杂交鹅毛楸生长和茎型性状遗传位点的全基因组关联研究。

Forestry research Pub Date : 2025-01-22 eCollection Date: 2025-01-01 DOI:10.48130/forres-0025-0001
Fengchao Zhang, Xiao Liu, Hui Xia, Hainan Wu, Yaxian Zong, Huogen Li
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引用次数: 0

摘要

林木育种计划的一个关键目标是提高与生长和茎形有关的性状,培育生长迅速、树干笔直、锥度最小、木材质量优良的人工林,以满足现代木材生产的要求。鹅掌属植物在种间杂交中表现出明显的杂种优势,杂种鹅掌属植物生长速度快、树干笔直、适应性广。然而,生长和茎形性状的遗传结构仍不清楚,阻碍了遗传改良工作的进展。全基因组关联研究(GWAS)是鉴定靶基因和阐明遗传结构的有效方法。本研究利用25个杂交组合的233个杂交后代人工群体进行了综合分析,并对其进行了重测序,获得了全基因组单核苷酸多态性(SNP)和插入和删除(InDel)变异。筛选后,共获得192,972个SNP位点和60,666个InDel位点,随后使用R包GAPIT分析其相关性。我们分别鉴定出97个显著SNP位点和58个显著InDel位点(-Log10(P)≥4.50),最终鉴定出161个候选基因。对这些候选基因的功能进行了注释,揭示了Lchi_2g03172和Lchi_10g19986基因与杂交鹅尾楸生长的潜在关联,并强调了Lchi_16g30522基因对杂交鹅尾楸生长和分支的潜在影响。总的来说,这项研究为揭示鹅掌楸植物生长和茎形的遗传结构奠定了基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Identification of genetic loci for growth and stem form traits in hybrid Liriodendron via a genome-wide association study.

A key objective of forest tree breeding programs is to enhance traits related to growth and stem form, to cultivate plantations that exhibit rapid growth, straight trunks with minimal taper, and superior wood quality to meet the demands of modern timber production. Notably, Liriodendron species exhibit notable heterosis in interspecies hybrids, with hybrid Liriodendron displaying rapid growth rates, straight trunks, and wide adaptability. However, the genetic architecture underlying growth and stem form traits remains unclear, hindering the progress of genetic improvement efforts. Genome-wide association study (GWAS) emerges as an effective approach for identifying target genes and clarifying genetic architectures. In this study, a comprehensive analysis was conducted using an artificial population of 233 hybrid progeny derived from 25 hybrid combinations and resequenced to obtain genome-wide single nucleotide polymorphism (SNP) and insertion and deletion (InDel) variants. After filtering, a total of 192,972 SNP loci and 60,666 InDel loci were obtained, which were subsequently analyzed for associations using the R package GAPIT. We identified 97 significant SNP loci and 58 significant InDel loci (-Log10(P) ≥ 4.50), respectively, culminating in the identification of 161 candidate genes. The functions of these candidate genes were annotated, revealing potential associations between Lchi_2g03172 and Lchi_10g19986 genes with the growth of hybrid Liriodendron, and highlighting the potential influence of the Lchi_16g30522 gene on the growth and branching of hybrid Liriodendron. Overall, this study serves as a foundational step towards unraveling the genetic architecture underpinning growth and stem form in Liriodendron plants.

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