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拟南芥中主要乳蛋白样蛋白 329 通过 DNA 结合锌指蛋白 6 调节初级休眠

Regulation of primary seed dormancy by MAJOR LATEX PROTEIN-LIKE PROTEIN329 in Arabidopsis is dependent on DNA-BINDING ONE ZINC FINGER6.

机构信息

Department of Biological Sciences, Faculty of Science, National University of Singapore, Singapore 117558, Singapore.

出版信息

J Exp Bot. 2022 Nov 2;73(19):6838-6852. doi: 10.1093/jxb/erac337.

DOI:10.1093/jxb/erac337
PMID:35969447
Abstract

Seeds exhibit primary dormancy to prevent germination under unfavourable conditions. Previous studies have shown that the gibberellin signalling intermediate RGA-LIKE2 (RGL2) forms a transcription factor complex with DNA-BINDING ONE ZINC FINGER6 (DOF6) in regulating seed dormancy in Arabidopsis. Using an RNA-sequencing approach, we identified MAJOR LATEX PROTEIN-LIKE PROTEIN329 (MLP329) as a downstream target of DOF6. MLP329 was found to be a positive regulator of primary seed dormancy, because freshly harvested unstratified mlp329 mutant seeds showed early germination, while unstratified transgenic seeds overexpressing MLP329 showed poor germination. MLP329 expression level was reduced in wild-type seeds upon dry storage and cold stratification. MLP329 expression level was enhanced by DOF6; however, DOF6-dependent MLP329 expression was suppressed in the presence of RGL2. MLP329 expression was enhanced in seeds treated with ABA and auxin IAA. Moreover, the mlp329 mutant seeds exhibited enhanced expression of the GA biosynthetic gene GA1 and suppression of the ABA biosynthetic gene ZEP compared to the overexpression lines. The observed suppression of DOF6-dependent MLP329 expression by RGL2 reveals a possible negative feedback mechanism to modulate seed dormancy. MLP329 also probably enhances the endogenous ABA/GA ratio to positively regulate primary seed dormancy.

摘要

种子表现出初级休眠以防止在不利条件下发芽。先前的研究表明,赤霉素信号中间体 RGA-LIKE2(RGL2)与 DNA 结合锌指蛋白 6(DOF6)形成转录因子复合物,调节拟南芥种子休眠。使用 RNA 测序方法,我们鉴定出 MAJOR LATEX PROTEIN-LIKE PROTEIN329(MLP329)作为 DOF6 的下游靶标。MLP329 被发现是初级种子休眠的正调节剂,因为刚收获的未分层 mlp329 突变体种子表现出早期发芽,而过表达 MLP329 的未分层转基因种子发芽不良。野生型种子在干燥储存和冷层积过程中 MLP329 的表达水平降低。MLP329 的表达水平被 DOF6 增强;然而,在存在 RGL2 的情况下,依赖 DOF6 的 MLP329 表达受到抑制。ABA 和生长素 IAA 处理的种子中 MLP329 的表达增强。此外,与过表达系相比,mlp329 突变体种子中 GA 生物合成基因 GA1 的表达增强,ABA 生物合成基因 ZEP 的表达受到抑制。RGL2 对 DOF6 依赖性 MLP329 表达的观察抑制揭示了一种可能的负反馈机制来调节种子休眠。MLP329 还可能通过增强内源 ABA/GA 比值来正向调节初级种子休眠。

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