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GmPGIP3 enhanced resistance to both take-all and common root rot diseases in transgenic wheat

机译:GmPGIP3增强了转基因小麦对全面性和常见根腐病的抗性

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摘要

Take-all (caused by the fungal pathogen Gaeumannomyces graminis var. tritici, Ggt) and common root rot (caused by Bipolaris sorokiniana) are devastating root diseases of wheat (Triticum aestivum L.). Development of resistant wheat cultivars has been a challenge since no resistant wheat accession is available. GmPGIP3, one member of polygalacturonase-inhibiting protein (PGIP) family in soybean (Glycine max), exhibited inhibition activity against fungal endopolygalacturonases (PGs) in vitro. In this study, the GmPGIP3 transgenic wheat plants were generated and used to assess the effectiveness of GmPGIP3 in protecting wheat from the infection of Ggt and B. sorokiniana. Four independent transgenic lines were identified by genomic PCR, Southern blot, and reverse transcription PCR (RT-PCR). The introduced GmPGIP3 was integrated into the genomes of these transgenic lines and could be expressed. The expressing GmPGIP3 protein in these transgenic wheat lines could inhibit the PGs produced by Ggt and B. sorokiniana. The disease response assessments postinoculation showed that the GmPGIP3-expressing transgenic wheat lines displayed significantly enhanced resistance to both take-all and common root rot diseases caused by the infection of Ggt and B. sorokiniana. These data suggested that GmPGIP3 is an attractive gene resource in improving resistance to both take-all and common root rot diseases in wheat.
机译:通吃(由真菌病原菌Gaeumannomyces graminis var.tritici,Ggt引起)和普通根腐病(由Bipolaris sorokiniana引起)是小麦的毁灭性根系疾病(Triticum aestivum L.)。由于没有可用的抗性小麦品种,抗性小麦品种的开发一直是一个挑战。 GmPGIP3是大豆(Glycine max)中的一种多聚半乳糖醛酸酶抑制蛋白(PGIP)家族成员,在体外对真菌内聚半乳糖苷酶(PGs)表现出抑制活性。在这项研究中,产生了GmPGIP3转基因小麦植株,并用于评估GmPGIP3在保护小麦免受Ggt和B. sorokiniana感染方面的有效性。通过基因组PCR,Southern印迹和逆转录PCR(RT-PCR)鉴定了四个独立的转基因品系。引入的GmPGIP3被整合到这些转基因品系的基因组中并且可以被表达。这些转基因小麦品系中表达的GmPGIP3蛋白可以抑制Ggt和B. sorokiniana产生的PG。接种后的疾病反应评估表明,表达GmPGIP3的转基因小麦品系显示出对由Ggt和B. sorokiniana感染引起的全面感染和常见根腐病的抵抗力明显增强。这些数据表明,GmPGIP3是提高小麦对所有通病和常见根腐病的抗性的有吸引力的基因资源。

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