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过表达 提高了番茄的耐旱性和耐盐性,并影响了果实开裂。

Overexpression of Increases Drought and Salt Tolerance and Affects Fruit Dehiscence in Tomatoes.

机构信息

Laboratory of Molecular Biology of Tomato, Bioengineering College, Chongqing University, Chongqing 400030, China.

出版信息

Int J Mol Sci. 2024 Aug 30;25(17):9433. doi: 10.3390/ijms25179433.

Abstract

The bHLH transcription factors are important plant regulators against abiotic stress and involved in plant growth and development. In this study, , a gene coding for a prototypical DNA-binding protein in the bHLH family, was isolated, and -overexpression tomato (-OE) plants were generated by Agrobacterium-mediated genetic transformation. transgenic lines manifested higher osmotic stress tolerance than the wild-type plants, estimated by higher relative water content and lower water loss rate, higher chlorophyll, reducing sugar, starch, proline, soluble protein contents, antioxidant enzyme activities, and lower MDA and reactive oxygen species contents in the leaves. In -OE lines, there were more significant alterations in the expression of genes associated with stress. Furthermore, -OE fruits were more vulnerable to dehiscence, with higher water content, reduced lignin content, SOD/POD/PAL enzyme activity, and lower phenolic compound concentrations, all of which corresponded to decreased expression of lignin biosynthetic genes. Moreover, the dual luciferase reporter test revealed that SlTAGL1 inhibits expression. This study revealed that may play a role in controlling plant tolerance to drought and salt stress, as well as fruit lignification, which influences fruit dehiscence. The findings of this study have established a foundation for tomato tolerance breeding and fruit quality improvement.

摘要

bHLH 转录因子是重要的植物抗逆调节剂,参与植物生长发育。本研究中,从番茄中克隆到一个编码 bHLH 家族典型 DNA 结合蛋白的基因,并通过农杆菌介导的遗传转化获得了过表达番茄(-OE)植株。与野生型植株相比,转基因系表现出更高的渗透胁迫耐受性,表现在相对较高的水含量和较低的水分损失率、较高的叶绿素、还原糖、淀粉、脯氨酸、可溶性蛋白含量、抗氧化酶活性,以及较低的叶片 MDA 和活性氧含量。在 -OE 系中,与胁迫相关的基因表达有更显著的改变。此外,-OE 果实更容易开裂,具有更高的含水量、更低的木质素含量、SOD/POD/PAL 酶活性和更低的酚类化合物浓度,所有这些都对应于木质素生物合成基因表达的降低。此外,双荧光素酶报告基因检测表明 SlTAGL1 抑制 的表达。本研究表明, 可能在控制植物对干旱和盐胁迫的耐受性以及果实木质化方面发挥作用,而木质化会影响果实开裂。本研究为番茄耐逆性育种和果实品质改良奠定了基础。

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