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高密度遗传图谱构建及控制. 叶片脱落性状 QTL 的鉴定。

High-Density Genetic Map Construction and Identification of QTLs Controlling Leaf Abscission Trait in .

机构信息

Laboratory of Horticultural Plant Biology, College of Horticulture and Forestry Science, Huazhong Agricultural University, Wuhan 430070, China.

出版信息

Int J Mol Sci. 2021 May 27;22(11):5723. doi: 10.3390/ijms22115723.

Abstract

A high-density genetic linkage map is essential for genetic and genomic studies including QTL mapping, genome assembly, and comparative genomic analysis. Here, we constructed a citrus high-density linkage map using SSR and SNP markers, which are evenly distributed across the citrus genome. The integrated linkage map contains 4163 markers with an average distance of 1.12 cM. The female and male linkage maps contain 1478 and 2976 markers with genetic lengths of 1093.90 cM and 1227.03 cM, respectively. Meanwhile, a genetic map comparison demonstrates that the linear order of common markers is highly conserved between the clementine mandarin and . Based on this high-density integrated citrus genetic map and two years of deciduous phenotypic data, two loci conferring leaf abscission phenotypic variation were detected on scaffold 1 (including 36 genes) and scaffold 8 (including 107 genes) using association analysis. Moreover, the expression patterns of 30 candidate genes were investigated under cold stress conditions because cold temperature is closely linked with the deciduous trait. The developed high-density genetic map will facilitate QTL mapping and genomic studies, and the localization of the leaf abscission deciduous trait will be valuable for understanding the mechanism of this deciduous trait and citrus breeding.

摘要

高密度遗传图谱对于遗传和基因组研究至关重要,包括 QTL 作图、基因组组装和比较基因组分析。在这里,我们使用 SSR 和 SNP 标记构建了一个柑橘高密度遗传图谱,这些标记均匀分布在柑橘基因组中。整合的遗传图谱包含 4163 个标记,平均距离为 1.12cM。雌性和雄性图谱分别包含 1478 个和 2976 个标记,遗传长度分别为 1093.90cM 和 1227.03cM。同时,遗传图谱比较表明,在克莱门氏小柑橘和之间,常见标记的线性顺序高度保守。基于这个高密度的柑橘整合遗传图谱和两年的落叶表型数据,通过关联分析在支架 1(包括 36 个基因)和支架 8(包括 107 个基因)上检测到两个控制叶片脱落表型变异的位点。此外,由于低温与落叶性状密切相关,我们还研究了 30 个候选基因在冷胁迫条件下的表达模式。开发的高密度遗传图谱将有助于 QTL 作图和基因组研究,并且对落叶脱落性状的定位将有助于理解该落叶性状和柑橘育种的机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/165c/8198561/d6ae82e6e8a7/ijms-22-05723-g001.jpg

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