Diversification of heat shock transcription factors expanded thermal stress responses during early plant evolution.

IF 12.7 1区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY ACS Central Science Pub Date : 2022-09-27 DOI:10.1093/plcell/koac204
Ting-Ying Wu, Kar Ling Hoh, Kulaporn Boonyaves, Shalini Krishnamoorthi, Daisuke Urano
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Abstract

The copy numbers of many plant transcription factor (TF) genes substantially increased during terrestrialization. This allowed TFs to acquire new specificities and thus create gene regulatory networks (GRNs) with new biological functions to help plants adapt to terrestrial environments. Through characterizing heat shock factor (HSF) genes MpHSFA1 and MpHSFB1 in the liverwort Marchantia polymorpha, we explored how heat-responsive GRNs widened their functions in M. polymorpha and Arabidopsis thaliana. An interspecies comparison of heat-induced transcriptomes and the evolutionary rates of HSFs demonstrated the emergence and subsequent rapid evolution of HSFB prior to terrestrialization. Transcriptome and metabolome analyses of M. polymorpha HSF-null mutants revealed that MpHSFA1 controls canonical heat responses such as thermotolerance and metabolic changes. MpHSFB1 also plays essential roles in heat responses, as well as regulating developmental processes including meristem branching and antheridiophore formation. Analysis of cis-regulatory elements revealed development- and stress-related TFs that function directly or indirectly downstream of HSFB. Male gametophytes of M. polymorpha showed higher levels of thermotolerance than female gametophytes, which could be explained by different expression levels of MpHSFA1U and MpHSFA1V on sex chromosome. We propose that the diversification of HSFs is linked to the expansion of HS responses, which enabled coordinated multicellular reactions in land plants.

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热休克转录因子的多样化扩大了早期植物进化过程中的热胁迫反应。
在陆地化过程中,许多植物转录因子(TF)基因的拷贝数大幅增加。这使得转录因子获得了新的特异性,从而创建了具有新生物学功能的基因调控网络(GRN),帮助植物适应陆地环境。通过研究肝草中热休克因子(HSF)基因 MpHSFA1 和 MpHSFB1 的特性,我们探索了热响应基因调控网络是如何在多肝草和拟南芥中拓宽其功能的。热诱导转录组和 HSFs 进化速率的种间比较表明,HSFB 在陆地化之前就已经出现并随后迅速进化。对M. polymorpha HSF缺失突变体的转录组和代谢组分析表明,MpHSFA1控制着典型的热反应,如热耐受性和代谢变化。MpHSFB1 还在热反应以及分生组织分枝和花药孢子囊形成等发育过程中发挥重要作用。对顺式调节元件的分析揭示了与发育和胁迫相关的 TFs,这些 TFs 直接或间接地在 HSFB 的下游发挥作用。M. polymorpha的雄配子体比雌配子体表现出更高的耐热性,这可能与性染色体上MpHSFA1U和MpHSFA1V的不同表达水平有关。我们认为,HSFs的多样化与HS反应的扩展有关,HS反应的扩展使陆生植物的多细胞反应得以协调进行。
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来源期刊
ACS Central Science
ACS Central Science Chemical Engineering-General Chemical Engineering
CiteScore
25.50
自引率
0.50%
发文量
194
审稿时长
10 weeks
期刊介绍: ACS Central Science publishes significant primary reports on research in chemistry and allied fields where chemical approaches are pivotal. As the first fully open-access journal by the American Chemical Society, it covers compelling and important contributions to the broad chemistry and scientific community. "Central science," a term popularized nearly 40 years ago, emphasizes chemistry's central role in connecting physical and life sciences, and fundamental sciences with applied disciplines like medicine and engineering. The journal focuses on exceptional quality articles, addressing advances in fundamental chemistry and interdisciplinary research.
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