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高通量 KASP 分析鉴定桃果实对桃细菌性黑斑病菌(Xap)的反应。

Ppe.XapF: High throughput KASP assays to identify fruit response to Xanthomonas arboricola pv. pruni (Xap) in peach.

机构信息

Department of Plant Biology, Michigan State University, East Lansing, MI, United States of America.

Department of Plant and Environmental Sciences, Clemson University, Clemson, SC, United States of America.

出版信息

PLoS One. 2022 Feb 25;17(2):e0264543. doi: 10.1371/journal.pone.0264543. eCollection 2022.

Abstract

Bacterial spot, caused by Xanthomonas arboricola pv. pruni (Xap), is a serious peach disease with symptoms that traverse severe defoliation and black surface pitting, cracking or blemishes on peach fruit with global economic impacts. A management option for control and meeting consumer demand for chemical-free, environmentally friendly fruit production is the development of resistant or tolerant cultivars. We developed simple, accurate, and efficient DNA assays (Ppe.XapF) based on SNP genotyping with KASP technology to quickly test for bacterial spot resistance alleles in peach fruit that allows breeders to cull seedlings at the greenhouse stage. The objective of this research was to validate newly developed DNA tests that target the two major QTLs for fruit resistance in peach with diagnostic utility in predicting fruit response to bacterial spot infection. Our study confirms that with only two Ppe.XapF DNA tests, Ppe.XapF1-1 and Ppe.XapF6-2, individuals carrying susceptible alleles can be identified. Use of these efficient and accurate Ppe.XapF KASP tests resulted in 44% reduction in seedling planting rate in the Clemson University peach breeding program.

摘要

细菌性斑点病,由黄单胞菌桃致病变种(Xap)引起,是一种严重的桃病害,其症状包括严重落叶和桃果实表面黑斑、凹陷、开裂或瑕疵,对全球经济有影响。控制该病害的管理措施之一是培育具有抗性或耐受性的品种,以满足消费者对无化学物质、环保水果生产的需求。我们开发了基于 SNP 基因分型的简单、准确和高效的 DNA 检测方法(Ppe.XapF),该方法采用了 KASP 技术,可快速检测桃果实中的细菌性斑点抗性等位基因,使育种者能够在温室阶段淘汰幼苗。本研究的目的是验证新开发的 DNA 检测方法,这些方法针对桃果实中两个主要的 QTL 进行了目标定位,具有诊断实用性,可预测果实对细菌性斑点感染的反应。我们的研究证实,只需进行两个 Ppe.XapF DNA 检测,即 Ppe.XapF1-1 和 Ppe.XapF6-2,就可以鉴定出携带易感等位基因的个体。使用这些高效、准确的 Ppe.XapF KASP 检测方法,可使克莱姆森大学桃育种计划中的幼苗种植率降低 44%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/472f/8880879/3ce9c0105e32/pone.0264543.g001.jpg

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