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Quantitative trait loci for tuber blackspot bruise and enzymatic discoloration susceptibility in diploid potato

机译:二倍体马铃薯块茎黑斑擦伤和酶变敏感性的定量性状位点

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摘要

Tuber tissue discolorations caused by impact (blackspot bruising) and enzymatic discoloration (ED) after tuber cutting are crucial quality traits of the cultivated potato. To understand the complex genetics of the traits, quantitative trait locus (QTL) analysis using diploid mapping population and diversity array technology (DArT) markers was performed. The phenotypic assessment included the complex evaluation of blackspot bruising susceptibility through two methods: rotating drum (B RD) and falling bolt (B FB) in combination with the evaluation of enzymatic discoloration. Because of observed in-practice relationship between bruising susceptibility and tuber starch content (TSC), analysis of starch content-corrected bruising susceptibility (SCB) was performed. QTLs for bruising were detected on chromosomes I, V with both test methods. The rotating drum method enabled the detection of additional QTLs on chromosomes VIII and XII. Analysis of SCB enabled the identification of the major QTL on chromosome V and two weaker QTLs on chromosomes VIII and XII, independently of starch content. The QTL for bruising detected on chromosome I overlapped with the most significant QTL for tuber starch content. This QTL was not significant for starch content-corrected bruising susceptibility, and the effect of the QTL on chromosome V was enhanced for this trait. The QTL analysis of ED revealed the contribution of seven QTLs for the trait, located on six chromosomes, including these detected for the first time: a major locus on chromosome V and minor QTLs on chromosomes VII and X, which were specific for the trait. The QTL for ED on chromosome VIII was co-localized with the marker for polyphenol oxidase (POT32). The phenotypic correlation between bruising and ED was confirmed in QTL analyses of both traits, and the QTLs detected for these traits overlapped on chromosomes I, V, and VIII. Our results should provide a basis for further studies on candidate genes affecting blackspot bruise susceptibility and enzymatic discoloration.Electronic supplementary materialThe online version of this article (doi:10.1007/s00438-017-1387-0) contains supplementary material, which is available to authorized users.
机译:切块后因撞击(黑点瘀伤)和酶变色(ED)引起的块茎组织变色是栽培马铃薯的重要品质特征。为了了解这些性状的复杂遗传学,进行了使用二倍体作图群体和多样性阵列技术(DArT)标记的定量性状基因座(QTL)分析。表型评估包括通过两种方法对黑点瘀伤敏感性进行综合评估:旋转鼓(B RD)和落螺栓(B FB)以及酶促变色评估。由于在实践中观察到青肿易感性与块茎淀粉含量(TSC)之间的关系,因此进行了淀粉含量校正的青肿易感性(SCB)分析。两种测试方法均在I,V号染色体上检测到瘀伤的QTL。转鼓法使得能够检测染色体VIII和XII上的其他QTL。通过SCB的分析,可以确定V染色体上的主要QTL和VIII和XII染色体上的两个较弱的QTL,而与淀粉含量无关。在I号染色体上检测到的青紫的QTL与块茎淀粉含量的最重要的QTL重叠。该QTL对淀粉含量校正的青紫敏感性不显着,并且针对该性状增强了QTL对V染色体的影响。 ED的QTL分析揭示了七个QTL对性状的贡献,位于六个染色体上,包括首次检测到的:V染色体上的一个主要基因座以及VII和X染色体上的次要QTL,这些特异于该性状。 VIII染色体上ED的QTL与多酚氧化酶(POT32)标记共定位。在两个性状的QTL分析中证实了青紫和ED之间的表型相关性,并且针对这些性状检测到的QTL在I,V和VIII染色体上重叠。我们的研究结果应为进一步研究影响黑点瘀伤易感性和酶变色的候选基因提供基础。电子补充材料本文的在线版本(doi:10.1007 / s00438-017-1387-0)包含补充材料,可通过授权使用用户。

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