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Tomato Fruits Show Wide Phenomic Diversity but Fruit Developmental Genes Show Low Genomic Diversity

机译:番茄果实表现出较高的表观多样性但果实发育基因显示出较低的基因组多样性

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摘要

Domestication of tomato has resulted in large diversity in fruit phenotypes. An intensive phenotyping of 127 tomato accessions from 20 countries revealed extensive morphological diversity in fruit traits. The diversity in fruit traits clustered the accessions into nine classes and identified certain promising lines having desirable traits pertaining to total soluble salts (TSS), carotenoids, ripening index, weight and shape. Factor analysis of the morphometric data from Tomato Analyzer showed that the fruit shape is a complex trait shared by several factors. The 100% variance between round and flat fruit shapes was explained by one discriminant function having a canonical correlation of 0.874 by stepwise discriminant analysis. A set of 10 genes (ACS2, COP1, CYC-B, RIN, MSH2, NAC-NOR, PHOT1, PHYA, PHYB and PSY1) involved in various plant developmental processes were screened for SNP polymorphism by EcoTILLING. The genetic diversity in these genes revealed a total of 36 non-synonymous and 18 synonymous changes leading to the identification of 28 haplotypes. The average frequency of polymorphism across the genes was 0.038/Kb. Significant negative Tajima’D statistic in two of the genes, ACS2 and PHOT1 indicated the presence of rare alleles in low frequency. Our study indicates that while there is low polymorphic diversity in the genes regulating plant development, the population shows wider phenotype diversity. Nonetheless, morphological and genetic diversity of the present collection can be further exploited as potential resources in future.
机译:番茄的驯化导致水果表型的多样性。对来自20个国家的127个番茄品种的密集表型分析显示,果实性状具有广泛的形态多样性。果实性状的多样性将种质分为九类,并确定了某些有希望的系,这些系具有与总可溶性盐(TSS),类胡萝卜素,成熟指数,重量和形状有关的理想性状。番茄分析仪形态数据的因子分析表明,果实形状是一个复杂的性状,由多个因素共享。圆形和扁平水果形状之间的100%方差由一个判别函数解释,通过逐步判别分析,该函数的典范相关性为0.874。通过EcoTILLING筛选了涉及多种植物发育过程的一组10个基因(ACS2,COP1,CYC-B,RIN,MSH2,NAC-NOR,PHOT1,PHYA,PHYB和PSY1)的SNP多态性。这些基因的遗传多样性揭示了总共36个非同义和18个同义变化,从而鉴定了28个单倍型。整个基因多态性的平均频率为0.038 / Kb。 ACS2和PHOT1这两个基因的Tajima’D统计显着为负,表明低频存在稀有等位基因。我们的研究表明,虽然调节植物发育的基因中的多态性多样性较低,但该群体表现出更广泛的表型多样性。尽管如此,目前收藏的形态和遗传多样性仍可作为未来的潜在资源进一步开发。

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