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Identification of rust resistance genes Lr10 and Sr9a in Pakistani wheat germplasm using PCR based molecular markers

机译:基于PCR的分子标记鉴定巴基斯坦小麦种质中的抗锈基因Lr10和Sr9a

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Wheat (Triticum aestivum?L.) rusts are the most widespread and destructive among all other diseases of wheat because of their wide distribution, and their capacity to form new races that can attack previously resistant cultivars which result in serious yield losses. Stem rust caused by?Puccinia graminis?f. sp. triticiand leaf of orange rust caused by?Puccinia recondita?are more effective and durable when several rust resistance genes are pyramided into a single line. Molecular survey was conducted to screen altogether 44 Pakistani wheat germplasm lines consisted of 23 cultivated varieties for the presence of?Lr10?and?Sr9a?genes?by using co-dominant STS and SSR primers specific for?respective alleles. The polymorphic survey revealed that out of 44 germplasm lines obtained from Ayub Agriculture Research Institute, 31 genotypes were observed with?Lr10?gene (including C-228, C-245, C-288), while 13 germplasm lines did not show the presence of?Lr10?gene. Of the 23 cultivated varieties, 21 varieties observed?Lr10gene (including Auqab 2000, Chenab-70, Punjab-76, Kohsar-95, Parvaz-94, Pasban-90, Chenab-2000, Satluj-86, Shahkar-95), while only Kohsar 95 and PARI 73 did not show the presence of?Lr10?gene. Molecular survey for?Sr9a?gene depicts that 33 genotypes were observed for stem rust resistance like C-248, LR26, C-250, C-271, C-273, C-288 and C-518, while 11 genotypes (including C-228, C-245, C-247 and C-271) showed no such fragment. Of 23 conventional cultivated varieties, 21 varieties showed the presence of?Sr9a?stem rust resistance gene like Punjab-76, Pak-81, Kohistan-97, Kohsar-95, Parvaz-94, Pasban-90 etc and 4 varieties showed the absence of?Sr9a?stem rust resistance gene like Shahkar-95, Parvaz-94, Chenab-2000 and Chenab-79. The identification of?Lr10?and?Sr9a?in Pakistani wheat germplasm will help in accelerating the breeding program in future, including pyramiding of different wheat resistant genes in wheat varieties.
机译:小麦(Triticum aestivum?L。)锈病在小麦的所有其他疾病中是最普遍和最具破坏性的,这是因为它们的分布范围广,而且它们形成新的小种的能力也很强,可以攻击以前具有抗性的品种,从而导致严重的产量损失。 f。小麦锈病引起的茎锈病。 sp。当几个抗锈基因连锁成一条线时,由“ Puccinia recondita”引起的橙色锈病的triticiand叶更有效,更持久。通过使用对等位基因特异的共显性STS和SSR引物,进行了分子调查,筛选了由23个栽培品种组成的44个巴基斯坦小麦种质系中是否存在Lr10和Sr9a基因。多态性调查显示,在从阿尤布农业研究所获得的44个种质系中,观察到31个具有Lr10β基因的基因型(包括C-228,C-245,C-288),而13个种质系未显示存在。的Lr10基因。在这23个栽培品种中,观察到21个Lr10基因(包括Auqab 2000,Chenab-70,Punjab-76,Kohsar-95,Parvaz-94,Pasban-90,Chenab-2000,Satluj-86,Shahkar-95)。只有Kohsar 95和PARI 73没有显示出“ Lr10”基因的存在。对Sr9a基因的分子研究表明,观察到33种基因型的茎锈病抗性,如C-248,LR26,C-250,C-271,C-273,C-288和C-518,而11种基因型(包括C -228,C-245,C-247和C-271)没有显示此类片段。在23个常规栽培品种中,有21个品种表现出Purnjab-76,Pak-81,Kohistan-97,Kohsar-95,Parvaz-94,Pasban-90等抗Sr9a干茎锈病基因,而4个品种则不存在Sharkar-95,Parvaz-94,Chenab-2000和Chenab-79等“ Sr9a”茎抗锈基因的表达。在巴基斯坦小麦种质中鉴定“ Lr10”和“ Sr9a”将有助于加快育种计划,包括在小麦品种中推广不同的小麦抗性基因。

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