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温室条件下评价向日葵对.引起的基腐病的定量抗性的方法。

A Greenhouse Method to Evaluate Sunflower Quantitative Resistance to Basal Stalk Rot Caused by .

机构信息

USDA-ARS Sunflower and Plant Biology Research Unit, Edward T. Schafer Agricultural Research Center, Fargo, ND 58102.

Seed Science Center, Iowa State University, Ames, IA 50011.

出版信息

Plant Dis. 2021 Feb;105(2):464-472. doi: 10.1094/PDIS-08-19-1790-RE. Epub 2020 Dec 2.

Abstract

Resistance of sunflower to basal stalk rot (BSR) caused by the fungus is quantitative, controlled by multiple genes contributing small effects. Consequently, artificial inoculation procedures allowing sufficient throughput and resolution of resistance are needed to identify highly resistant sunflower germplasm resources and to map loci contributing to resistance. The objective of this study was to develop a greenhouse-based method for evaluating sunflower quantitative resistance to BSR that would be simple, space- and time-efficient, high throughput, high resolution, and correlated with field observations. Experiments were conducted with 5-week-old sunflower plants and -infested millet seed as inoculum to assess the impact of pot size and temperature and to determine the most favorable inoculum rate and placement. Subsequently, an additional experiment was performed to assess the correlation of the greenhouse inoculation procedure with field results by using a panel of 32 sunflower genotypes with known field response to BSR previously determined in multiyear, multilocation artificially inoculated trials. Experimental observations indicated that the newly developed greenhouse inoculation procedure provided improved resolution to identify highly resistant genotypes and was strongly correlated with field observations. This method will be useful for screening of sunflower experimental and breeding materials, disease phenotyping of genetic mapping populations, and evaluation of resistance to different pathogen isolates.

摘要

向日葵对由真菌引起的基底茎腐病(BSR)的抗性是定量的,由多个基因控制,这些基因的作用很小。因此,需要能够进行足够通量和抗性分辨率的人工接种程序,以鉴定对高抗性的向日葵种质资源,并对有助于抗性的基因座进行作图。本研究的目的是开发一种基于温室的评估向日葵对 BSR 的定量抗性的方法,该方法简单、节省空间和时间、高通量、高分辨率,并与田间观察相关。实验在 5 周龄的向日葵植株上进行,并使用感染小米种子作为接种物,以评估盆大小和温度的影响,并确定最有利的接种率和接种位置。随后,进行了另一个实验,通过使用 32 个向日葵基因型的小组,评估温室接种程序与田间结果的相关性,这些基因型对 BSR 的田间反应是已知的,并且已经在多年多地点人工接种试验中确定。实验观察表明,新开发的温室接种程序在鉴定高抗性基因型方面提供了更高的分辨率,并与田间观察结果具有很强的相关性。该方法将有助于筛选向日葵实验和育种材料、遗传图谱群体的疾病表型分析,以及评估对不同病原体分离株的抗性。

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