首页> 外文期刊>Physiological and Molecular Plant Pathology >Identification of allele specific AFLP markers linked with bacterial wilt [Ralstonia solanacearum (Smith) Yabuuchi et al.] resistance in hot peppers (Capsicum annuum L.)
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Identification of allele specific AFLP markers linked with bacterial wilt [Ralstonia solanacearum (Smith) Yabuuchi et al.] resistance in hot peppers (Capsicum annuum L.)

机译:鉴定与辣椒(辣椒)抗性相关的等位基因特异性AFLP标记与细菌性青枯病[Ralstonia solanacearum(Smith)Yabuuchi等]

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Even though the bacterial wilt is identified as the most destructive disease in hot peppers world-wide, robust molecular markers that facilitate marker assisted selection are absent till date. Kerala Agricultural University (India) has released two hot peppers named Ujwala and Anugraha which show high level field resistance to this pathogen. The variety Anugraha was developed through backcross breeding between a high yielding but highly susceptible variety Pusa Jwala with the highly resistant Ujwala, using Pusa Jwala as a recurrent parent. Thus, Pusa Jwala and Anugraha are near isogenic lines (NILs) differing for the resistance to bacterial wilt only and the resistance is governed by a homozygous recessive (rr) gene action. The F(1)s of Anugraha x Pusa Jwala were selfed to generate the segregating F-2 population. The F-2 population has been field screened, 10 highly susceptible and 10 most resistant plants were identified and DNA from these plants were bulked separately. Bulked segregant analysis with AFLP primer combination EcoACT + MseCAC was done using the DNA from donor parent Ujwala, susceptible parent Pusa Jwala, resistant parent Anugraha, bulked susceptible F-2 and bulked resistant F-2 plants. On resolution using capillary electrophoresis system in genetic analyzer, the AFLP products have yielded three polymorphic bands (103, 117, and 161 bp) which were linked with the resistant recessive allele and three polymorphic bands (183, 296, 319 bp) linked with the dominant susceptible allele of the bacterial wilt resistance gene. The results were confirmed through co-segregation analysis in most resistant and susceptible plants of F-2 segregating population
机译:即使在世界范围内辣椒被确认为最具破坏性的青枯病,但至今仍缺乏促进标记辅助选择的强大分子标记。印度喀拉拉邦农业大学发布了两种名为Ujwala和Anugraha的辣椒,它们对这种病原体具有很高的田间抗药性。阿努格拉哈(Anugraha)品种是通过回交育种在高产量但高度易感的Pusa Jwala品种与高抗性Ujwala之间进行育种的,使用Pusa Jwala作为轮回亲本。因此,Pusa Jwala和Anugraha是近等基因系(NIL),仅对细菌性青枯病具有不同的抗性,并且该抗性由纯合隐性(rr)基因作用控制。自足的Anugraha x Pusa Jwala的F(1)产生分离的F-2种群。已对F-2种群进行了现场筛选,鉴定了10株高度易感的植物和10株最抗病的植物,并将这些植物的DNA分开堆积。使用来自供体亲本Ujwala,易感亲本Pusa Jwala,抗性亲本Anugraha,易感F-2和易感抗F-2植物的DNA进行AFLP引物组合EcoACT + MseCAC的批量分离子分析。使用遗传分析仪中的毛细管电泳系统进行解析时,AFLP产物产生了三个多态性条带(103、117和161 bp),它们与抗性隐性等位基因相关;三个多态性条带(183、296、319 bp)。细菌青枯病抗性基因的显性易感等位基因。通过共同分离分析在F-2分离种群的大多数抗性和易感植物中证实了结果

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