绘制香橼西瓜耐低温胁迫的遗传结构图。

IF 3.9 2区 生物学 Q1 GENETICS & HEREDITY
Plant Genome Pub Date : 2024-06-01 Epub Date: 2024-03-10 DOI:10.1002/tpg2.20443
Dennis N Katuuramu, Amnon Levi, William P Wechter
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引用次数: 0

摘要

甜瓤西瓜(Citrullus lanatus)是一种重要的热带蔬菜作物。它因其水分和营养价值而在世界各地广泛种植和食用。低温胁迫会影响早期播种、育苗和将作物生产扩展到新地区。美国农业部位于佐治亚州格里芬的国家植物种质资源库系统基因库收集了 122 个香橼西瓜(Citrullus amarus)品种。利用全基因组重测序技术对这些品种进行基因分型,生成单核苷酸多态性(SNPs)分子标记,并在低温胁迫和非胁迫对照条件下进行筛选。在冷胁迫和非胁迫对照处理条件下,测定了四个与低温胁迫耐受性相关的性状,包括芽生物量、藤蔓长度、光系统 II 的最大量子效率和叶绿素含量。相关分析表明,各性状之间存在正相关关系。所有性状的广义遗传率从 0.35 到 0.73 不等,这意味着观察到的表型变异存在遗传贡献。在多个香橼西瓜染色体上确定了这些性状的基因组区域。与低温胁迫耐受性相关的四个假定候选基因与全基因组关联研究的峰值 SNPs 位于同一位置。这些基因组区域和标记信息可用于分子育种,以加速西瓜耐低温胁迫性的遗传改良。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mapping the genetic architecture of low-temperature stress tolerance in citron watermelon.

Sweet-fleshed watermelon (Citrullus lanatus) is an important vegetable crop of the tropical origin. It is widely grown and consumed around the world for its hydration and nutritional quality values. Low-temperature stress can affect early planting, seedling establishment, and expansion of crop production to new areas. A collection of 122 citron watermelon (Citrullus amarus) accessions were obtained from the USDA's National Plant Germplasm Repository System gene bank in Griffin, GA. The accessions were genotyped using whole genome resequencing to generate single nucleotide polymorphisms (SNPs) molecular markers and screened under cold-stressed and non-stressed control conditions. Four low-temperature stress tolerance related traits including shoot biomass, vine length, maximum quantum efficiency of photosystem II, and chlorophyll content were measured under cold-stressed and non-stressed control treatment conditions. Correlation analysis revealed the presence of positive relationships among traits. Broad-sense heritability for all traits ranged from 0.35 to 0.73, implying the presence of genetic contributions to the observed phenotypic variation. Genomic regions underlying these traits across several citron watermelon chromosomes were identified. Four low-temperature stress tolerance related putative candidate genes co-located with the peak SNPs from genome-wide association study. These genomic regions and marker information could potentially be used in molecular breeding to accelerate genetic improvements for low-temperature stress tolerance in watermelon.

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来源期刊
Plant Genome
Plant Genome PLANT SCIENCES-GENETICS & HEREDITY
CiteScore
6.00
自引率
4.80%
发文量
93
审稿时长
>12 weeks
期刊介绍: The Plant Genome publishes original research investigating all aspects of plant genomics. Technical breakthroughs reporting improvements in the efficiency and speed of acquiring and interpreting plant genomics data are welcome. The editorial board gives preference to novel reports that use innovative genomic applications that advance our understanding of plant biology that may have applications to crop improvement. The journal also publishes invited review articles and perspectives that offer insight and commentary on recent advances in genomics and their potential for agronomic improvement.
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