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全基因组重测序鉴定出与大西洋巨人(品种)的大果实相关的数量性状基因座、候选基因和竞争性等位基因特异性PCR标记。

Whole-genome resequencing identified QTLs, candidate genes and Kompetitive Allele-Specific PCR markers associated with the large fruit of Atlantic Giant ().

作者信息

Pan Liu, Wang Min, Yang Yating, Chen Chen, Dai Haibo, Zhang Zhiping, Hua Bing, Miao Minmin

机构信息

College of Horticulture and Plant Protection, Yangzhou University, Yangzhou, China.

Joint International Research Laboratory of Agriculture and Agri-Product Safety of Ministry of Education of China, Yangzhou University, Yangzhou, China.

出版信息

Front Plant Sci. 2022 Jul 22;13:942004. doi: 10.3389/fpls.2022.942004. eCollection 2022.

Abstract

Atlantic Giant (AG) pumpkin () produces the world's largest fruit. Elucidating the molecular mechanism of AG fruit formation is of scientific and practical importance. In this research, genome-wide resequencing of an F population produced by a cross between AG and its small-fruit ancestor Hubbard was used to identify quantitative trait loci (QTLs) and candidate genes. Transgressive segregation of fruit size-related traits was observed in the F population, suggesting that fruit size was a quantitative trait controlled by multiple genes. A genetic map with an average physical distance of 154 kb per marker was constructed, and 13 QTLs related to fruit size were identified using bin-map construction. RNA sequencing analysis revealed that pathways associated with assimilate accumulation into the fruit, including carbohydrate metabolism, were significantly enriched in differentially expressed genes. According to the predicted impact of mutation on the biological function of certain proteins, 13 genes were selected as candidate genes associated with fruit size, among which two phytohormone-related genes, (a flavin-containing monooxygenase) and (a leucine-rich repeat protein kinase) were chosen for further investigation. Finally, one insertion-deletion (inDel) and three single nucleotide polymorphisms (SNPs) were successfully transformed to Kompetitive Allele-Specific PCR (KASP) markers. The novel QTLs and candidate genes identified provide insights into the genetic mechanism of large fruit formation of AG, and the genetic map and tightly linked KASP markers developed in this study can be employed for marker-assisted breeding to alter fruit size of .

摘要

大西洋巨型(AG)南瓜能结出世界上最大的果实。阐明AG果实形成的分子机制具有科学和实际意义。在本研究中,利用AG与其小果祖先哈伯德杂交产生的F群体进行全基因组重测序,以鉴定数量性状位点(QTL)和候选基因。在F群体中观察到果实大小相关性状的超亲分离,表明果实大小是由多个基因控制的数量性状。构建了平均每个标记物理距离为154 kb的遗传图谱,并通过构建bin图谱鉴定了13个与果实大小相关的QTL。RNA测序分析表明,在差异表达基因中,与同化物积累到果实中的途径,包括碳水化合物代谢,显著富集。根据突变对某些蛋白质生物学功能的预测影响,选择了13个基因作为与果实大小相关的候选基因,其中两个与植物激素相关的基因,(一种含黄素单加氧酶)和(一种富含亮氨酸重复序列的蛋白激酶)被选作进一步研究对象。最后,成功地将一个插入缺失(inDel)和三个单核苷酸多态性(SNP)转化为竞争性等位基因特异性PCR(KASP)标记。鉴定出的新QTL和候选基因为AG大果形成的遗传机制提供了见解,本研究开发的遗传图谱和紧密连锁的KASP标记可用于标记辅助育种,以改变南瓜的果实大小。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c2e7/9354748/b444c62f93be/fpls-13-942004-g001.jpg

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