首页> 外文学位 >Multiple physiological race characterization of Phytophthora capsici causing foliar blight, nonhost resistance; and genetic evaluation of a novel inhibitor gene affecting disease resistance in chile peppers.
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Multiple physiological race characterization of Phytophthora capsici causing foliar blight, nonhost resistance; and genetic evaluation of a novel inhibitor gene affecting disease resistance in chile peppers.

机译:辣椒疫霉的多种生理学种族特征导致叶枯萎病,非寄主抗性;影响辣椒抗病性的新抑制剂基因的合成和遗传评价。

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摘要

Phytophthora capsici Leon. is the causal agent of phytophthora blight that produces enormous damages in chile pepper and bell pepper ( Capsicum annuum L.) crops worldwide. This pathogen can infect every part of a Capsicum plant causing disease syndromes such as foliar blight, fruit rot, stem blight, and root rot. A successful characterization of the physiological races of P. capsici causing the root rot syndrome has been accomplished. However, the different physiological races of P. capsici causing foliar blight syndrome have not been fully documented. This study presents a novel and accurate technique that allows us to evaluate phytophthora foliar blight syndrome using multiple isolates of P. capsici on a single C. annuum plant. The screening technique proved to be fast, accurate, and replicable. Using the phytophthora foliar blight multiple-race disease screening technique, several P. capsici isolates from different locations were evaluated. The different races were characterized using a population of 26 New Mexico Recombinant Inbred Lines (NMRILs) as a host differential set. A total of 12 different isolates were characterized as 12 different physiological races of P. capsici causing foliar blight syndrome in C. annuum plants. The characterization of some of the isolates as different physiological races agreed with previous reported studies, and proved that the NMRIL population is a reliable host differential set to characterize physiological races of P. capsici. This study, also reported an Inhibitor (I) gene found in the susceptible C. annuum accession NMCA10399. When the P. capsici resistant material CM-334 was hybridized with NMCA10399, the resultant F 1 population displayed 100% susceptibility against the P. capsici race-1. The F2 population from the same hybridization displayed a 3:13 (Resistant:Susceptible) ratio. The backcross population using the CM-334 parent displayed 1:1 ratio, and backcross population using NMCA10399 displayed 100% susceptibility. These results suggest the presence of a single dominant gene affecting the resistant expression of CM-334. The gene has been given the provisional name, Inhibitor (I). Lastly, the accession NMCA10399 was tested for nonhost resistance against different Phytophthora species. This experiment evaluated whether or not I affected the nonhost resistance of NMCA10399 against other Phytophthora species as well.;When NMCAI0399 was tested against seven Phytophthora species, only P. capsici caused disease on the plant. These results suggested that I is interfering with the expression of specific resistance, but not the expression of nonhost resistance.
机译:辣椒疫霉菌Leon。是疫霉疫病的致病因子,对全世界的辣椒和甜椒(辣椒)作物造成巨大破坏。这种病原体可以感染辣椒植物的每个部分,导致疾病综合症,例如叶枯病,果实腐烂,茎枯病和根腐病。已经成功鉴定了引起根腐病综合症的辣椒辣椒的生理小种。但是,尚未完全记录引起叶枯病综合征的辣椒辣椒的不同生理学种族。这项研究提出了一种新颖而准确的技术,它使我们可以使用单株C. annuum植物上的多个辣椒疫霉菌菌株来评估疫霉疫病。筛选技术被证明是快速,准确和可复制的。使用疫霉叶枯病多种族疾病筛选技术,评估了来自不同位置的几种辣椒疫霉菌分离株。使用26个新墨西哥州重组自交系(NMRIL)作为宿主差异集来表征不同的种族。总共12种不同的分离物被表征为辣椒疫霉的12个不​​同的生理小种,在辣椒植物中引起叶枯病综合征。某些分离物作为不同生理小种的表征与先前报道的研究相符,并证明NMRIL群体是表征辣椒衣原体生理小种的可靠宿主差异集。这项研究还报告了在易感环孢菌登录号NMCA10399中发现的一种抑制剂(I)基因。当辣椒辣椒抗性材料CM-334与NMCA10399杂交时,所得的F 1种群对辣椒辣椒第1种种族表现出100%的敏感性。来自同一杂交的F2群体显示出3:13(抗性:易感)比率。使用CM-334亲本的回交群体显示出1:1的比例,使用NMCA10399的回交群体显示出100%的敏感性。这些结果表明存在单个显性基因,其影响CM-334的抗性表达。该基因已被赋予临时名称抑制剂(I)。最后,对NMCA10399登录号进行了针对不同疫霉菌的非寄主抗性测试。该实验评估了我是否也影响了NMCA10399对其他疫霉菌的非寄主抗性。当对NMCAI0399对7种疫霉菌进行测试时,只有辣椒疫霉会在植物上引起疾病。这些结果表明我正在干扰特异性抗性的表达,但不干扰非宿主抗性的表达。

著录项

  • 作者

    Monroy-Barbosa, Ariadna L.;

  • 作者单位

    New Mexico State University.;

  • 授予单位 New Mexico State University.;
  • 学科 Agriculture Horticulture.;Agriculture Plant Culture.;Agriculture General.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 92 p.
  • 总页数 92
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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