...
首页> 外文期刊>G3: Genes, Genomes, Genetics >Linkage Relationships Among Multiple QTL for Horticultural Traits and Late Blight (P. infestans) Resistance on Chromosome 5 Introgressed from Wild Tomato Solanum habrochaites
【24h】

Linkage Relationships Among Multiple QTL for Horticultural Traits and Late Blight (P. infestans) Resistance on Chromosome 5 Introgressed from Wild Tomato Solanum habrochaites

机译:园艺性状的多个QTL与野生番茄茄形假丝茎渗入的5号染色体晚疫病(P. infestans)抗性的连锁关系

获取原文
           

摘要

When the allele of a wild species at a quantitative trait locus (QTL) conferring a desirable trait is introduced into cultivated species, undesirable effects on other traits may occur. These negative phenotypic effects may result from the presence of wild alleles at other closely linked loci that are transferred along with the desired QTL allele ( i.e. , linkage drag) and/or from pleiotropic effects of the desired allele. Previously, a QTL for resistance to Phytophthora infestans on chromosome 5 of Solanum habrochaites was mapped and introgressed into cultivated tomato ( S. lycopersicum ). Near-isogenic lines (NILs) were generated and used for fine-mapping of this resistance QTL, which revealed coincident or linked QTL with undesirable effects on yield, maturity, fruit size, and plant architecture traits. Subsequent higher-resolution mapping with chromosome 5 sub-NILs revealed the presence of multiple P. infestans resistance QTL within this 12.3 cM region. In our present study, these sub-NILs were also evaluated for 17 horticultural traits, including yield, maturity, fruit size and shape, fruit quality, and plant architecture traits in replicated field experiments over the course of two years. Each previously detected single horticultural trait QTL fractionated into two or more QTL. A total of 41 QTL were detected across all traits, with ~30% exhibiting significant QTL × environment interactions. Colocation of QTL for multiple traits suggests either pleiotropy or tightly linked genes control these traits. The complex genetic architecture of horticultural and P. infestans resistance trait QTL within this S. habrochaites region of chromosome 5 presents challenges and opportunities for breeding efforts in cultivated tomato.
机译:当将赋予理想性状的数量性状位点(QTL)上的野生物种等位基因引入栽培物种时,可能会对其他性状产生不良影响。这些负面的表型效应可能是由于其他紧密连锁的基因座上存在野生的等位基因,这些基因与所需的QTL等位基因一起转移(即连锁拖曳)和/或所需的等位基因的多效性。以前,绘制了茄子茄属5号染色体上对疫霉疫霉的抗性的QTL,并渗入栽培番茄(S. lycopersicum)中。产生了近等基因系(NIL),并将其用于该抗性QTL的精细定位,揭示了重合或连锁的QTL对产量,成熟度,果实大小和植物结构性状产生不良影响。随后与5号染色体亚NIL的高分辨率映射揭示了在12.3 cM区域内存在多个P. infestans抗性QTL。在我们目前的研究中,在两年的重复田间试验中,还对这些亚基NIL进行了17种园艺性状的评估,包括产量,成熟度,果实大小和形状,果实品质以及植物结构性状。每个先前检测到的单一园艺性状QTL分为两个或多个QTL。所有性状共检出41个QTL,约30%表现出显着的QTL×环境相互作用。多种性状的QTL并置表明,多效性或紧密连锁的基因控制着这些性状。在5号染色体的该S. habrochaites区内,园艺和P. infestans抗性性状QTL的复杂遗传结构为栽培番茄的育种工作提出了挑战和机遇。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号