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水稻 OsDOF15 有助于盐胁迫下乙烯抑制的主根伸长。

Rice OsDOF15 contributes to ethylene-inhibited primary root elongation under salt stress.

机构信息

Biotechnology Research Institute, Chinese Academy of Agricultural Sciences, Beijing, 100081, China.

National Key Facility of Crop Gene Resources and Genetic Improvement, Beijing, 100081, China.

出版信息

New Phytol. 2019 Jul;223(2):798-813. doi: 10.1111/nph.15824. Epub 2019 May 3.

Abstract

In early seedlings, the primary root adapts rapidly to environmental changes through the modulation of endogenous hormone levels. The phytohormone ethylene inhibits primary root elongation, but the underlying molecular mechanism of how ethylene-reduced root growth is modulated in environmental changes remains poorly understood. Here, we show that a novel rice (Oryza sativa) DOF transcription factor OsDOF15 positively regulates primary root elongation by regulating cell proliferation in the root meristem, via restricting ethylene biosynthesis. Loss-of-function of OsDOF15 impaired primary root elongation and cell proliferation in the root meristem, whereas OsDOF15 overexpression enhanced these processes, indicating that OsDOF15 is a key regulator of primary root elongation. This regulation involves the direct interaction of OsDOF15 with the promoter of OsACS1, resulting in the repression of ethylene biosynthesis. The control of ethylene biosynthesis by OsDOF15 in turn regulates cell proliferation in the root meristem. OsDOF15 transcription is repressed by salt stress, and OsDOF15-mediated ethylene biosynthesis plays a role in inhibition of primary root elongation by salt stress. Thus, our data reveal how the ethylene-inhibited primary root elongation is finely controlled by OsDOF15 in response to environmental signal, a novel mechanism of plants responding to salt stress and transmitting the information to ethylene biosynthesis to restrict root elongation.

摘要

在早期幼苗中,主根通过调节内源激素水平快速适应环境变化。植物激素乙烯抑制主根伸长,但对于乙烯如何降低根生长在环境变化中的分子机制仍知之甚少。在这里,我们表明,一种新的水稻(Oryza sativa)DOF 转录因子 OsDOF15 通过限制乙烯生物合成,正调控根分生组织中的细胞增殖,从而正向调控主根伸长。OsDOF15 的功能丧失会损害主根伸长和根分生组织中的细胞增殖,而 OsDOF15 的过表达则增强了这些过程,表明 OsDOF15 是主根伸长的关键调控因子。这种调控涉及 OsDOF15 与 OsACS1 启动子的直接相互作用,从而抑制乙烯的生物合成。OsDOF15 对乙烯生物合成的控制反过来又调节根分生组织中的细胞增殖。OsDOF15 转录受盐胁迫抑制,而 OsDOF15 介导的乙烯生物合成在盐胁迫抑制主根伸长中起作用。因此,我们的数据揭示了 OsDOF15 如何响应环境信号精细调控受乙烯抑制的主根伸长,这是植物响应盐胁迫并将信息传递到乙烯生物合成以限制根伸长的新机制。

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