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首页> 外文期刊>Plant physiology >Impaired auxin biosynthesis in the defective endosperm18 mutant is due to mutational loss of expression in the ZmYuc1 gene encoding endosperm-specific YUCCA1 Protein in Maize
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Impaired auxin biosynthesis in the defective endosperm18 mutant is due to mutational loss of expression in the ZmYuc1 gene encoding endosperm-specific YUCCA1 Protein in Maize

机译:有缺陷的胚乳18突变体中的生长素生物合成受损是由于玉米中编码胚乳特异性YUCCA1蛋白的ZmYuc1基因表达突变而导致的

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The phytohormone auxin (indole-3-acetic acid [IAA]) plays a fundamental role in vegetative and reproductive plant development. Here, we characterized a seed-specific viable maize (Zea mays) mutant, defective endosperm18 (de18) that is impaired in IAA biosynthesis. de18 endosperm showed large reductions of free IAA levels and is known to have approximately 40% less dry mass, compared with De18. Cellular analyses showed lower total cell number, smaller cell volume, and reduced level of endoreduplication in the mutant endosperm. Gene expression analyses of seed-specific tryptophan-dependent IAA pathway genes, maize Yucca1 (ZmYuc1), and two tryptophan-aminotransferase co-orthologs were performed to understand the molecular basis of the IAA deficiency in the mutant. Temporally, all three genes showed high expression coincident with high IAA levels; however, only ZmYuc1 correlated with the reduced IAA levels in the mutant throughout endosperm development. Furthermore, sequence analyses of ZmYuc1 complementary DNA and genomic clones revealed many changes specific to the mutant, including a 2-bp insertion that generated a premature stop codon and a truncated YUC1 protein of 212 amino acids, compared with the 400 amino acids in the De18. The putative, approximately 1.5-kb, Yuc1 promoter region also showed many rearrangements, including a 151-bp deletion in the mutant. Our concurrent high-density mapping and annotation studies of chromosome 10, contig 395, showed that the De18 locus was tightly linked to the gene ZmYuc1. Collectively, the data suggest that the molecular changes in the ZmYuc1 gene encoding the YUC1 protein are the causal basis of impairment in a critical step in IAA biosynthesis, essential for normal endosperm development in maize.
机译:植物激素生长素(吲哚-3-乙酸[IAA])在营养和生殖植物的发育中起着基本作用。在这里,我们表征了在IAA生物合成中受损的种子特异性存活玉米(Zea mays)突变体,有缺陷的胚乳18(de18)。与De18相比,de18胚乳显示出大量的游离IAA水平降低,并且干燥质量降低了约40%。细胞分析显示,突变体胚乳中的总细胞数更低,细胞体积更小,核复制的水平降低。进行了种子特异性色氨酸依赖性IAA途径基因,玉米Yucca1(ZmYuc1)和两个色氨酸-氨基转移酶同向同源物的基因表达分析,以了解突变体中IAA缺乏的分子基础。暂时地,所有三个基因均显示出高表达,并伴有高IAA水平。然而,在整个胚乳发育过程中,只有ZmYuc1与突变体中IAA水平降低相关。此外,对ZmYuc1互补DNA和基因组克隆的序列分析揭示了该突变体的许多特异性变化,包括2 bp的插入产生了过早的终止密码子和212个氨基酸的截短的YUC1蛋白,而De18中只有400个氨基酸。假定的约1.5 kb Yuc1启动子区域也显示出许多重排,包括突变体中的151 bp缺失。我们同时进行的10号染色体重叠群395的高密度作图和注释研究表明,De18基因座与ZmYuc1基因紧密相连。总体而言,数据表明,编码YUC1蛋白的ZmYuc1基因的分子变化是IAA生物合成关键步骤中损伤的因果基础,这对玉米正常胚乳发育至关重要。

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