Understanding genome structure facilitates the use of wild lentil germplasm for breeding: A case study with shattering loci.

IF 3.9 2区 生物学 Q1 GENETICS & HEREDITY
Plant Genome Pub Date : 2024-06-01 Epub Date: 2024-05-15 DOI:10.1002/tpg2.20455
Zhe Cao, Didier Socquet-Juglard, Ketema Daba, Albert Vandenberg, Kirstin E Bett
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Abstract

Plant breeders are generally reluctant to cross elite crop cultivars with their wild relatives to introgress novel desirable traits due to associated negative traits such as pod shattering. This results in a genetic bottleneck that could be reduced through better understanding of the genomic locations of the gene(s) controlling this trait. We integrated information on parental genomes, pod shattering data from multiple environments, and high-density genetic linkage maps to identify pod shattering quantitative trait loci (QTLs) in three lentil interspecific recombinant inbred line populations. The broad-sense heritability on a multi-environment basis varied from 0.46 (in LR-70, Lens culinaris × Lens odemensis) to 0.77 (in LR-68, Lens orientalis × L. culinaris). Genetic linkage maps of the interspecific populations revealed reciprocal translocations of chromosomal segments that differed among the populations, and which were associated with reduced recombination. LR-68 had a 2-5 translocation, LR-70 had 1-5, 2-6, and 2-7 translocations, and LR-86 had a 2-7 translocation in one parent relative to the other. Segregation distortion was also observed for clusters of single nucleotide polymorphisms on multiple chromosomes per population, further affecting introgression. Two major QTL, on chromosomes 4 and 7, were repeatedly detected in the three populations and contain several candidate genes. These findings will be of significant value for lentil breeders to strategically access novel superior alleles while minimizing the genetic impact of pod shattering from wild parents.

了解基因组结构有助于利用野生扁豆种质进行育种:破碎位点案例研究。
由于豆荚破碎等相关负面性状的存在,植物育种者通常不愿意将优秀的作物栽培品种与其野生近缘植物杂交,以引入新的理想性状。这就造成了基因瓶颈,而通过更好地了解控制这一性状的基因的基因组位置,可以减少这一瓶颈。我们整合了亲本基因组信息、来自多种环境的豆荚破碎数据以及高密度遗传连锁图谱,在三个扁豆种间重组近交系群体中确定了豆荚破碎的数量性状位点(QTL)。多环境基础上的广义遗传率从 0.46(LR-70,Lens culinaris × Lens odemensis)到 0.77(LR-68,Lens orientalis × L. culinaris)不等。种间群体的遗传连锁图显示,不同群体的染色体片段存在互易位移,这与重组减少有关。LR-68 有 2-5 个易位,LR-70 有 1-5、2-6 和 2-7 个易位,而 LR-86 的一个亲本相对于另一个亲本有 2-7 个易位。在每个群体的多条染色体上还观察到单核苷酸多态性群的分离畸变,这进一步影响了引种。在三个种群中反复检测到位于 4 号和 7 号染色体上的两个主要 QTL,其中包含多个候选基因。这些发现对于小扁豆育种者战略性地获得新的优良等位基因,同时最大限度地减少来自野生亲本的豆荚破碎的遗传影响具有重要价值。
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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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