首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >GSL2 over-expression confers resistance to Pectobacterium atrosepticum in potato
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GSL2 over-expression confers resistance to Pectobacterium atrosepticum in potato

机译:GSL2过表达赋予马铃薯对atrosepticum的抗性

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Key message Over-expression of the potato Gibberellin Stimulated-Like 2 ( GSL2 ) gene in transgenic potato confers resistance to blackleg disease incited by Pectobacterium atrosepticum and confirms a role for GSL2 in plant defence. The Gibberellin Stimulated-Like 2 (GSL2) gene (also known as Snakin 2) encodes a cysteine-rich, low-molecular weight antimicrobial peptide produced in potato plants. This protein is thought to play important roles in the innate defence against invading microbes. Over-expression of the GSL2 gene in potato (cultivar Iwa) was achieved using Agrobacterium-mediated gene transfer of a plant expression vector with the potato GSL2 gene under the regulatory control elements of the potato light-inducible Lhca3 gene. The resulting plants were confirmed as being transgenic by PCR, and subsequently analysed for transcriptional expression of the Lhca3-GSL2-Lhca3 chimeric potato gene. Quantitative RT-PCR analysis demonstrated that the majority of the transgenic potato lines over-expressed the GSL2 gene at the mRNA level. Based on qRT-PCR results and evaluation of phenotypic appearance, eight lines were selected for further characterisation and evaluated in bioassays for resistance to Pectobacterium atrosepticum (formerly Erwinia carotovora subsp. atroseptica), the causal agent of blackleg in potato. Three independent pathogenicity bioassays showed that transgenic lines with significantly increased transcriptional expression of the GSL2 gene exhibit resistance to blackleg disease. This establishes a functional role for GSL2 in plant defence against pathogens in potato.
机译:关键信息在转基因马铃薯中,马铃薯赤霉素刺激样2(GSL2)基因的过表达赋予对atrosepticum诱发的黑腿病的抗性,并证实GSL2在植物防御中的作用。赤霉素刺激样2(GSL2)基因(也称为Snakin 2)编码在马铃薯植物中产生的富含半胱氨酸,低分子量的抗菌肽。人们认为这种蛋白质在抵抗微生物入侵的先天防御中起着重要作用。在土壤光诱导型Lhca3基因的调控元件下,利用农杆菌介导的植物表达载体与马铃薯GSL2基因的转移,实现了马铃薯(品种Iwa)中GSL2基因的过表达。通过PCR确认得到的植物是转基因的,随后分析Lhca3-GSL2-Lhca3嵌合马铃薯基因的转录表达。定量RT-PCR分析表明,大多数转基因马铃薯品系在mRNA水平上过表达GSL2基因。根据qRT-PCR结果和表型外观的评估,选择了八种品系进行进一步表征,并在生物测定中评估了对马铃薯黑脚病的病原体土壤杆菌(原名欧文氏杆菌)的抗性。三种独立的致病性生物测定表明,具有显着增加的GSL2基因转录表达的转基因品系表现出对黑腿病的抗性。这确立了GSL2在植物防御马铃薯病原体中的功能性作用。

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