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感染番茄果实中番茄斑萎病毒的病理特征及基因多态性分析

Pathological Features and Genetic Polymorphism Analysis of Tomato Spotted Wilt Virus in Infected Tomato Fruit.

作者信息

Lv Junheng, Mo Yunrong, Deng Minghua, Xu Junqiang, Xu Bin, Li Xinyun, Li Jing, Jiang Caiqian, Zhou Ying, Wang Ziran, Yang Zhengan, Zhao Kai

机构信息

College of Landscape and Horticulture, Yunnan Agricultural University, Kunming 650201, China.

College of Food Science and Technology, Yunnan Agricultural University, Kunming 650201, China.

出版信息

Genes (Basel). 2023 Sep 12;14(9):1788. doi: 10.3390/genes14091788.

Abstract

An in-house tomato inbred line, YNAU335, was planted in a greenhouse in spring from 2014 to 2017, and showed immunity to tomato spotted wilt virus (TSWV). YNAU335 was infected with TSWV in the spring from 2018 to 2020, and disease was observed on the leaves, sepals, and fruits. In 2021 and 2022, YNAU335 was planted in spring in the same greenhouse, which was suspected of being infected with TSWV, and visible disease symptoms were observed on the fruits. Transmission electron microscopy, deep sequencing of small RNAs, and molecular mutation diagnosis were used to analyze the pathological features and genetic polymorphism of TSWV infecting tomato fruit. Typical TSWV virions were observed in the infected fruits, but not leaves from YNAU335 grown between 2021 and 2022, and cross-infection was very rarely observed. The number of mitochondria and chloroplasts increased, but the damage to the mitochondria was greater than that seen in the chloroplasts. Small RNA deep sequencing revealed the presence of multiple viral species in TSWV-infected and non-infected tomato samples grown between 2014-2022. Many virus species, including TSWV, which accounted for the largest proportion, were detected in the TSWV-infected tomato leaves and fruit. However, a variety of viruses other than TSWV were also detected in the non-infected tissues. The amino acids of TSWV nucleocapsid proteins (NPs) and movement proteins (MPs) from diseased fruits of YNAU335 picked in 2021-2022 were found to be very diverse. Compared with previously identified NPs and MPs from TSWV isolates, those found in this study could be divided into three types: non-resistance-breaking, resistance-breaking, and other isolates. The number of positive clones and a comparison with previously identified amino acid mutations suggested that mutation F at AA118 of the MP (GenBank OL310707) is likely the key to breaking the resistance to TSWV, and this mutation developed only in the infected fruit of YNAU335 grown in 2021 and 2022.

摘要

一个自有的番茄自交系YNAU335在2014年至2017年春季种植于温室中,对番茄斑萎病毒(TSWV)表现出免疫性。YNAU335在2018年至2020年春季感染了TSWV,在叶片、萼片和果实上观察到病症。2021年和2022年,YNAU335春季种植于同一疑似感染TSWV的温室中,在果实上观察到明显的病症。利用透射电子显微镜、小RNA深度测序和分子突变诊断来分析感染番茄果实的TSWV的病理特征和遗传多态性。在感染的果实中观察到典型的TSWV病毒粒子,但在2021年至2022年生长的YNAU335的叶片中未观察到,且很少观察到交叉感染。线粒体和叶绿体的数量增加,但线粒体的损伤大于叶绿体。小RNA深度测序揭示在2014 - 2022年生长的感染TSWV和未感染TSWV的番茄样本中存在多种病毒种类。在感染TSWV的番茄叶片和果实中检测到许多病毒种类,其中TSWV占比最大。然而,在未感染组织中也检测到了除TSWV之外的多种病毒。发现2021 - 2022年采摘的YNAU335患病果实中TSWV核衣壳蛋白(NPs)和运动蛋白(MPs)的氨基酸非常多样。与先前鉴定的TSWV分离株的NPs和MPs相比,本研究中发现的可分为三种类型:非抗性突破型、抗性突破型和其他分离株。阳性克隆数量以及与先前鉴定的氨基酸突变的比较表明,MP的AA118处的F突变(GenBank OL310707)可能是打破对TSWV抗性的关键,且这种突变仅在2021年和2022年生长的YNAU335的感染果实中出现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c405/10531454/581a2bb89275/genes-14-01788-g001.jpg

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