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Pan-genome analysis sheds light on structural variation-based dissection of agronomic traits in melon crops

Xiaolong Lyu, Yuelin Xia, Chenhao Wang, Kejia Zhang, Guancong Deng,Qinghui Shen, Wei Gao,Mengyi Zhang, Nanqiao Liao, Jian Ling, Yongming Bo, Zhongyuan Hu, Jinghua Yang, Mingfang Zhang

Plant physiology(2023)

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Abstract
Sweetness and appearance of fresh fruits are key palatable and preference attributes for consumers and are often controlled by multiple genes. However, fine-mapping the key loci or genes of interest by single genome-based genetic analysis is challenging. Herein, we present the chromosome-level genome assembly of 1 landrace melon accession (Cucumis melo ssp. agrestis) with wild morphologic features and thus construct a melon pan-genome atlas via integrating sequenced melon genome datasets. Our comparative genomic analysis reveals a total of 3.4 million genetic variations, of which the presence/absence variations (PAVs) are mainly involved in regulating the function of genes for sucrose metabolism during melon domestication and improvement. We further resolved several loci that are accountable for sucrose contents, flesh color, rind stripe, and suture using a structural variation (SV)-based genome-wide association study. Furthermore, via bulked segregation analysis (BSA)-seq and map-based cloning, we uncovered that a single gene, (CmPIRL6), determines the edible or inedible characteristics of melon fruit exocarp. These findings provide important melon pan-genome information and provide a powerful toolkit for future pan-genome-informed cultivar breeding of melon. Melon pan-genome analysis and genome-wide association study reveal structural variations accountable for important agronomic traits in melon.
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Key words
agronomic traits,crops,pan-genome,variation-based
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