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苹果锈果类病毒感染通过影响叶片代谢来抑制苹果树的营养生长。

ASSVd infection inhibits the vegetative growth of apple trees by affecting leaf metabolism.

作者信息

Li Guofang, Li Jinghong, Zhang He, Li Jiuyang, Jia Linguang, Zhou Shiwei, Wang Yanan, Sun Jianshe, Tan Ming, Shao Jianzhu

机构信息

College of Horticulture, Hebei Agricultural University, Baoding, China.

Changli Institute of Pomology, Hebei Academy of Agricultural and Forestry Science, Changli, China.

出版信息

Front Plant Sci. 2023 Feb 24;14:1137630. doi: 10.3389/fpls.2023.1137630. eCollection 2023.

Abstract

Apple scar skin viroid (ASSVd) can infect apple trees and cause scar skin symptoms. However, the associated physiological mechanisms are unclear in young saplings. In this study, ASSVd-infected and control 'Odysso' and 'Tonami' apple saplings were examined to clarify the effects of ASSVd on apple tree growth and physiological characteristics as well as the leaf metabolome. The results indicated that leaf ASSVd contents increased significantly after grafting and remained high in the second year. Leaf size, tree height, stem diameter, branch length, and leaf photosynthetic efficiency decreased significantly in viroid-infected saplings. In response to the ASSVd infection, the chlorophyll a and b contents decreased significantly in 'Odysso', but were unchanged in 'Tonami'. Moreover, the N, P, K, Fe, Mn, and Ca contents decreased significantly in the leaves of viroid-infected 'Odysso' or 'Tonami'. Similarly, the CAT and POD contents decreased significantly in the viroid-infected saplings, but the SOD content increased in the viroid-infected 'Tonami' saplings. A total of 15 and 40 differentially abundant metabolites were respectively identified in the metabolome analyses of 'Odysso' and 'Tonami' leaves. Specifically, in the viroid-infected 'Odysso' and 'Tonami' samples, the L-2-aminobutyric acid, 6″-O-malonyldaidzin, and D-xylose contents increased, while the coumarin content decreased. These metabolites are related to the biosynthesis of isoflavonoids and phenylpropanoids as well as the metabolism of carbohydrates and amino acids. These results imply that ASSVd affects apple sapling growth by affecting physiological characteristics and metabolism of apple leaves. The study data may be useful for future investigations on the physiological mechanisms underlying apple tree responses to ASSVd.

摘要

苹果锈果类病毒(ASSVd)可感染苹果树并引发锈果症状。然而,幼树中相关的生理机制尚不清楚。在本研究中,对感染ASSVd和未感染的‘奥地斯’和‘十胜’苹果幼树进行了检测,以阐明ASSVd对苹果树生长、生理特性及叶片代谢组的影响。结果表明,嫁接后叶片ASSVd含量显著增加,并在第二年保持在较高水平。类病毒感染的幼树叶片大小、树高、茎粗、枝长和叶片光合效率均显著降低。响应ASSVd感染,‘奥地斯’中叶绿素a和b含量显著降低,但‘十胜’中则无变化。此外,类病毒感染的‘奥地斯’或‘十胜’叶片中氮、磷、钾、铁、锰和钙含量显著降低。同样,类病毒感染的幼树中过氧化氢酶(CAT)和过氧化物酶(POD)含量显著降低,但类病毒感染的‘十胜’幼树中超氧化物歧化酶(SOD)含量增加。在‘奥地斯’和‘十胜’叶片的代谢组分析中分别鉴定出15种和40种差异丰富的代谢物。具体而言,在类病毒感染的‘奥地斯’和‘十胜’样本中,L-2-氨基丁酸、6″-O-丙二酰黄豆苷和D-木糖含量增加,而香豆素含量降低。这些代谢物与异黄酮和苯丙烷类生物合成以及碳水化合物和氨基酸代谢有关。这些结果表明,ASSVd通过影响苹果叶片的生理特性和代谢来影响苹果幼树生长。该研究数据可能有助于未来对苹果树响应ASSVd的生理机制的研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dc5f/9998556/dcc0e5e7e180/fpls-14-1137630-g001.jpg

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