Suppr超能文献

玉米需要胚胎缺陷 27 蛋白来进行胚胎发生和幼苗发育。

Maize requires Embryo defective27 for embryogenesis and seedling development.

机构信息

Key Lab of Plant Development and Environment Adaptation Biology, Ministry of Education, School of Life Sciences, Shandong University, Qingdao 266237, China.

出版信息

Plant Physiol. 2024 Apr 30;195(1):430-445. doi: 10.1093/plphys/kiae010.

Abstract

The essential role of plastid translation in embryogenesis has been established in many plants, but a retrograde signal triggered by defective plastid translation machinery that may leads to embryogenesis arrest remains unknown. In this study, we characterized an embryo defective27 (emb27) mutant in maize (Zea mays), and cloning indicates that Emb27 encodes the plastid ribosomal protein S13. The null mutant emb27-1 conditions an emb phenotype with arrested embryogenesis; however, the leaky mutant emb27-2 exhibits normal embryogenesis but an albino seedling-lethal phenotype. The emb27-1/emb27-2 trans-heterozygotes display varying phenotypes from emb to normal seeds but albino seedlings. Analysis of the Emb27 transcription levels in these mutants revealed that the Emb27 expression level in the embryo corresponds with the phenotypic expression of the emb27 mutants. In the W22 genetic background, an Emb27 transcription level higher than 6% of the wild-type level renders normal embryogenesis, whereas lower than that arrests embryogenesis. Mutation of Emb27 reduces the level of plastid 16S rRNA and the accumulation of the plastid-encoded proteins. As a secondary effect, splicing of several plastid introns was impaired in emb27-1 and 2 other plastid translation-defective mutants, emb15 and emb16, suggesting that plastome-encoded factors are required for the splicing of these introns, such as Maturase K (MatK). Our results indicate that EMB27 is essential for plastid protein translation, embryogenesis, and seedling development in maize and reveal an expression threshold of Emb27 for maize embryogenesis.

摘要

质体翻译在胚胎发生中的重要作用已在许多植物中得到确立,但由质体翻译机制缺陷引发的逆行信号可能导致胚胎发生停滞,这一信号仍不清楚。在本研究中,我们对玉米(Zea mays)中的一个胚胎缺陷 27(emb27)突变体进行了表征,克隆表明 Emb27 编码质体核糖体蛋白 S13。emb27-1 纯合突变体导致胚胎发生停滞的 emb 表型;然而,emb27-2 渗漏突变体表现出正常的胚胎发生,但出现白化苗致死表型。emb27-1/emb27-2 反式杂合体表现出从 emb 到正常种子的不同表型,但出现白化苗。对这些突变体中的 Emb27 转录水平的分析表明,胚胎中的 Emb27 表达水平与 emb27 突变体的表型表达相对应。在 W22 遗传背景下,Emb27 转录水平高于野生型的 6%可导致正常胚胎发生,而低于该水平则导致胚胎发生停滞。Emb27 的突变降低了质体 16S rRNA 的水平和质体编码蛋白的积累。作为次要影响,emb27-1 和其他 2 个质体翻译缺陷突变体 emb15 和 emb16 中的几个质体内含子的剪接受到损害,这表明质体编码因子是这些内含子剪接所必需的,如 maturase K(MatK)。我们的结果表明,EMB27 对玉米质体蛋白翻译、胚胎发生和幼苗发育是必不可少的,并揭示了玉米胚胎发生中 Emb27 的表达阈值。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验