光敏色素B信号调节盐介导的幼苗在黑暗中的生长。

IF 4 2区 生物学 Q2 CELL BIOLOGY
Peipei Qi, Weiping Mo, Rongcheng Lin
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引用次数: 0

摘要

光是一个重要的环境因素,它能促进种子萌发后的幼苗向上生长,而这部分是由光感受器介导的。盐胁迫影响植物生长发育,降低产量。然而,光感受器和光信号因子对盐胁迫的参与和调控作用尚不清楚。在这里,我们报道了光敏色素B (phyB)光感受器突变体在黑暗中对盐抑制的下胚轴伸长的敏感性降低,并且光敏色素相互作用因子3 (PIF3)在拟南芥中调控phyB的下游过程。我们发现SALT过敏感2 (SOS2)调控黑暗环境下盐胁迫下phyB蛋白的积累。令人惊讶的是,盐处理诱导phyB核体在黑暗中形成。此外,我们发现phyB的Ser-86残基磷酸化对其功能至关重要,支架蛋白14-3-3κ参与盐胁迫下黑暗环境下phyB的调控。我们的研究揭示了phyB-PIF3模块在黑暗条件下对盐胁迫的萌发后生长的调节作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The phytochrome B signaling regulates salt-mediated seedling growth in the dark.

Light is an essential environmental factor that facilitates the robust upward growth of post-germinative seedlings emerging from buried seeds that is partly mediated by the photoreceptors. Salinity stress hampers plant growth and development and reduces yield. However, the involvement and regulatory role of photoreceptors and light signaling factors to salt stress are largely unknown. Here, we report that mutants of the phytochrome B (phyB) photoreceptor showed reduced sensitivity to salt-inhibited hypocotyl elongation in darkness, and that PHYTOCHROME-INTERACTING FACTOR 3 (PIF3) acts downstream of phyB in regulating this process in Arabidopsis thaliana. We also show that SALT OVERLY SENSITIVE 2 (SOS2) regulates phyB protein accumulation under salt stress in darkness. Surprisingly, salt treatment induces phyB nuclear body formation in darkness. Moreover, we found that the phosphorylation at residue Ser-86 of phyB is essential for its function, and the scaffold protein 14-3-3κ is involved in the regulation of phyB under salt stress in darkness. Taken together, our study reveals a regulatory role of the phyB-PIF3 module in mediating post-germination growth in darkness in response to salt stress.

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来源期刊
Plant and Cell Physiology
Plant and Cell Physiology 生物-细胞生物学
CiteScore
8.40
自引率
4.10%
发文量
166
审稿时长
1.7 months
期刊介绍: Plant & Cell Physiology (PCP) was established in 1959 and is the official journal of the Japanese Society of Plant Physiologists (JSPP). The title reflects the journal''s original interest and scope to encompass research not just at the whole-organism level but also at the cellular and subcellular levels. Amongst the broad range of topics covered by this international journal, readers will find the very best original research on plant physiology, biochemistry, cell biology, molecular genetics, epigenetics, biotechnology, bioinformatics and –omics; as well as how plants respond to and interact with their environment (abiotic and biotic factors), and the biology of photosynthetic microorganisms.
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