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首页> 外文期刊>Planta >Arabidopsis emb175 and other ppr knockout mutants reveal essential roles for pentatricopeptide repeat (PPR) proteins in plant embryogenesis
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Arabidopsis emb175 and other ppr knockout mutants reveal essential roles for pentatricopeptide repeat (PPR) proteins in plant embryogenesis

机译:拟南芥emb175和其他ppr基因敲除突变体揭示五肽重复序列(PPR)蛋白在植物胚胎发生中的重要作用

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摘要

Pentatricopeptide repeat proteins (PPRPs) constitute one of the largest superfamilies in plants, with more than 440 identified in the Arabidopsis thaliana (L.) Heynh genome. While some PPRPs are known to take part in organelle gene expression, little is known about the broader biological contexts of PPRP gene function. Here, using developmental- and reverse-genetic approaches, we demonstrate that a number of PPRPs are essential early in plant development. We have characterized the Arabidopsis embryo-defective175 mutant and identified the EMB175 gene. Emb175 consistently displays aberrant cell organization and undergoes morphological arrest before the globular-heart transition. The emb175 mutation disrupts an intronless open reading frame encoding a predicted chloroplast-localized PPR protein— the first to be rigorously associated with an early embryo-lethal phenotype. To determine if other PPRP genes act in embryogenesis, we searched Arabidopsis insertion mutant collections for pprp knockout alleles, and identified 29 mutants representing 11 loci potentially associated with embryo-defective phenotypes. We assessed gene structures, T-DNA insertion position, and allelism for these loci and were able to firmly establish essential functions for six PPRP genes in addition to EMB175. Interestingly, Nomarski DIC microscopy revealed diverse embryonic defects in these lines, ranging from early lethality to dramatic late-stage morphological defects such as enlarged shoot apices and stunted cotyledons. Together, emb175 and these pprp knockout mutants establish essential roles for PPRPs in embryogenesis, thus broadening the known organismal context for PPRP gene function. The diversity of emb–pprp knockout phenotypes indicates that mutation of different PPRPs can, directly or indirectly, have distinct impacts on embryo morphogenesis.
机译:五肽重复序列蛋白(PPRP)构成植物中最大的超家族之一,在拟南芥Heynh基因组中鉴定出超过440种。尽管已知某些PPRP参与细胞器基因表达,但对PPRP基因功能的更广泛生物学背景知之甚少。在这里,我们使用发育和反向遗传学方法,证明了许多PPRP在植物发育早期必不可少。我们已经表征了拟南芥胚缺陷175突变体,并确定了EMB175基因。 Emb175始终显示异常的细胞组织,并在球心过渡之前经历形态学停滞。 emb175突变破坏了编码预测的叶绿体定位PPR蛋白的无内含子开放阅读框-这是第一个与早期胚胎致死表型严格相关的蛋白。为了确定其他PPRP基因是否在胚胎发生中起作用,我们搜索了拟南芥插入突变体集合中的pprp基因敲除等位基因,并鉴定了29个代表11个基因位点的突变体,这些基因座可能与胚胎缺陷型有关。我们评估了这些基因座的基因结构,T-DNA插入位置和等位基因,并且能够牢固地建立除EMB175之外的六个PPRP基因的基本功能。有趣的是,Nomarski DIC显微镜显示了这些品系中的多种胚胎缺陷,范围从早期致死性到戏剧性的后期形态学缺陷,例如增大的茎尖和发育不良的子叶。 emb175和这些pprp基因敲除突变体共同为PPRPs在胚胎发生中发挥重要作用,从而拓宽了PPRP基因功能的已知生物背景。 emb-pprp基因敲除表型的多样性表明,不同PPRPs的突变可以直接或间接地对胚胎形态发生有明显的影响。

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