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Histochemical and Microscopic Studies Predict that Grapevine Genotype Ju mei gui is Highly Resistant against Botrytis cinerea

机译:组织化学和微观研究预测葡萄基因型菊梅桂对Botrytis Cinerea具有高度抗性

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摘要

The necrotrophic fungus Botrytis cinerea causes devastating pre- and post-harvest yield losses in grapevine (Vitis vinifera L.). Although B. cinerea has been well-studied in different plant species, there is limited information related to the resistance and susceptibility mechanisms of Vitis genotypes against B. cinerea infection. In the present study, leaves and berries of twenty four grape genotypes were evaluated against B. cinerea infection. According to the results, one genotype (Ju mei gui) was highly resistant (HR), one genotype (Kyoho) was resistant (R), eight genotypes were susceptible (S), and fourteen genotypes were highly susceptible (HS) against infection of B. cinerea in leaves. Whereas in the case of B.cinerea infection in grape berry, three genotypes were found to be highly resistant, three resistant, eleven genotypes susceptible, and seven were highly susceptible. To further explore the mechanism of disease resistance in grapevine, we evaluated “Ju mei gui” and “Summer black” in terms of B. cinerea progression, reactive oxygen species reactions, jasmonic acid contents, and the activities of antioxidant enzymes in leaf and fruit. We surmise that the resistance of “Ju mei gui” is due to seized fungal growth, minor reactive oxygen species (ROS) production, elevated antioxidant enzyme activity, and more jasmonic acid (JA) contents. This study provides insights into the resistance and susceptibility mechanism of Vitis genotypes against B. cinerea. This will help for the selection of appropriate germplasm to explore the molecular basis of disease resistance mechanisms in grapevine.
机译:病变碎片的坏养殖性菌落导致葡萄葡萄树(血管血管血管膜)的收获前和收获后产量损失。虽然B. Cinerea在不同植物物种中进行了很好地研究,但有限的信息有关与B. cinerea感染的抗炎基因型的抗性和敏感性机制有关的信息。在本研究中,对B. cinerea感染评估了二十四种葡萄基因型的叶和浆果。根据结果​​,一种基因型(Ju Mei Gui)是高度抗性(HR),一种基因型(kyoho)是抗性(R),八种基因型易感,并且十四个基因型是高易感(HS)的影响B.叶子在叶子。而在B的情况下。Cinerea感染在葡萄浆果中,发现三种基因型是高度抗性的,三种抗性,11个基因型易感,七个是高度敏感的。为了进一步探讨葡萄葡萄酒中抗病抗性的机制,我们在B. cinerea进展,反应性氧物种反应,茉莉酸含量和叶片和水果中的抗氧化酶的活性方面评估了“Ju Mei Gui”和“夏天黑” 。我们推动了“鞠美桂”的阻力是由于缉获的真菌生长,次要反应性氧物质(ROS)生产,升高的抗氧化酶活性,以及​​更多的茉莉酸(JA)含量。本研究提供了对肺炎患者血管基因型的抗性和敏感机制的见解。这将有助于选择适当的种质以探讨葡萄葡萄树中抗病机制的分子基础。

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