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TEMPRANILLO1 和 2 这两种花色抑制剂通过调节激素成分和拟南芥的光保护来调节盐耐受性。

The floral repressors TEMPRANILLO1 and 2 modulate salt tolerance by regulating hormonal components and photo-protection in Arabidopsis.

机构信息

Centre for Research in Agricultural Genomics (CRAG), CSIC-IRTA-UAB-UB, Campus UAB, Barcelona, 08193, Spain.

Institució Catalana de Recerca i Estudis Avançats (ICREA), Barcelona, 08010, Spain.

出版信息

Plant J. 2021 Jan;105(1):7-21. doi: 10.1111/tpj.15048. Epub 2020 Nov 23.

Abstract

Members of the plant specific RAV family of transcription factors regulate several developmental and physiological processes. In the model plant Arabidopsis thaliana, the RAV TEMPRANILLO 1 (TEM1) and TEM2 control important phase changes such as the juvenile to adult and the vegetative to reproductive transitions. Besides their known regulatory function in plant development, a transcriptomics analysis of transgenic plants overexpressing TEM1 also revealed overrepresentation of Gene Ontology (GO) categories related to abiotic stress responses. Therefore, to investigate the biological relevance of these TEM-dependent transcriptomic changes and elucidate whether TEMs contribute to the modulation of plant growth in response to salinity, we analyzed the behavior of TEM gain and loss of function mutants subjected to mild and high salt stresses at different development stages. With respect to increasing salinity, TEM overexpressing plants were hypersensitive whereas the tem1 tem2 double mutants were more tolerant. Precisely, tem1 tem2 mutants germinated and flowered faster than the wild-type plants under salt stress conditions. Also, tem1 tem2 plants showed a delay in salt-induced leaf senescence, possibly as a consequence of downregulation of jasmonic acid biosynthesis genes. Besides a shorter life cycle and delayed senescence, tem1 tem2 mutants appeared to be better suited to withstand oxidative stress as they accumulated higher levels of α-tocopherol (an important antioxidant metabolite) and displayed a slower degradation of photosynthetic pigments. Taken together, our studies suggest novel and crucial roles for TEM in adaptive growth as they modulate plant development in response to environmental changes such as increasing soil salinity.

摘要

植物特异性 RAV 家族转录因子成员调节几种发育和生理过程。在模式植物拟南芥中,RAV TEMPRANILLO 1(TEM1)和 TEM2 控制重要的阶段变化,如幼年期到成年期和营养期到生殖期的转变。除了它们在植物发育中的已知调节功能外,对过表达 TEM1 的转基因植物的转录组分析还揭示了与非生物胁迫反应相关的基因本体论(GO)类别过度表达。因此,为了研究这些 TEM 依赖的转录组变化的生物学相关性,并阐明 TEM 是否有助于调节植物对盐度的生长反应,我们分析了 TEM 功能获得和功能丧失突变体在不同发育阶段受到轻度和高盐胁迫的行为。关于盐度的增加,过表达 TEM 的植物表现出超敏性,而 tem1 tem2 双突变体则更耐受。确切地说,tem1 tem2 突变体在盐胁迫条件下比野生型植物更快地发芽和开花。此外,tem1 tem2 植物表现出盐诱导的叶片衰老延迟,可能是由于茉莉酸生物合成基因下调所致。除了生命周期缩短和衰老延迟外,tem1 tem2 突变体似乎更能耐受氧化应激,因为它们积累了更高水平的α-生育酚(一种重要的抗氧化代谢物),并且显示出光合作用色素降解速度较慢。总之,我们的研究表明 TEM 在适应生长中具有新的和关键作用,因为它们调节植物发育以响应环境变化,例如土壤盐度增加。

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