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谷胱甘肽S-转移酶GhGSTF1和GhGSTF2参与陆地棉中的花青素积累

Glutathione S-transferases GhGSTF1 and GhGSTF2 involved in the anthocyanin accumulation in Gossypium hirsutum L.

作者信息

Li Shuyan, Zuo Dongyun, Cheng Hailiang, Ali Mushtaque, Wu Chaofeng, Ashraf Javaria, Zhang Youping, Feng Xiaoxu, Lin Zhongxu, Wang Qiaolian, Lv Limin, Song Guoli

机构信息

Research Base, Anyang Institute of Technology, State Key Laboratory of Cotton Biology, Anyang 455000, Henan, China; Institute of Cotton Research of Chinese Academy of Agricultural Science, Anyang 455000, Henan, China; Huazhong Agricultural University, Wuhan 430070, Hubei, China; Anyang Institute of Technology, Anyang 455000, Henan, China.

Institute of Cotton Research of Chinese Academy of Agricultural Science, Anyang 455000, Henan, China.

出版信息

Int J Biol Macromol. 2020 Dec 15;165(Pt B):2565-2575. doi: 10.1016/j.ijbiomac.2020.10.101. Epub 2020 Oct 22.

Abstract

The glutathione S-transferases (GSTs) are important enzymes of secondary metabolism in plants. In this study, two putative GSTs, GhGSTF1 and GhGSTF2, were identified as anthocyanin-related GSTs by the transcriptome data of the leaves of Gossypium hirsutum L. TM-1 and T586. The quantitative real-time PCR showed that GhGSTF1 and GhGSTF2 were highly expressed in red leaves and stems of Gossypium hirsutum L. T586. Orthologous genes of GhGSTF2 in two Gossypium barbadense L. 3-79 and Xinhai21 contain bases deletion in N-terminal (GbGSTF2a) and C-terminal (GbGSTF2b) respectively. Among which, GhGSTF1 and GhGSTF2 can restore pigmentation in hypocotyls of Arabidopsis thaliana mutant tt19-7 while GbGSTF2a and GbGSTF2b cannot. Furthermore, in vitro assays showed the recombinant GhGSTF1 and GhGSTF2 had Glutathione S-transferase activities. Fluorescence quenching assays showed that Cya could obviously quench the fluorescence of GhGSTF1, GhGSTF2, GbGSTF2a and GbGSTF2b to lower levels as compared to C3G. Moreover, the transient dual-luciferase assays showed that the promoters of GhGSTF1 and GhGSTF2 could be activated by GhPAP1D at different levels. GUS staining assays showed that their promoters have different activities to light. This study indicated that GhGSTF1 and GhGSTF2 play important roles in anthocyanin accumulation and the regulatory mechanism of anthocyanin accumulation in allotetraploid Gossypium are complicated.

摘要

谷胱甘肽S-转移酶(GSTs)是植物次生代谢中的重要酶。在本研究中,通过陆地棉TM-1和T586叶片的转录组数据,鉴定出两个假定的GSTs,即GhGSTF1和GhGSTF2,为与花青素相关的GSTs。定量实时PCR表明,GhGSTF1和GhGSTF2在陆地棉T586的红叶和茎中高表达。两个海岛棉3-79和新海21中GhGSTF2的直系同源基因分别在N端(GbGSTF2a)和C端(GbGSTF2b)存在碱基缺失。其中,GhGSTF1和GhGSTF2可以恢复拟南芥突变体tt19-7下胚轴中的色素沉着,而GbGSTF2a和GbGSTF2b则不能。此外,体外实验表明重组GhGSTF1和GhGSTF2具有谷胱甘肽S-转移酶活性。荧光猝灭实验表明,与矢车菊素-3-O-葡萄糖苷(C3G)相比,矢车菊素(Cya)能明显将GhGSTF1、GhGSTF2、GbGSTF2a和GbGSTF2b的荧光猝灭至较低水平。此外,瞬时双荧光素酶实验表明,GhGSTF1和GhGSTF2的启动子可被GhPAP1D不同程度地激活。GUS染色实验表明,它们的启动子对光具有不同的活性。本研究表明,GhGSTF1和GhGSTF2在花青素积累中起重要作用,异源四倍体棉花中花青素积累的调控机制较为复杂。

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