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BZR1 和 BES1 通过油菜素内酯参与调控拟南芥中的硫代葡萄糖苷生物合成。

BZR1 and BES1 participate in regulation of glucosinolate biosynthesis by brassinosteroids in Arabidopsis.

机构信息

Key Laboratory of Horticultural Plant Growth, Development and Quality improvement, Ministry of Agriculture, Department of Horticulture, Zhejiang University, Hangzhou 310058, PR China.

出版信息

J Exp Bot. 2013 May;64(8):2401-12. doi: 10.1093/jxb/ert094. Epub 2013 Apr 11.

Abstract

The effect of 24-epibrassinolide (EBR) on glucosinolate biosynthesis in Arabidopsis thaliana was investigated in the present study by using mutants and transgenic plants involved in brassinosteroid (BR) biosynthesis and signal transduction, as well as glucosinolate biosynthesis. The results showed that EBR significantly decreased the contents of major aliphatic glucosinolates including glucoiberin (S3), glucoraphanin (S4), and glucoerucin (T4), as well as the indolic glucosinolates glucobrassicin (IM) and neoglucobrassicin (1IM). In addition, a significantly higher level of glucosinolates accumulated in the BR-deficient mutant cpd and a dramatically lower glucosinolate content in the transgenic plant DWF4-ox overexpressing the BR biosynthetic gene DWF4 compared with their related wild-types, confirmed the repressing effect of BR on glucosinolate biosynthesis. BRI1, the receptor of BR signal transduction, was involved in regulation of glucosinolate biosynthesis by BR. Furthermore, the observation of reduced content of glucosinolates and lower expression levels of glucosinolate biosynthetic genes in 35S-BZR1/bzr1-1D and bes1-D plants compared with the corresponding wild-types suggested that BZR1 and BES1, two important components in BR signal transduction, are responsible for the inhibiting role of BR in glucosinolate biosynthesis. The disappearance of the repressing effect of BR on glucosinolate content in the myb28, myb34, and myb122 mutants indicated that these three MYB factors are important for the regulation of BR in glucosinolate biosynthesis.

摘要

本研究利用参与油菜素内酯(BR)生物合成和信号转导以及芥子油苷生物合成的突变体和转基因植物,研究了 24-表油菜素内酯(EBR)对拟南芥芥子油苷生物合成的影响。结果表明,EBR 显著降低了主要的脂肪族芥子油苷,包括葡萄糖苷(S3)、葡萄糖硫苷(S4)和葡萄糖异硫氰酸酯(T4),以及吲哚芥子油苷葡萄糖硫苷(IM)和新葡萄糖硫苷(1IM)的含量。此外,BR 缺陷突变体 cpd 中积累的芥子油苷水平明显较高,而 BR 生物合成基因 DWF4 过表达的转基因植物 DWF4-ox 中芥子油苷含量明显较低,这证实了 BR 对芥子油苷生物合成的抑制作用。BR 信号转导受体 BRI1 参与了 BR 对芥子油苷生物合成的调节。此外,与相应的野生型相比,35S-BZR1/bzr1-1D 和 bes1-D 植物中芥子油苷含量降低和芥子油苷生物合成基因表达水平降低,表明 BR 信号转导中的两个重要成分 BZR1 和 BES1 负责 BR 对芥子油苷生物合成的抑制作用。在 myb28、myb34 和 myb122 突变体中,BR 对芥子油苷含量的抑制作用消失,表明这三个 MYB 因子对 BR 调节芥子油苷生物合成非常重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5bdb/3654425/473c72a68ef8/exbotj_ert094_f0001.jpg

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