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在水稻茎生长过程中赤霉素反应的拮抗调控。

Antagonistic regulation of the gibberellic acid response during stem growth in rice.

机构信息

Bioscience and Biotechnology Center, Nagoya University, Nagoya, Japan.

Graduate School of Bioagricultural Sciences, Nagoya University, Nagoya, Japan.

出版信息

Nature. 2020 Aug;584(7819):109-114. doi: 10.1038/s41586-020-2501-8. Epub 2020 Jul 15.

Abstract

The size of plants is largely determined by growth of the stem. Stem elongation is stimulated by gibberellic acid. Here we show that internode stem elongation in rice is regulated antagonistically by an 'accelerator' and a 'decelerator' in concert with gibberellic acid. Expression of a gene we name ACCELERATOR OF INTERNODE ELONGATION 1 (ACE1), which encodes a protein of unknown function, confers cells of the intercalary meristematic region with the competence for cell division, leading to internode elongation in the presence of gibberellic acid. By contrast, upregulation of DECELERATOR OF INTERNODE ELONGATION 1 (DEC1), which encodes a zinc-finger transcription factor, suppresses internode elongation, whereas downregulation of DEC1 allows internode elongation. We also show that the mechanism of internode elongation that is mediated by ACE1 and DEC1 is conserved in the Gramineae family. Furthermore, an analysis of genetic diversity suggests that mutations in ACE1 and DEC1 have historically contributed to the selection of shorter plants in domesticated populations of rice to increase their resistance to lodging, and of taller plants in wild species of rice for adaptation to growth in deep water. Our identification of these antagonistic regulatory factors enhances our understanding of the gibberellic acid response as an additional mechanism that regulates internode elongation and environmental fitness, beyond biosynthesis and gibberellic acid signal transduction.

摘要

植物的大小在很大程度上取决于茎的生长。赤霉素刺激茎伸长。在这里,我们表明,在水稻中,节间茎的伸长受赤霉素协同作用下的“加速器”和“减速剂”的拮抗调节。我们将一个名为“节间伸长加速子 1(ACE1)”的基因的表达命名为 ACE1,它编码一个未知功能的蛋白质,赋予居间分生组织区域的细胞分裂能力,导致在赤霉素存在下节间伸长。相比之下,DEC1(编码锌指转录因子)的上调抑制节间伸长,而 DEC1 的下调则允许节间伸长。我们还表明,ACE1 和 DEC1 介导的节间伸长机制在禾本科家族中是保守的。此外,遗传多样性分析表明,ACE1 和 DEC1 的突变在过去有助于选择短秆水稻品种以提高其抗倒伏性,以及选择高秆水稻品种以适应深水生长。我们对这些拮抗调节因子的鉴定增强了我们对赤霉素反应的理解,作为一种额外的机制,除了生物合成和赤霉素信号转导之外,它还调节节间伸长和环境适应性。

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