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黄瓜品种支持先天免疫对蔓枯病菌的相对生化和生理对接。

Relative biochemical and physiological docking of cucumber varieties for supporting innate immunity against Podosphaera xanthii.

机构信息

Department of Biology, College of Science, Princess Nourah bint Abdulrahman University, P.O. Box 84428, Riyadh, 11671, Saudi Arabia.

Department of Botany, Government College University, Faisalabad, Pakistan.

出版信息

Microb Pathog. 2023 Nov;184:106359. doi: 10.1016/j.micpath.2023.106359. Epub 2023 Sep 15.

DOI:10.1016/j.micpath.2023.106359
PMID:37716624
Abstract

Powdery mildew in cucumber is caused by the Podosphaera xanthii. No strategy for improving disease resistance can be successful in the absence of thorough insights into the physiological and biochemical responses of cucumber plants to powdery mildew. Therefore, a field experiment was executed to evaluate five commercial cucumber varieties (V: Dynasty, V: Long green, V:Desi Kheera, V:Thamin II, V:Cucumber 363) for their inherent immunity to powdery mildew. Upon inoculating cucumber plants with Podosphaera xanthii, we noted differential responses among the varieties. Compared to other varieties, V and V showed higher values (P ≤ 0.05) for chlorophyll-a under control and pathogen-attacked plants respectively. The minimum value of anthocyanin content (-53.73%) was recorded in V as compared to other varieties post pathogen infection. All pathogen-infected cucumber varieties showed a considerable (P ≤ 0.05) loss in flavonoid content except V. The maximum destruction for Phenolics under powdery mildew (179%) were recorded in V, whereas V exhibited maximum phenolic content under control conditions. In pathogen-infected plants, the minimum AsA was recorded in V as compared to all other varieties. Pathogen invasion impacted significantly (P ≤ 0.05) the activity of superoxide dismutase (SOD). Besides, cucumber plants after pathogen inoculation resulted in a considerable (P ≤ 0.05) increase of peroxidase (POD) activity in V (5.02%), V (7.5%), and V (11%) in contrast to V. Our results confirmed that cucumber varieties perform differently, which was brought on by distinct metabolic and physiological modifications that have an impact on growth and development. The changes in different attributes were correlated with cucumber resistance against powdery mildew. The results would help us fully harness the potential of these varieties to trigger disease management initiatives and defense responses.

摘要

黄瓜白粉病由 Podosphaera xanthii 引起。如果缺乏对黄瓜植物对白粉病的生理生化反应的透彻了解,那么任何提高抗病性的策略都不会成功。因此,进行了田间试验来评估五个商业黄瓜品种(V:王朝、V:长绿、V:Desi Kheera、V:Thamin II、V:黄瓜 363)对白粉病的固有免疫力。在接种黄瓜植物的 Podosphaera xanthii 后,我们注意到品种之间存在不同的反应。与其他品种相比,V 和 V 在对照和受病原体攻击的植物中的叶绿素-a 值较高(P≤0.05)。与其他品种相比,V 在病原体感染后记录的花青素含量最低(-53.73%)。除 V 外,所有受病原体感染的黄瓜品种的类黄酮含量都有相当大的损失(P≤0.05)。在白粉病下,V 中酚类物质的破坏最大(179%),而 V 在对照条件下表现出最大的酚类含量。在受病原体感染的植物中,V 中的 AsA 最低,与其他所有品种相比。病原体入侵显著影响(P≤0.05)超氧化物歧化酶(SOD)的活性。此外,与 V 相比,接种病原体后,V(5.02%)、V(7.5%)和 V(11%)的黄瓜植物过氧化物酶(POD)活性有了相当大的增加(P≤0.05)。我们的结果证实,黄瓜品种的表现不同,这是由对生长和发育有影响的不同代谢和生理变化引起的。不同属性的变化与黄瓜对白粉病的抗性有关。这些结果将帮助我们充分利用这些品种的潜力,引发疾病管理计划和防御反应。

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