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番茄转录阻遏子 MYB70 直接调控乙烯依赖的果实成熟。

Tomato transcriptional repressor MYB70 directly regulates ethylene-dependent fruit ripening.

机构信息

Key Laboratory of Plant Hormones and Development Regulation of Chongqing, School of Life Sciences, Chongqing University, Chongqing, 401331, China.

Center of Plant Functional Genomics, Institute of Advanced Interdisciplinary Studies, Chongqing University, Chongqing, 401331, China.

出版信息

Plant J. 2020 Dec;104(6):1568-1581. doi: 10.1111/tpj.15021. Epub 2020 Nov 18.

Abstract

Ethylene is a key plant hormone controlling the ripening of climacteric fruits, and several transcription factors acting as important regulators of fruit ripening have been identified in tomato (Solanum lycopersicum), a model for climacteric fruits. The vast majority of these transcription factors are transcriptional activators, however, and the associated transcriptional regulatory mechanisms of most regulators are unclear. Here, we report on a tomato transcriptional repressor (termed SlMYB70) that negatively regulates fruit ripening by directly modulating ethylene biosynthesis. As an EAR motif-containing MYB transcription factor-encoding gene, SlMYB70 displayed a ripening-associated expression pattern and was responsive to ethylene. RNA interference (RNAi)-mediated repression of SlMYB70 accelerated fruit ripening, but overexpression of SlMYB70 delayed fruit ripening. Ethylene production was noticeably increased and decreased in SlMYB70-RNAi and SlMYB70-overexpressing lines, respectively, compared with wild-type tomatoes. SlMYB70 was proven to be a transcriptional repressor, dependent on the EAR repression motif, and to repress the transcription of two ethylene biosynthesis genes in fruit ripening, namely SlACS2 and SlACO3. The promoters of SlACS2 and SlACO3 are directly bound by SlMYB70, which was verified using a combination of yeast one-hybrid chromatin immunoprecipitation quantitative polymerase chain reaction and electrophoretic mobility shift assays. These results suggest that SlMYB70 negatively regulates fruit ripening via the direct transcriptional repression of ethylene biosynthesis genes, which provides insights into the ethylene-mediated key regulatory hierarchy in climacteric fruit ripening, and also highlights different types of transcriptional regulation of fruit ripening.

摘要

乙烯是一种控制跃变型果实成熟的关键植物激素,番茄(Solanum lycopersicum)作为跃变型果实的模式植物,已经鉴定出几种作为果实成熟重要调控因子的转录因子。然而,这些转录因子绝大多数都是转录激活子,并且大多数调控因子的相关转录调控机制尚不清楚。在这里,我们报道了一个番茄转录抑制子(称为 SlMYB70),它通过直接调节乙烯生物合成来负调控果实成熟。作为一个含有 EAR 基序的 MYB 转录因子编码基因,SlMYB70 的表达模式与成熟相关,并对乙烯有反应。RNA 干扰(RNAi)介导的 SlMYB70 抑制加速了果实成熟,但 SlMYB70 的过表达则延迟了果实成熟。与野生型番茄相比,SlMYB70-RNAi 和 SlMYB70 过表达系的乙烯产量明显增加和减少。证明 SlMYB70 是一个依赖于 EAR 抑制基序的转录抑制子,它在果实成熟过程中抑制两个乙烯生物合成基因 SlACS2 和 SlACO3 的转录。SlACS2 和 SlACO3 的启动子直接被 SlMYB70 结合,这通过酵母单杂交染色质免疫沉淀定量聚合酶链反应和电泳迁移率变动分析得到了验证。这些结果表明,SlMYB70 通过直接转录抑制乙烯生物合成基因来负调控果实成熟,这为乙烯介导的跃变型果实成熟的关键调控层次提供了新的见解,并突出了果实成熟过程中不同类型的转录调控。

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