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成熟诱导的 SlGH3-2 基因通过调节番茄(Solanum lycopersicum L.)中的生长素-乙烯水平来调控果实成熟。

A ripening-induced SlGH3-2 gene regulates fruit ripening via adjusting auxin-ethylene levels in tomato (Solanum lycopersicum L.).

机构信息

Plant Translational Research Laboratory, Department of Plant Sciences, School of Life Sciences, University of Hyderabad, Hyderabad, 500046, India.

出版信息

Plant Mol Biol. 2018 Nov;98(4-5):455-469. doi: 10.1007/s11103-018-0790-1. Epub 2018 Oct 26.

Abstract

Silencing of SlGH3-2 in tomato alters auxin and ethylene levels during fruit ripening and cause reduced lycopene accumulation in the transgenic fruits. While auxin's role during fleshy fruit ripening is widely acknowledged to be important, the physiological functions of several ripening-induced genes, especially those involved in the maintenance of cellular auxin homeostasis, largely remain under-explored. In the present study, the updated inventory shows that 24 members constitute the Gretchen-Hagen 3 (GH3) gene family in tomato. Their characterization using an expression profiling approach revealed that SlGH3-2, a member of the group II IAA-amido synthetase, is strongly induced at the commencement of fruit ripening. Phylogenetic analysis and homology modeling revealed that SlGH3-2 is the closest homolog of pepper CcGH3 and grapevine VvGH3-1. Expression profiling revealed that the mRNA level of SlGH3-2 is inhibited in ripening mutants such as ripening-inhibitor (rin) and Never-ripe (Nr). Whereas both auxin and ethylene were found to act as positive regulators of its transcript accumulation. The fruits of 35S::SlGH3-2 RNAi lines exhibited prolonged shelf-life. Both ethylene production and lycopene accumulation were affected in the fruits of SlGH3-2 silenced lines. These observations were corroborated by the altered expression of key ethylene and carotenoid biosynthesis genes such as ACS2 and PSY1, respectively, in the RNAi lines. Additionally, the SlGH3-2 silenced line fruits had higher IAA and IBA levels at the ripening stages, and showed increased transcript accumulation of several known auxin-induced SlIAA and SlGH3 genes. Altogether, the present study suggests that SlGH3-2 influences fruit ripening in tomato via modulating ethylene and auxin crosstalk, especially during the early phase.

摘要

番茄 SlGH3-2 的沉默改变了果实成熟过程中的生长素和乙烯水平,并导致转基因果实中番茄红素积累减少。虽然生长素在肉质果实成熟过程中的作用已被广泛认可,但几个成熟诱导基因的生理功能,尤其是那些参与维持细胞内生长素稳态的基因,在很大程度上仍未得到充分探索。在本研究中,更新的目录显示,番茄中共有 24 个成员构成 Gretchen-Hagen 3(GH3)基因家族。通过表达谱分析对其进行表征,结果表明 SlGH3-2 是 II 组生长素-酰胺合成酶的一个成员,在果实成熟开始时强烈诱导。系统发育分析和同源建模表明 SlGH3-2 是辣椒 CcGH3 和葡萄 VvGH3-1 的最接近的同源物。表达谱分析显示,在 ripening-inhibitor(rin)和 Never-ripe(Nr)等成熟突变体中 SlGH3-2 的 mRNA 水平受到抑制。而生长素和乙烯都被发现是其转录积累的正调节剂。35S::SlGH3-2 RNAi 系的果实货架期延长。SlGH3-2 沉默系果实的乙烯生成和番茄红素积累均受到影响。在 RNAi 系中,ACS2 和 PSY1 等关键乙烯和类胡萝卜素生物合成基因的表达改变也证实了这一点。此外,SlGH3-2 沉默系果实的 IAA 和 IBA 水平在成熟阶段较高,并表现出几个已知的生长素诱导的 SlIAA 和 SlGH3 基因的转录积累增加。总的来说,本研究表明,SlGH3-2 通过调节乙烯和生长素的相互作用影响番茄果实的成熟,特别是在早期阶段。

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