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整合表型分析揭示phyB-PIF4 途径在拟南芥生殖器官中对高温环境的相关性。

Integrative phenotyping analyses reveal the relevance of the phyB-PIF4 pathway in Arabidopsis thaliana reproductive organs at high ambient temperature.

机构信息

Hormonal Crosstalk in Plant Development, Mendel Center for Plant Genomics and Proteomics, CEITEC MU-Central European Institute of Technology, Masaryk University, Brno, 625 00, Czech Republic.

Laboratory of Functional Genomics and Proteomics, National Centre for Biomolecular Research, Faculty of Science, Masaryk University, Brno, 625 00, Czech Republic.

出版信息

BMC Plant Biol. 2024 Jul 29;24(1):721. doi: 10.1186/s12870-024-05394-w.

Abstract

BACKGROUND

The increasing ambient temperature significantly impacts plant growth, development, and reproduction. Uncovering the temperature-regulating mechanisms in plants is of high importance, for increasing our fundamental understanding of plant thermomorphogenesis, for its potential in applied science, and for aiding plant breeders in improving plant thermoresilience. Thermomorphogenesis, the developmental response to warm temperatures, has been primarily studied in seedlings and in the regulation of flowering time. PHYTOCHROME B and PHYTOCHROME-INTERACTING FACTORs (PIFs), particularly PIF4, are key components of this response. However, the thermoresponse of other adult vegetative tissues and reproductive structures has not been systematically evaluated, especially concerning the involvement of phyB and PIFs.

RESULTS

We screened the temperature responses of the wild type and several phyB-PIF4 pathway Arabidopsis mutant lines in combined and integrative phenotyping platforms for root growth in soil, shoot, inflorescence, and seed. Our findings demonstrate that phyB-PIF4 is generally involved in the relay of temperature signals throughout plant development, including the reproductive stage. Furthermore, we identified correlative responses to high ambient temperature between shoot and root tissues. This integrative and automated phenotyping was complemented by monitoring the changes in transcript levels in reproductive organs. Transcriptomic profiling of the pistils from plants grown under high ambient temperature identified key elements that may provide insight into the molecular mechanisms behind temperature-induced reduced fertilization rate. These include a downregulation of auxin metabolism, upregulation of genes involved auxin signalling, miRNA156 and miRNA160 pathways, and pollen tube attractants.

CONCLUSIONS

Our findings demonstrate that phyB-PIF4 involvement in the interpretation of temperature signals is pervasive throughout plant development, including processes directly linked to reproduction.

摘要

背景

环境温度的升高显著影响植物的生长、发育和繁殖。揭示植物的温度调节机制具有重要意义,这不仅有助于我们深入理解植物热形态发生,还可以将其应用于科学实践,并帮助植物培育者提高植物的耐热性。热形态发生是指植物对温暖温度的发育响应,主要在幼苗中研究,并调节开花时间。光敏色素 B(phytochrome B,phyB)和光敏色素相互作用因子(phytochrome-interacting factors,PIFs),特别是 PIF4,是该反应的关键组成部分。然而,其他成年营养组织和生殖结构的热响应尚未得到系统评估,特别是涉及 phyB 和 PIFs 的情况。

结果

我们在土壤中根生长、地上部、花序和种子的综合表型平台上筛选了野生型和几个 phyB-PIF4 途径拟南芥突变体株系对温度的响应。我们的研究结果表明,phyB-PIF4 通常参与植物发育过程中温度信号的传递,包括生殖阶段。此外,我们还发现了地上部和根部组织对高温环境的相关响应。这种综合和自动化的表型分析通过监测生殖器官转录水平的变化得到了补充。对在高温环境下生长的植物的雌蕊进行转录组分析,确定了可能为温度诱导受精率降低的分子机制提供见解的关键要素。这些要素包括生长素代谢下调、生长素信号转导相关基因上调、miRNA156 和 miRNA160 途径以及花粉管吸引剂上调。

结论

我们的研究结果表明,phyB-PIF4 参与温度信号的解释在植物发育的各个方面都普遍存在,包括与生殖直接相关的过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/004b/11285529/71b3a399e4d3/12870_2024_5394_Fig1_HTML.jpg

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