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A Genome-Wide Analysis of the

机译:基因组分析

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摘要

Watermelon (Citrullus lanatus) is an economically important fruit crop grown for consumption of its large edible fruit flesh. Pentatricopeptide-repeat (PPR) encoding genes, one of the large gene families in plants, are important RNA-binding proteins involved in the regulation of plant growth and development by influencing the expression of organellar mRNA transcripts. However, systematic information regarding the PPR gene family in watermelon remains largely unknown. In this comprehensive study, we identified and characterized a total of 422 C. lanatus PPR (ClaPPR) genes in the watermelon genome. Most ClaPPRs were intronless and were mapped across 12 chromosomes. Phylogenetic analysis showed that ClaPPR proteins could be divided into P and PLS subfamilies. Gene duplication analysis suggested that 11 pairs of segmentally duplicated genes existed. In-silico expression pattern analysis demonstrated that ClaPPRs may participate in the regulation of fruit development and ripening processes. Genotyping of 70 lines using 4 single nucleotide polymorphisms (SNPs) from 4 ClaPPRs resulted in match rates of over 0.87 for each validated SNPs in correlation with the unique phenotypes of flesh color, and could be used in differentiating red, yellow, or orange watermelons in breeding programs. Our results provide significant insights for a comprehensive understanding of PPR genes and recommend further studies on their roles in watermelon fruit growth and ripening, which could be utilized for cultivar development of watermelon.
机译:西瓜(CitrullusLanatus)是一种以其大型食用果肉消耗种植的经济上重要的果实作物。对植物中的一个大型基因家族之一的戊庚二肽 - 重复(PPR)编码基因是重要的RNA结合蛋白,参与植物生长和发育的调节,通过影响细胞细胞mRNA转录物的表达。然而,有关西瓜PPR基因家族的系统信息仍然很大程度上是未知的。在这项综合研究中,我们在西瓜基因组中鉴定并表征了422℃的422c.LANATSPPR(CLAPP)基因。大多数Clapls都是无内容的,映射到12条染色体上。系统发育分析表明,CLAPPRAMP蛋白可分为P和PLS亚壳。基因复制分析表明,存在11对分段重复的基因。在-In-Silico表达模式分析证明,CLEGRSS可以参与果实开发和成熟过程的调节。使用4个CLB的单一核苷酸多态性(SNPs)的70线的基因分型导致每个经过验证的SNP的匹配率超过0.87,与肉颜色的独特表型相关,并且可用于区分红色,黄色或橙色的西瓜育种计划。我们的结果为全面了解对PPR基因的全面了解,并建议进一步研究其在西瓜果实生长和成熟中的作用,可用于西瓜的栽培品种。

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