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甜瓜白粉病抗性相关候选基因的精细定位与鉴定(甜瓜)

Fine mapping and identification of candidate genes associated with powdery mildew resistance in melon ( L.).

作者信息

Duan Xiaoyu, Yuan Yue, Real Núria, Tang Mi, Ren Jian, Wei Jiaqi, Liu Bin, Zhang Xuejun

机构信息

Hami-melon Research Center, Xinjiang Academy of Agricultural Sciences, Nanchang Road 403, Saybagh District, Urumqi 830091, China.

Sanya Mingzhu Melon and Watermelon Variety Demonstration Evaluation and Research Center, Yazhou District, Sanya 572000, China.

出版信息

Hortic Res. 2024 Aug 12;11(10):uhae222. doi: 10.1093/hr/uhae222. eCollection 2024 Oct.

Abstract

Powdery mildew (PM), a common disease of many major crop species, including melon ( L.), affects plant growth and fruit quality and seriously reduces production. Using a combined morphological and molecular approach, we attribute the PM pathogen that naturally occurs in melon to , and specifically to physiological race 1. An investigation into the genetic basis of PM resistance in melon using the resistant accession 'PI 164637' and susceptible counterpart 'HDZ' reveals dominant inheritance of PM resistance at the seedling stage, supported by F and backcross population segregation ratios. Adult plant assessments indicate a major gene with an additive effect for PM resistance. Bulk segregant analysis coupled with high-throughput sequencing identified a significant quantitative trait locus on chromosome 6 that is associated with PM resistance. Genetic mapping narrowed down the candidate region to 63.5 kb using InDel molecular markers, harboring 12 candidate genes. The marker chr06_indel_5 047 127 demonstrated high accuracy in screening PM resistance in an F segregating population and 30 inbred lines as natural populations. Functional annotation and expression analysis of candidate genes revealed that MYB transcription factor MELO3C006700, GATA transcription factor MELO3C028829 and heparanase-like protein MELO3C006697 are promising candidate genes for PM resistance in melon. The genetic architecture underlying this resistance in melon offers valuable insights for breeding programs, and the identified markers, especially chr06_indel_5 047 127, may enable practical applications for marker-assisted selection in developing PM-resistant melon varieties.

摘要

白粉病(PM)是包括甜瓜(L.)在内的许多主要作物品种的常见病害,影响植物生长和果实品质,严重降低产量。我们采用形态学和分子学相结合的方法,将甜瓜中自然发生的PM病原体归为,具体归为生理小种1。利用抗病材料‘PI 164637’和感病对照‘HDZ’对甜瓜抗白粉病的遗传基础进行研究,F1和回交群体的分离比例表明,苗期抗白粉病呈显性遗传。成株期评估表明存在一个对抗白粉病具有加性效应的主基因。通过混合分组分析法结合高通量测序,在6号染色体上鉴定出一个与抗白粉病相关的显著数量性状位点。利用InDel分子标记将候选区域缩小到63.5 kb,该区域包含12个候选基因。标记chr06_indel_5 047 127在F2分离群体和30个自交系自然群体中筛选抗白粉病时显示出高准确性。对候选基因的功能注释和表达分析表明,MYB转录因子MELO3C006700、GATA转录因子MELO3C028829和类乙酰肝素酶蛋白MELO3C006697是甜瓜抗白粉病的有希望的候选基因。甜瓜这种抗性的遗传结构为育种计划提供了有价值的见解,所鉴定的标记,特别是chr06_indel_5 047 127,可能在培育抗白粉病甜瓜品种的标记辅助选择中具有实际应用价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1beb/11473854/84fc1828c2bd/uhae222f1.jpg

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