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B-GATA 因子对于抑制衣藻和拟南芥高光胁迫反应是必需的。

B-GATA factors are required to repress high-light stress responses in Marchantia polymorpha and Arabidopsis thaliana.

机构信息

Plant Systems Biology, School of Life Sciences, Technical University of Munich, Freising, Germany.

Department of Botany, Osnabrück University, Osnabrück, Germany.

出版信息

Plant Cell Environ. 2023 Aug;46(8):2376-2390. doi: 10.1111/pce.14629. Epub 2023 May 31.

Abstract

GATAs are evolutionarily conserved zinc-finger transcription factors from eukaryotes. In plants, GATAs can be subdivided into four classes, A-D, based on their DNA-binding domain, and into further subclasses based on additional protein motifs. B-GATAs with a so-called leucine-leucine-methionine (LLM)-domain can already be found in algae. In angiosperms, the B-GATA family is expanded and can be subdivided in to LLM- or HAN-domain B-GATAs. Both, the LLM- and the HAN-domain are conserved domains of unknown biochemical function. Interestingly, the B-GATA family in the liverwort Marchantia polymorpha and the moss Physcomitrium patens is restricted to one and four family members, respectively. And, in contrast to vascular plants, the bryophyte B-GATAs contain a HAN- as well as an LLM-domain. Here, we characterise mutants of the single B-GATA from Marchantia polymorpha. We reveal that this mutant has defects in thallus growth and in gemma formation. Transcriptomic studies uncover that the B-GATA mutant displays a constitutive high-light (HL) stress response, a phenotype that we then also confirm in mutants of Arabidopsis thaliana LLM-domain B-GATAs, suggesting that the B-GATAs have a protective role towards HL stress.

摘要

GATAs 是真核生物中进化保守的锌指转录因子。在植物中,GATAs 可以根据其 DNA 结合域分为 A-D 四个类,并且可以根据其他蛋白质基序进一步分为子类。已经在藻类中发现了具有所谓亮氨酸-亮氨酸-蛋氨酸 (LLM) 结构域的 B-GATAs。在被子植物中,B-GATA 家族得到了扩展,可以进一步分为具有 LLM 或 HAN 结构域的 B-GATAs。这两种结构域,即 LLM 和 HAN 结构域,都是具有未知生化功能的保守结构域。有趣的是,在苔类 Marchantia polymorpha 和藓类 Physcomitrium patens 中,B-GATA 家族分别局限于一个和四个家族成员。与维管植物相比,苔藓植物的 B-GATAs 既含有 HAN 结构域又含有 LLM 结构域。在这里,我们对 Marchantia polymorpha 中的单个 B-GATA 突变体进行了特征描述。我们发现,该突变体在叶状体生长和芽形成方面存在缺陷。转录组学研究揭示,B-GATA 突变体表现出组成性高光 (HL) 胁迫反应,这一表型我们随后也在拟南芥 LLM 结构域 B-GATAs 的突变体中得到了证实,表明 B-GATAs 对 HL 胁迫具有保护作用。

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