K uptake transporter gene that is rapidly induced by low K stress in ROS- and ethylene-dependent manner in response to low K. From these results, we conclude that a reduction in CK levels subsequently allows fast and effective stimulation of low K-induced ROS accumulation, root hair growth and HAK5 expression, leading to plant adaptation to low K conditions.

摘要

钾(K)是一种重要的植物大量营养素,在整个生命周期中对整株植物都有各种功能。细胞分裂素(CKs)被认为通过控制硝酸盐、磷酸盐和硫酸盐转运蛋白的表达来调节大量营养素的稳态。尽管有几项研究描述了 CKs 如何对一些大量营养素的缺乏进行信号传递,但 CKs 在 K 信号传递中的作用仍知之甚少。在低钾条件下,CK 含量已被证明会降低。具体来说,CK 缺陷突变体对低钾的耐受性比野生型更强;然而,CK 积累过多的植物对低钾更敏感。这些结果表明,K 剥夺会改变 CK 代谢,导致 CK 含量降低。为了进一步研究这一现象,使用分子、遗传和生化方法在低钾条件下对包括 CK 缺陷突变体和 CK 受体突变体在内的几种拟南芥系进行了分析。CK 还影响低钾条件下的 ROS 积累和根毛生长。CK 受体突变体失去了对低钾信号的响应能力,包括 ROS 积累和根毛生长,但 CK 缺陷突变体积累了更多的 ROS,并表现出 HAK5 的上调表达,HAK5 是一种高亲和力 K 摄取转运蛋白基因,它在低钾胁迫下以 ROS 和乙烯依赖性方式快速诱导,以响应低钾。根据这些结果,我们得出结论,CK 水平的降低随后允许快速有效地刺激低钾诱导的 ROS 积累、根毛生长和 HAK5 表达,从而使植物适应低钾条件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1e86/3480408/4dca7d4bf178/pone.0047797.g001.jpg

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