Suppr超能文献

链格孢菌种群内的离散谱系:利用新的高变位点进行鉴定并得到形态特征的支持。

Discrete lineages within Alternaria alternata species group: Identification using new highly variable loci and support from morphological characters.

作者信息

Armitage Andrew D, Barbara Dez J, Harrison Richard J, Lane Charles R, Sreenivasaprasad Surapareddy, Woodhall James W, Clarkson John P

机构信息

University of Warwick, Wellesbourne, Warwick, CV35 9EF, UK.

University of Warwick, Wellesbourne, Warwick, CV35 9EF, UK.

出版信息

Fungal Biol. 2015 Nov;119(11):994-1006. doi: 10.1016/j.funbio.2015.06.012. Epub 2015 Jul 17.

Abstract

The Alternaria alternata species group is ubiquitous in the environment acting as saprotrophs, human allergens, and plant pathogens. Many morphological species have been described within the group and it is unclear whether these represent re-descriptions of the same species or discrete evolutionary taxa. Sequencing of five loci identified three major lineages within the A. alternata species group. These loci included three new phylogenetic loci (TMA22, PGS1, and REV3) identified as highly variable based on publically available genome sequence data for Dothideomycete species. Lineages were identified as A. alternata ssp. arborescens, A. alternata ssp. tenuissima, and A. alternata ssp. gaisen in accordance with the placement of reference isolates. The phylogenetic results were supported by morphological analysis, which differentiated strains in A. alternata ssp. arborescens and A. alternata ssp. tenuissima and also aligned with previous morphological species descriptions for A. arborescens and A. tenuissima. However, phylogenetic analysis placed the morphologically described species A. alternata and A. mali within the A. alternata ssp. tenuissima and did not support them as discrete taxa. As A. alternata are of phytosanitary importance, the molecular loci used in this study offer new opportunities for molecular identification of isolates by national plant protection organizations.

摘要

链格孢菌物种组在环境中普遍存在,可作为腐生菌、人类过敏原和植物病原体。该组内已描述了许多形态种,目前尚不清楚这些形态种是同一物种的重新描述还是不同的进化分类单元。对五个基因座的测序确定了链格孢菌物种组内的三个主要谱系。这些基因座包括根据座囊菌纲物种公开可用的基因组序列数据确定为高度可变的三个新的系统发育基因座(TMA22、PGS1和REV3)。根据参考分离株的位置,谱系被鉴定为树状链格孢菌、细极链格孢菌和胜红链格孢菌。系统发育结果得到了形态学分析的支持,形态学分析区分了树状链格孢菌和细极链格孢菌中的菌株,并且也与之前对树状链格孢菌和细极链格孢菌的形态种描述一致。然而,系统发育分析将形态学上描述的链格孢菌和苹果链格孢菌置于细极链格孢菌内,并不支持它们作为独立的分类单元。由于链格孢菌具有植物检疫重要性,本研究中使用的分子基因座为国家植物保护组织对分离株进行分子鉴定提供了新的机会。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验