Fine-mapping and identification of a candidate gene controlling seed coat color in melon (Cucumis melo L. var. chinensis Pangalo)
文献类型: 外文期刊
作者: Hu, Zhicheng;Shi, Xueyin;Chen, Xuemiao;Zheng, Jing;Zhang, Aiai;Wang, Huaisong;Fu, Qiushi
作者机构:
期刊名称: THEORETICAL AND APPLIED GENETICS
ISSN: 0040-5752
年卷期: 2021 年
页码:
收录情况: JCR(2021版) ; EI(2021版)
摘要: Key message MELO3C019554 encoding a homeobox protein (PHD transcription factor) is a candidate gene that involved in the formation of seed coat color in melon. Seed coat color is related to flavonoid content which is closely related to seed dormancy. According to the genetic analysis of a six-generation population derived from two parents (IC2508 with a yellow seed coat and IC2518 with a brown seed coat), we discovered that the yellow seed coat trait in melon is controlled by a single dominant gene, named CmBS-1. Bulked segregant analysis sequencing (BSA-Seq) revealed that the gene is located at 11,860,000-15,890,000 bp (4.03 Mb) on Chr 6. The F-2 population was genotyped using insertion-deletions (InDels), from which cleaved amplified polymorphic sequence (dCAPS) markers were derived to construct a genetic map. The gene was then fine-mapped to a 233.98 kb region containing 12 genes. Based on gene sequence analysis with two parents, we found that the MELO3C019554 gene encoding a homeobox protein (PHD transcription factor) had a nonsynonymous single nucleotide polymorphism (SNP) mutation in the coding sequence (CDS), and the SNP mutation resulted in the conversion of an amino acid (A -> T) at residue 534. In addition, MELO3C019554 exhibited lower relative expression levels in the yellow seed coat than in the brown seed coat. Furthermore, we found that MELO3C019554 is related to 12 flavonoid metabolites. Thus, we predicted that MELO3C019554 is a candidate gene controlling seed coat color in melon. The study lays a foundation for further cloning projects and functional analysis of this gene, as well as marker-assisted selection breeding.
分类号:
- 相关文献
作者其他论文 更多>>
-
Organic fertilizer enhances crop yield and soil health by increasing arbuscular mycorrhizal fungi species richness
作者:Wang, Huaisong;Guo, Rui;Xu, Jialing;Yang, Tong;Wang, Mingming;Zhang, Lei;Jiang, Li;Gao, Yingzhi;Guo, Jixun;Shi, Lianxuan;Gao, Ying;Sun, Mingzhou;Zhang, Tao
关键词:crop yield;ecosystem multifunctionality;mycorrhizal network;organic fertilizer;soil microorganisms
-
Transcriptome Analysis of Early Lateral Root Formation in Tomato
作者:Zhang, Aiai;Shang, Qingmao
关键词:tomato;lateral root;auxin;transcriptome
-
A new l-serine binding orphan SerBP affects indole synthesis in Pantoea ananatis
作者:Zhang, Lei;Yu, Jiajia;Zheng, Jing;Wu, Liqing;Zhou, Xinyi;Ban, Yali;Sun, Yuanhao;Zhang, Haotian;Feng, Yongjun
关键词:amino acid transport;indole;Pantoea ananatis YJ76;substrate-binding protein
-
Targeted creation of new mutants with compact plant architecture using CRISPR/Cas9 genome editing by an optimized genetic transformation procedure in cucurbit plants
作者:Xin, Tongxu;Tian, Haojie;Ma, Yalin;Wang, Shenhao;Yang, Li;Li, Xutong;Zhang, Mengzhuo;Chen, Chen;Wang, Huaisong;Li, Haizhen;Xu, Jieting;Huang, Sanwen;Yang, Xueyong
关键词:
-
Transcriptome profiling of Cucumis melo fruit development and ripening
作者:Zhang, Hong;Yi, Hongping;Zhai, Wenqiang;Wang, Guangzhi;Wang, Huaisong;Fu, Qiushi
关键词:
-
An ACC Oxidase Gene Essential for Cucumber Carpel Development
作者:Cui, Qingzhi;Sun, Jinjing;Li, Shuai;Zhang, Huimin;Wang, Huaisong;Lin, Tao;Gao, Dongli;Wang, Shenhao;Zhang, Zhonghua;Huang, Sanwen;Zhang, Huimin;Lin, Tao;Gao, Dongli;Huang, Sanwen;Xin, Fengjiao;Li, Xia;Wang, Donghui;Xu, Zhihong
关键词:cucumber;sex determination;carpel development;ACC oxidase
-
Green asparagus close planting culture in solar greenhouse
作者:Zhang, Zhi-Bin;He, Chao-Xing;Wang, Huaisong
关键词:greenhouse;asparagus;close planting