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炭疽菌复合群线粒体基因组的比较分析:对与多种植物相互作用的真菌物种复合体进化的见解

Comparative analysis of the mitochondrial genomes of Colletotrichum gloeosporioides sensu lato: insights into the evolution of a fungal species complex interacting with diverse plants.

作者信息

Liang Xiaofei, Tian Xianglin, Liu Wenkui, Wei Tingyu, Wang Wei, Dong Qiuyue, Wang Bo, Meng Yanan, Zhang Rong, Gleason Mark L, Sun Guangyu

机构信息

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

Department of Plant Pathology and Microbiology, Iowa State University, Ames, IA, 50011, USA.

出版信息

BMC Genomics. 2017 Feb 15;18(1):171. doi: 10.1186/s12864-016-3480-x.

Abstract

BACKGROUND

The fungal species complex Colletotrichum gloeosporioides sensu lato contains over 20 plant-interacting species. These species exhibit different life styles (e.g., endophytes, foliar and fruit pathogens) and show considerable variation in host and tissue adaptation strategies. Accurate species delimitation in C. gloeosporioides s.l. is very challenging due to nascent lineage boundaries and phenotypic plasticity, which strongly impedes studies of the complex's host-interaction biology. In this study, we first sequenced and compared nine mitogenomes belonging to four C. gloeosporioides s.l. species lineages (C. gloeosporioides, C. fructicola, C. aenigma, and C. siamense s.l.), and evaluated the usefulness of mitogenome sequence in complementing prevailing nuclear markers for species delimitation.

RESULTS

The C. gloeosporioides s.l. mitogenomes ranged between 52,671 and 58,666 bp in size, and each contained an identical set of genes transcribed in the same direction. Compared with previously reported Colletotrichum mitogenomes, these mitogenomes were uniquely featured by: (1) significantly larger genome size due to richer intron content and longer intergenic region; (2) striking GC content elevation at the intergenic region; and (3) considerable intron content variation among different species lineages. Compared with nuclear DNA markers commonly used in phylogeny, the mitogenome nucleotide diversity was extremely low, yet the mitogenome alignment contained the highest number of parsimony informative sites, which allowed the generation of a high-resolution phylogeny recognizing all taxonomic lineages, including ones belonging to the very nascent C. siamense s.l. complex. The tree topology was highly congruent with the phylogeny based on nuclear marker concatenation except for lineages within C. siamense s.l. Further comparative phylogenetic analysis indicated that lineage-specific rapid divergence of GS and SOD2 markers confounded concatenation-based species relationship inference.

CONCLUSIONS

This study sheds light on the evolution of C. gloeosporioides s.l. mitogenomes and demonstrates that mitogenome sequence can complement prevailing nuclear markers in improving species delimitation accuracy. The mitogenome sequences reported will be valuable resources for further genetic studies with C. gloeosporioides s.l. and other Colletotrichum species.

摘要

背景

炭疽菌复合种(Colletotrichum gloeosporioides sensu lato)包含20多种与植物相互作用的物种。这些物种表现出不同的生活方式(例如内生菌、叶部和果实病原体),并且在宿主和组织适应策略上表现出相当大的差异。由于新形成的谱系边界和表型可塑性,准确界定炭疽菌复合种中的物种极具挑战性,这严重阻碍了对该复合种宿主相互作用生物学的研究。在本研究中,我们首先对属于炭疽菌复合种四个物种谱系(炭疽菌(C. gloeosporioides)、果生炭疽菌(C. fructicola)、神秘炭疽菌(C. aenigma)和暹罗炭疽菌复合种(C. siamense s.l.))的九个线粒体基因组进行了测序和比较,并评估了线粒体基因组序列在补充用于物种界定的现有核标记方面的效用。

结果

炭疽菌复合种的线粒体基因组大小在52,671至58,666 bp之间,每个都包含一组相同的以相同方向转录的基因。与先前报道的炭疽菌线粒体基因组相比,这些线粒体基因组具有以下独特特征:(1)由于内含子含量更丰富和基因间区域更长,基因组大小显著更大;(2)基因间区域的GC含量显著升高;(3)不同物种谱系之间的内含子含量存在相当大的差异。与系统发育中常用的核DNA标记相比,线粒体基因组的核苷酸多样性极低,但线粒体基因组比对包含的简约信息位点数量最多,这使得能够生成一个高分辨率的系统发育树,识别所有分类谱系,包括属于非常新形成的暹罗炭疽菌复合种的谱系。除了暹罗炭疽菌复合种中的谱系外,树形拓扑结构与基于核标记串联的系统发育高度一致。进一步的比较系统发育分析表明,GS和SOD2标记的谱系特异性快速分化混淆了基于串联的物种关系推断。

结论

本研究揭示了炭疽菌复合种线粒体基因组的进化,并证明线粒体基因组序列可以在提高物种界定准确性方面补充现有的核标记。所报道的线粒体基因组序列将成为进一步对炭疽菌复合种和其他炭疽菌物种进行遗传研究的宝贵资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1a48/5311727/d471c3a4e95b/12864_2016_3480_Fig1_HTML.jpg

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