Xu Zhong-Tian, Weng Hai-Tao, Chen Jian-Ping, Zhang Chuan-Xi, Li Jun-Min, Li Yi-Yuan
State Key Laboratory for Managing Biotic and Chemical Threats to the Quality and Safety of Agro-Products, Key Laboratory of Biotechnology in Plant Protection of Ministry of Agriculture and Zhejiang Province, Institute of Plant Virology, Ningbo University, Ningbo 315211, China.
Plant Pathol J. 2024 Feb;40(1):73-82. doi: 10.5423/PPJ.OA.11.2023.0163. Epub 2024 Feb 1.
Gardenia (Gardenia jasminoides) is a popular and economically vital plant known for its ornamental and medicinal properties. Despite its widespread cultivation, there has been no documentation of plant viruses on gardenia yet. In the present study, gardenia leaves exhibiting symptoms of plant viral diseases were sampled and sequenced by both metatranscriptome and small RNA sequencing. As a consequence, bean common mosaic virus (BCMV) was identified in gardenia for the first time and named BCMV-gardenia. The full genome sequence of BCMV-gardenia is 10,054 nucleotides (nt) in length (excluding the poly (A) at the 3' termini), encoding a large polyprotein of 3,222 amino acids. Sequence analysis showed that the N-termini of the polyprotein encoded by BCMV-gardenia is less conserved when compared to other BCMV isolates, whereas the C-termini is the most conserved. Maximum likelihood phylogenetic analysis showed that BCMV-gardenia was clustered closely with other BCMV isolates identified outside the leguminous plants. Our results indicated that the majority of BCMV-gardenia virus-derived small interfering RNAs (vsiRNAs) were 21 nt and 22 nt, with 21 nt being more abundant. The first nucleotide at the 5' termini of vsiRNAs derived from BCMV-gardenia preferred U and A. The ratio of vsiRNAs derived from sense (51.1%) and antisense (48.9%) strands is approaching, and the distribution of vsiRNAs along the viral genome is generally even, with some hot spots forming in local regions. Our findings could provide new insights into the diversity, evolution, and host expansion of BCMV and contribute to the prevention and treatment of this virus.
栀子(Gardenia jasminoides)是一种广受欢迎且具有重要经济价值的植物,以其观赏和药用特性而闻名。尽管其广泛种植,但尚未有关于栀子植物病毒的文献记载。在本研究中,对表现出植物病毒病症状的栀子叶片进行了取样,并通过宏转录组和小RNA测序进行了测序。结果,首次在栀子中鉴定出菜豆普通花叶病毒(BCMV),并将其命名为BCMV-栀子。BCMV-栀子的全基因组序列长度为10,054个核苷酸(nt)(不包括3'末端的poly(A)),编码一个由3,222个氨基酸组成的大的多聚蛋白。序列分析表明,与其他BCMV分离株相比,BCMV-栀子编码的多聚蛋白的N末端保守性较低,而C末端是最保守的。最大似然系统发育分析表明,BCMV-栀子与在豆科植物以外鉴定出的其他BCMV分离株紧密聚类。我们的结果表明,大多数源自BCMV-栀子病毒的小干扰RNA(vsiRNAs)为21 nt和22 nt,其中21 nt更为丰富。源自BCMV-栀子的vsiRNAs的5'末端的第一个核苷酸偏好U和A。源自正义链(51.1%)和反义链(48.9%) 的vsiRNAs的比例接近,并且vsiRNAs沿病毒基因组的分布通常是均匀的,在局部区域形成一些热点。我们的发现可为BCMV的多样性、进化和宿主扩展提供新的见解,并有助于该病毒的预防和治疗。