The Hansen's baccata #2 gene Rvi12_Cd5 confers scab resistance to the susceptible apple cultivar “Gala Galaxy”

IF 5.7 1区 生物学 Q1 PLANT SCIENCES The Plant Journal Pub Date : 2024-12-18 DOI:10.1111/tpj.17214
Ayesha Yousaf, Paolo Baldi, Stefano Piazza, Valeria Gualandri, Matteo Komjanc, Lorenza Dalla Costa, Andrea Patocchi, Mickael Malnoy
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Abstract

To enhance the breeding of new scab-resistant apple cultivars, a comprehensive understanding of the mechanisms governing major scab resistance genes is essential. Rvi12_Cd5 was previously identified as the best candidate gene for the Rvi12 scab resistance of the crab apple “Hansen's baccata #2” by gene prediction and in silico analysis. In the present study, Rvi12_Cd5 was used to transform the scab-susceptible apple cultivar “Gala Galaxy.” Two constructs were prepared: the first carrying Rvi12_Cd5 under the control of a 35S promoter and E9 terminator, and the second carrying Rvi12_Cd5 under the control of its native promoter and terminator. All the transgenic lines were analyzed for T-DNA integration, copy number, and expression of Rvi12_Cd5 and phenotypically evaluated for scab resistance. The “Gala Galaxy” lines carrying the 35S promoter expressed Rvi12_Cd5 at a high level, showing partial to high resistance against a mixed inoculum of Venturia inaequalis, with symptoms ranging from class 0 to 3b on the Chevalier scale. The transgenic lines carrying the native promoter showed a lower expression of Rvi12_Cd5 compared with the 35S lines. Nevertheless, the low expression was sufficient to induce a resistance level comparable to that of the transgenic lines carrying the 35S promoter. These results indicate that Rvi12_Cd5 confers scab resistance to a susceptible apple cultivar and that even a low level of gene transcript can trigger a plant response to V. inaequalis infection. After HcrVf2 and Vr2-C, Rvi12_Cd5 is the third major apple scab resistance gene being functionally proven.

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Hansen's baccata #2 基因 Rvi12_Cd5 赋予易感苹果栽培品种 "Gala Galaxy "疮痂病抗性。
为了提高苹果抗结痂新品种的选育,全面了解主要抗结痂基因的作用机制至关重要。Rvi12_Cd5先前通过基因预测和硅分析被确定为海果“Hansen’s baccata #2”的Rvi12抗结痂基因的最佳候选基因。本研究利用Rvi12_Cd5对易结痂苹果品种“Gala Galaxy”进行了转化。制备了两个构建体:第一个在35S启动子和E9终止子的控制下携带Rvi12_Cd5,第二个在其原生启动子和终止子的控制下携带Rvi12_Cd5。对所有转基因系进行T-DNA整合、拷贝数和Rvi12_Cd5表达分析,并对其抗痂性进行表型评价。携带35S启动子的“Gala Galaxy”系高水平表达Rvi12_Cd5,对不均等文氏菌混合接种表现出部分或高度抗性,症状在Chevalier分级中为0级至3b级。携带原生启动子的转基因系与35S系相比,Rvi12_Cd5的表达较低。然而,低表达足以诱导与携带35S启动子的转基因系相当的抗性水平。这些结果表明,Rvi12_Cd5使苹果易感品种具有抗痂病的能力,即使是低水平的基因转录也能引发植物对不等分弧菌感染的反应。继HcrVf2和Vr2-C之后,Rvi12_Cd5是第三个被功能证实的苹果抗痂病基因。
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来源期刊
The Plant Journal
The Plant Journal 生物-植物科学
CiteScore
13.10
自引率
4.20%
发文量
415
审稿时长
2.3 months
期刊介绍: Publishing the best original research papers in all key areas of modern plant biology from the world"s leading laboratories, The Plant Journal provides a dynamic forum for this ever growing international research community. Plant science research is now at the forefront of research in the biological sciences, with breakthroughs in our understanding of fundamental processes in plants matching those in other organisms. The impact of molecular genetics and the availability of model and crop species can be seen in all aspects of plant biology. For publication in The Plant Journal the research must provide a highly significant new contribution to our understanding of plants and be of general interest to the plant science community.
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