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SSR marker-assisted screening of commercial tomato genotypes under salt stress

机译:盐胁迫下SSR标记辅助筛选商业番茄基因型

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摘要

Salt stress was applied to tomato commercial genotypes to study adverse effects on their phenotypic traits. Three were saline tolerant (San Miguel, Romelia and Llanero), two were mildly tolerant (Perfect peel HF1 and Heinz 1350) whereas the remaining were sensitive. Genotyping cultivars using 19 polymorphic SSRs out of 25 tested produced a total of 70 alleles with an average of 3.68 alleles per locus and PIC values ranging from 0.22 (SSR 26, 92, 66 and TG35) to 0.82 (SSR 356). Principal component analysis (PCA) showed two contrasting panels discriminating tolerant and sensitive groups and one panel with scattered genotypes. STRUCTURE analysis clustered genotypes within three groups in accordance with their salt stress behavior. The success of tomato salt-tolerance breeding programs can be enhanced through molecular characterization of diversity within commercial cultivars that adapt differently to stress conditions. To this end, we combined phenotypes and SSR marker-genotypes to seek sources of salt tolerance that might be tomato species-specific. We integrated and represented genotype-phenotype associations from multiple loci into a multi-layer network representation. It is a systemic view linking discriminating genotypes to salt stress phenotypes, which may guide strategies for the introgression of valuable traits in target tomato varieties to overcome salinity.
机译:将盐胁迫应用于番茄商业基因型,以研究对其表型性状的不利影响。 3个耐盐(San Miguel,Romelia和Llanero),两个耐温(Perfectpe HF1和Heinz 1350),其余则敏感。在25个测试的品种中使用19个多态性SSR进行基因分型,共产生70个等位基因,平均每个位点为3.68个等位基因,PIC值介于0.22(SSR 26、92、66和TG35)至0.82(SSR 356)之间。主成分分析(PCA)显示,两个区分容忍和敏感人群的对比小组和一个具有分散基因型的小组。结构分析根据盐胁迫行为将基因型分为三类。番茄耐盐育种计划的成功可以通过商业化栽培品种中能够适应胁迫条件的多样性分子表征来增强。为此,我们结合了表型和SSR标记基因型,以寻找可能是番茄物种特异性的耐盐性来源。我们将来自多个基因座的基因型-表型关联整合并表示为多层网络表示。这是将区分基因型与盐胁迫表型联系起来的系统视图,可指导目标番茄品种有价值性状的基因渗入策略以克服盐度。

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