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病毒组学揭示了栽培和野生猕猴桃中的病毒多样性。

Viromics Reveals the Viral Diversity in Cultivated and Wild Kiwifruit.

机构信息

State Key Laboratory of Crop Stress Biology for Arid Areas, College of Plant Protection, Northwest A&F University, Yangling 712100, Shaanxi, China.

Key Laboratory of Plant Protection Resources and Pest Management, Ministry of Education, College of Plant Protection, Northwest A&F University, Yangling 712100, Shaanxi, China.

出版信息

Plant Dis. 2022 Dec;106(12):3120-3126. doi: 10.1094/PDIS-03-22-0669-RE. Epub 2022 Nov 20.

Abstract

China, the center of origin of kiwifruit, has the largest kiwifruit cultivation and production area worldwide, and Shaanxi Province is the major kiwifruit-growing region in China. However, our knowledge of kiwifruit viruses is largely skewed toward their pathology in cultivated orchards, and little is known about viral diversity in wild kiwifruit. To determine the viral diversity in cultivated and wild kiwifruit, 32 cultivated kiwifruit samples from Shaanxi Province and 30 wild kiwifruit samples from the Qinling Mountains were collected and subjected to high-throughput sequencing in this study. Eleven known viruses were found among the 32 cultivated kiwifruit samples, and 8 known viruses and 2 new viruses were found among the 30 wild kiwifruit samples. One of the two new viruses, Actinidia yellowing virus 3 (AcYV3), a member of the genus , may be associated with severe yellowing of kiwifruit leaves. In addition, more than 50 nearly full-length genome sequences of known viruses were obtained. The detection rates, recombination, and molecular variation of these viruses were further analyzed. The results obtained in this study provide valuable information for understanding the virome of cultivated and wild kiwifruit.

摘要

中国是猕猴桃的起源中心,拥有世界上最大的猕猴桃种植和生产面积,而陕西省是中国主要的猕猴桃种植区。然而,我们对猕猴桃病毒的了解主要集中在其在栽培果园中的病理学方面,而对野生猕猴桃中的病毒多样性知之甚少。为了确定栽培和野生猕猴桃中的病毒多样性,本研究采集了陕西省 32 个栽培猕猴桃样本和秦岭 30 个野生猕猴桃样本进行高通量测序。在 32 个栽培猕猴桃样本中发现了 11 种已知病毒,在 30 个野生猕猴桃样本中发现了 8 种已知病毒和 2 种新病毒。两种新病毒之一的猕猴桃黄化病毒 3(AcYV3),是 属的一个成员,可能与猕猴桃叶片严重黄化有关。此外,还获得了 50 多个已知病毒的近乎全长基因组序列。进一步分析了这些病毒的检测率、重组和分子变异。本研究的结果为了解栽培和野生猕猴桃的病毒组提供了有价值的信息。

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