Expression of a modified Avr3a gene under the control of a synthetic pathogen-inducible promoter leads to Phytophthora infestans resistance in potato

IF 10.1 1区 生物学 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Friedrich Kauder, Gabor Gyetvai, Klaus Schmidt, Daniel Stirnweis, Tobias Haehre, Kai Prenzler, Anja Maeser, Christine Klapprodt, Florian Tiller, Jens Lübeck, Dietmar J. Stahl
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引用次数: 0

Abstract

Late blight resistance of potato was improved by the co-expression of the potato resistance gene R3a and the pathogen-inducible avirulence gene Avr3a of Phytopthora infestans. The synthetic pathogen-inducible promoter 2xS-4xD-NpCABEcore, which is composed of the cis-acting elements S and D and the core promoter of the NpCABE gene, was developed for potato. By analysis of 20 core promoters from Solanacea species synthetic promoters of the 2xS-2xD-type were generated which differ in their background activity, strength and promoter inducibility. These data showed that the core promoter plays an important role for the architecture of a synthetic promoter and influences the specificity and strength beside the cis-acting element. The 2xS-2xD-NpCABEcore promoter was further improved by increasing the number of the cis-acting elements resulting in the 2xS-4xD-NpCABEcore promoter. Modified Avr3a alleles, which triggered less cell death than the Avr3aKI allele, were expressed with the optimized synthetic promoter in transgenic potatoes with an R3a gene. The transgenic lines showed less late blight symptoms and up to 60% reduction of sporangia in detached leaf assays. The absence of a negative plant phenotype in the greenhouse demonstrated that the balanced co-expression of a modified Avr3a gene under the control of an optimized synthetic promoter is a promising strategy to increase late blight resistance of potatoes. This concept might be as well applied to other crops since the co-expression of the R3a and Avr3aKI gene induced cell death in leaves of corn, wheat and soybean in a transient assay.
马铃薯抗晚疫病基因R3a和Phytopthora infestans的病原诱导无毒基因Avr3a的共同表达提高了马铃薯的抗晚疫病能力。为马铃薯开发了合成的病原诱导启动子 2xS-4xD-NpCABEcore,它由顺式作用元件 S 和 D 以及 NpCABE 基因的核心启动子组成。通过分析来自茄科植物的 20 个核心启动子,生成了 2xS-2xD 型合成启动子,这些启动子的背景活性、强度和启动子诱导性各不相同。这些数据表明,核心启动子对合成启动子的结构起着重要作用,并影响顺式作用元件的特异性和强度。通过增加顺式作用元件的数量,2xS-2xD-NpCABEcore 启动子得到了进一步改进,最终形成了 2xS-4xD-NpCABEcore 启动子。与 Avr3aKI 等位基因相比,经过修饰的 Avr3a 等位基因引发的细胞死亡更少。转基因品系表现出较少的晚疫病症状,在离体叶片试验中孢子囊减少达 60%。温室中植物表型无负面影响,这表明在优化的合成启动子控制下平衡共表达改良的 Avr3a 基因是提高马铃薯抗晚疫病能力的有效策略。这一概念也可应用于其他作物,因为在瞬时试验中,R3a 和 Avr3aKI 基因的共同表达可诱导玉米、小麦和大豆叶片细胞死亡。
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来源期刊
Plant Biotechnology Journal
Plant Biotechnology Journal 生物-生物工程与应用微生物
CiteScore
20.50
自引率
2.90%
发文量
201
审稿时长
1 months
期刊介绍: Plant Biotechnology Journal aspires to publish original research and insightful reviews of high impact, authored by prominent researchers in applied plant science. The journal places a special emphasis on molecular plant sciences and their practical applications through plant biotechnology. Our goal is to establish a platform for showcasing significant advances in the field, encompassing curiosity-driven studies with potential applications, strategic research in plant biotechnology, scientific analysis of crucial issues for the beneficial utilization of plant sciences, and assessments of the performance of plant biotechnology products in practical applications.
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