Suppr超能文献

光敏色素 C 和低温促进光敏色素 D 的蛋白积累和红光信号转导。

Phytochrome C and Low Temperature Promote the Protein Accumulation and Red-Light Signaling of Phytochrome D.

机构信息

Laboratory of Photo and Chronobiology, Institute of Plant Biology, Biological Research Centre, Hungarian Research Network (HUN-REN), Temesvari krt. 62, Szeged H-6726, Hungary.

Doctoral School of Biology, Faculty of Sciences and Informatics, University of Szeged, Középfasor 52, Szeged H-6726, Hungary.

出版信息

Plant Cell Physiol. 2024 Nov 13;65(10):1717-1735. doi: 10.1093/pcp/pcae089.

Abstract

Light affects almost every aspect of plant development. It is perceived by photoreceptors, among which phytochromes (PHY) are responsible for monitoring the red and far-red spectrum. Arabidopsis thaliana possesses five phytochrome genes (phyA-phyE). Whereas functions of phyA and phyB are extensively studied, our knowledge of other phytochromes is still rudimentary. To analyze phyD function, we expressed it at high levels in different phytochrome-deficient genetic backgrounds. Overexpressed phyD-YFP can govern effective light signaling but only at low temperatures and in cooperation with functional phyC. Under these conditions, phyD-YFP accumulates to high levels, and opposite to phyB, this pool is stable in light. By comparing the photoconvertible phyD-YFP and phyB levels and their signaling in continuous and pulsed irradiation, we showed that phyD-YFP is a less efficient photoreceptor than phyB. This conclusion is supported by the facts that only a part of the phyD-YFP pool is photoconvertible and that thermal reversion of phyD-YFP is faster than that of phyB. Our data suggest that the temperature-dependent function of phyD is based on the amount of phyD protein and not on its Pfr stability, as described for phyB. We also found that phyD-YFP and phyB-GFP are associated with strongly overlapping genomic locations and are able to mediate similar changes in gene expression; however, the efficiency of phyD-YFP is lower. Based on these data, we propose that under certain conditions, synergistic interaction of phyD and phyC can substitute phyB function in seedlings and in adult plants and thus increases the ability of plants to respond more flexibly to environmental changes.

摘要

光是影响植物发育的几乎所有方面的重要因素。光被光受体感知,其中包括phytochrome(PHY),它负责监测红光和远红光光谱。拟南芥拥有五个phytochrome 基因(phyA-phyE)。phyA 和 phyB 的功能得到了广泛研究,而对其他phytochrome 的了解仍处于初级阶段。为了分析 phyD 的功能,我们在不同的phytochrome 缺陷遗传背景中高表达它。过量表达的 phyD-YFP 可以控制有效的光信号,但仅在低温下并且与功能正常的 phyC 合作时才可以。在这些条件下,phyD-YFP 大量积累,与 phyB 相反,这个 pool 在光下是稳定的。通过比较可光转化的 phyD-YFP 和 phyB 水平及其在连续和脉冲辐照下的信号,我们表明 phyD-YFP 是一种不如 phyB 有效的光受体。这一结论得到了以下事实的支持:phyD-YFP 池只有一部分可光转化,并且 phyD-YFP 的热回复比 phyB 快。我们的数据表明,phyD 的温度依赖性功能基于 phyD 蛋白的量,而不是其 Pfr 稳定性,如 phyB 所述。我们还发现 phyD-YFP 和 phyB-GFP 与强烈重叠的基因组位置相关,并且能够介导相似的基因表达变化;然而,phyD-YFP 的效率较低。基于这些数据,我们提出在某些条件下,phyD 和 phyC 的协同相互作用可以替代幼苗和成年植物中 phyB 的功能,从而提高植物对环境变化更灵活的响应能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1755/11558544/cced0940909e/pcae089f1.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验