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empty pericarp4 Encodes a Mitochondrion-Targeted Pentatricopeptide Repeat Protein Necessary for Seed Development and Plant Growth in Maize

机译:空的pericarp4编码针对玉米种子发育和植物生长所需的线粒体靶向五碳肽重复蛋白

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摘要

The pentatricopeptide repeat (PPR) family represents one of the largest gene families in plants, with >440 members annotated in Arabidopsis thaliana. PPR proteins are thought to have a major role in the regulation of posttranscriptional processes in organelles. Recent studies have shown that Arabidopsis PPR proteins play an essential, nonredundant role during embryogenesis. Here, we demonstrate that mutations in empty pericarp4 (emp4), a maize (Zea mays) PPR-encoding gene, confer a seed-lethal phenotype. Mutant endosperms are severely impaired, with highly irregular differentiation of transfer cells in the nutrient-importing basal endosperm. Analysis of homozygous mutant plants generated from embryo-rescue experiments indicated that emp4 also affects general plant growth. The emp4-1 mutation was identified in an active Mutator (Mu) population, and cosegregation analysis revealed that it arose from a Mu3 element insertion. Evidence of emp4 molecular cloning was provided by the isolation of four additional emp4 alleles obtained by a reverse genetics approach. emp4 encodes a novel type of PPR protein of 614 amino acids. EMP4 contains nine 35–amino acid PPR motifs and an N-terminal mitochondrion-targeted sequence peptide, which was confirmed by a translational EMP4–green fluorescent protein fusion that localized to mitochondria. Molecular analyses further suggest that EMP4 is necessary to regulate the correct expression of a small subset of mitochondrial transcripts in the endosperm.
机译:五肽重复序列(PPR)家族是植物中最大的基因家族之一,在拟南芥中有超过440个成员被注释。人们认为PPR蛋白在细胞器转录后过程的调控中起主要作用。最近的研究表明,拟南芥PPR蛋白在胚胎发生过程中起着至关重要的,非冗余的作用。在这里,我们证明了玉米(Zea mays)PPR编码基因空果皮(emp4)中的突变赋予了种子致命表型。突变型胚乳严重受损,在营养导入的基础胚乳中转移细胞的分化非常不规则。从胚胎拯救实验产生的纯合突变植物的分析表明,emp4还影响一般植物的生长。 emp4-1突变是在活跃的Mutator(Mu)群体中鉴定出来的,共分离分析表明它是由Mu3元素插入引起的。 emp4分子克隆的证据是通过反向遗传学方法获得的另外四个emp4等位基因的分离提供的。 emp4编码一种新型的614个氨基酸的PPR蛋白。 EMP4包含9个35个氨基酸的PPR基序和一个N端线粒体靶向序列肽,这通过定位于线粒体的翻译性EMP4-绿色荧光蛋白融合物得以证实。分子分析进一步表明,EMP4对于调节胚乳中一小部分线粒体转录本的正确表达是必需的。

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