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EMB-7L 在玉米胚胎发生和植物发育中是必需的,涉及多个叶绿体基因的 RNA 剪接。

EMB-7L is required for embryogenesis and plant development in maize involved in RNA splicing of multiple chloroplast genes.

机构信息

National Key Laboratory of Plant Molecular Genetics, CAS Center for Excellence in Molecular Plant Sciences, Institute of Plant Physiology & Ecology, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, Shanghai 200032, China; University of the Chinese Academy of Sciences, Beijing 100049, China.

National Key Laboratory of Plant Molecular Genetics, CAS Center for Excellence in Molecular Plant Sciences, Institute of Plant Physiology & Ecology, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, Shanghai 200032, China.

出版信息

Plant Sci. 2019 Oct;287:110203. doi: 10.1016/j.plantsci.2019.110203. Epub 2019 Jul 26.

Abstract

Embryo and endosperm originate from the double fertilization, but they have different developmental fates and biological functions. We identified a previously undescribed maize seed mutant, wherein the embryo appears to be more severely affected than the endosperm (embryo-specific, emb). In the W22 background, the emb embryo arrests at the transition stage whereas its endosperm appears nearly normal in size. At maturity, the embryo in W22-emb is apparently small or even invisible. In contrast, the emb endosperm develops into a relative normal size. We cloned the mutant gene on the Chromosome 7L and designated it emb-7L. This gene is generally expressed, but it has a relatively higher expression level in leaves. Emb-7L encodes a chloroplast-localized P-type pentatricopeptide repeat (PPR) protein, consistent with the severe chloroplast deficiency in emb-7L albino seedling leaves. Full transcriptome analysis of the leaves of WT and emb-7L seedlings reveals that transcription of chloroplast protein-encoding genes are dramatically variable with pre-mRNA intron splicing apparently affected in a tissue-dependent pattern and the chloroplast structure and activity were dramatically affected including chloroplast membrane and photosynthesis machinery component and synthesis of metabolic products (e.g., fatty acids, amino acids, starch).

摘要

胚胎和胚乳来源于双受精,但它们具有不同的发育命运和生物学功能。我们鉴定了一个以前未描述的玉米种子突变体,其中胚胎的影响似乎比胚乳更严重(胚胎特异性,emb)。在 W22 背景下,emb 胚胎在过渡阶段停止发育,而其胚乳大小几乎正常。成熟时,W22-emb 的胚胎明显较小甚至不可见。相比之下,emb 胚乳发育成相对正常的大小。我们在 7L 染色体上克隆了突变基因,并将其命名为 emb-7L。该基因通常表达,但在叶片中表达水平相对较高。Emb-7L 编码一种定位于叶绿体的 P 型五肽重复(PPR)蛋白,与 emb-7L 白化苗叶片中严重的叶绿体缺陷一致。WT 和 emb-7L 幼苗叶片的全转录组分析表明,叶绿体蛋白编码基因的转录具有明显的变异性,前体 mRNA 内含子剪接明显受到组织依赖性模式的影响,叶绿体结构和功能受到显著影响,包括叶绿体膜和光合作用机械成分以及代谢产物(如脂肪酸、氨基酸、淀粉)的合成。

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