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微阵列和基因分析表明,csa-miR159b在嫁接黄瓜植株中脱落酸介导的耐热性中起关键作用。

Microarray and genetic analysis reveals that csa-miR159b plays a critical role in abscisic acid-mediated heat tolerance in grafted cucumber plants.

作者信息

Li Hao, Wang Yu, Wang Ze, Guo Xie, Wang Feng, Xia Xiao-Jian, Zhou Jie, Shi Kai, Yu Jing-Quan, Zhou Yan-Hong

机构信息

Department of Horticulture, Zijingang Campus, Zhejiang University, 866 Yuhangtang Road, Hangzhou, 310058, China.

College of Horticulture, Northwest A&F University, Yangling, 712100, China.

出版信息

Plant Cell Environ. 2016 Aug;39(8):1790-804. doi: 10.1111/pce.12745. Epub 2016 Jun 13.

Abstract

Root-shoot communication plays a vital role in plant growth, development and adaptation to environmental stimuli. Grafting-induced stress tolerance is associated with the induction of plentiful stress-related genes and proteins; the mechanism involved, however, remains obscure. Here, we show that the enhanced tolerance against heat stress in cucumber plants with luffa as rootstock was accompanied with an increased accumulation of abscisic acid (ABA), down-regulation of a subset of microRNAs (miRNAs) but up-regulation of their target genes and CsHSP70 accumulation in the shoots. Significantly, luffa rootstock and foliar application of ABA both down-regulated csa-miR159b and up-regulated its target mRNAs CsGAMYB1 and CsMYB29-like and CsHSP70 accumulation in cucumber, while ectopic expression of csa-miR159b led to decreased heat tolerance, AtMYB33 transcript and AtHSP70 accumulation in Arabidopsis plants. Taken together, our results suggest that root-originated signals such as ABA could alter miRNAs in the shoots, which have a major role in the post-transcriptional regulation of the stress-responsive genes.

摘要

根茎间的信号交流在植物生长、发育以及对环境刺激的适应过程中起着至关重要的作用。嫁接诱导的胁迫耐受性与大量胁迫相关基因和蛋白质的诱导有关;然而,其中涉及的机制仍不清楚。在此,我们表明,以丝瓜为砧木的黄瓜植株对热胁迫耐受性的增强伴随着脱落酸(ABA)积累的增加、一部分微小RNA(miRNA)的下调但其靶基因的上调以及CsHSP70在茎中的积累。值得注意的是,丝瓜砧木和叶面喷施ABA均下调了csa-miR159b并上调了其靶标mRNA CsGAMYB1、CsMYB29-like以及黄瓜中CsHSP70的积累,而csa-miR159b的异位表达导致拟南芥植株耐热性降低、AtMYB33转录本和AtHSP70积累减少。综上所述,我们的结果表明,诸如ABA等源自根部的信号可以改变茎中的miRNA,而miRNA在胁迫响应基因的转录后调控中起主要作用。

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