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依赖于年龄的 ABA 诱导型受体激酶 RPK1 的作用,作为拟南芥叶片衰老的正调控因子。

Age-dependent action of an ABA-inducible receptor kinase, RPK1, as a positive regulator of senescence in Arabidopsis leaves.

机构信息

Division of Molecular Life Sciences, POSTECH, Pohang, Korea.

出版信息

Plant Cell Physiol. 2011 Apr;52(4):651-62. doi: 10.1093/pcp/pcr026. Epub 2011 Mar 7.

Abstract

Leaf senescence, which constitutes the final stage of leaf development, involves programmed cell death and is intricately regulated by various internal and environmental signals that are incorporated with age-related information. ABA plays diverse and important physiological roles in plants, and is involved in various developmental events and stress responses. ABA has long been regarded as a positive regulator of leaf senescence. However, the cellular mediators of ABA-induced senescence have not been identified. We sought to understand the ABA-induced senescence signaling process in Arabidopsis by examining the function of an ABA- and age-induced gene, RPK1, which encodes a membrane-bound, leucine-rich repeat-containing receptor kinase (receptor protein kinase 1). Loss-of-function mutants in RPK1 were significantly delayed in age-dependent senescence. Furthermore, rpk1 mutants exhibited reduced sensitivity to ABA-induced senescence but little change to jasmonic acid- or ethylene-induced senescence. RPK1 thus mediates ABA-induced leaf senescence as well as age-induced leaf senescence. Conditional overexpression of RPK1 at the mature stage clearly accelerated senescence and cell death, whereas induction of RPK1 at an early developmental stage retarded growth without triggering senescence symptoms. Therefore, RPK1 plays different roles at different stages of development. Consistently, exogenously applied ABA affected leaf senescence in old leaves but not in young leaves. The results, together, showed that membrane-bound RPK1 functions in ABA-dependent leaf senescence. Furthermore, the effect of ABA and ABA-inducible RPK1 on leaf senescence is dependent on the age of the plant, which in part explains the mechanism of functional diversification of ABA action.

摘要

叶片衰老,构成了叶片发育的最后阶段,涉及程序化细胞死亡,并且受到各种内部和环境信号的复杂调控,这些信号与年龄相关的信息结合在一起。ABA 在植物中发挥着多样化和重要的生理作用,参与各种发育事件和应激反应。ABA 长期以来一直被认为是叶片衰老的正调控因子。然而,ABA 诱导衰老的细胞介体尚未确定。我们通过研究 ABA 和年龄诱导的基因 RPK1 的功能,试图了解拟南芥中 ABA 诱导的衰老信号转导过程,该基因编码一种膜结合、富含亮氨酸重复的受体激酶(受体蛋白激酶 1)。RPK1 的功能丧失突变体在年龄依赖性衰老中明显延迟。此外,rpk1 突变体对 ABA 诱导的衰老表现出降低的敏感性,但对茉莉酸或乙烯诱导的衰老几乎没有变化。因此,RPK1 介导 ABA 诱导的叶片衰老以及年龄诱导的叶片衰老。在成熟阶段条件性过表达 RPK1 明显加速衰老和细胞死亡,而在早期发育阶段诱导 RPK1 会延迟生长而不引发衰老症状。因此,RPK1 在不同的发育阶段发挥不同的作用。一致地,外源施加的 ABA 影响老叶的叶片衰老,但不影响幼叶。这些结果表明,膜结合的 RPK1 在 ABA 依赖性叶片衰老中起作用。此外,ABA 和 ABA 诱导的 RPK1 对叶片衰老的影响取决于植物的年龄,这部分解释了 ABA 作用功能多样化的机制。

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