The first two mitochondrial genomes for the genus Ramaria reveal mitochondrial genome evolution of Ramaria and phylogeny of Basidiomycota.

IF 5.2 1区 生物学 Q1 MYCOLOGY Ima Fungus Pub Date : 2022-09-13 DOI:10.1186/s43008-022-00100-7
Qiang Li, Lijiao Li, Ting Zhang, Peng Xiang, Qian Wu, Wenying Tu, Zhijie Bao, Liang Zou, Cheng Chen
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引用次数: 3

Abstract

In the present study, we assembled and analyzed the mitogenomes of two Ramaria species. The assembled mitogenomes of Ramaria cfr. rubripermanens and R. rubella were circularized, with sizes of 126,497 bp and 143,271 bp, respectively. Comparative mitogenome analysis showed that intron region contributed the most (contribution rate, 43.74%) to the size variations of Ramaria mitogenomes. The genetic contents, gene length, tRNAs, and codon usages of the two Ramaria mitogenomes varied greatly. In addition, the evolutionary rates of different core protein coding genes (PCGs) in Phallomycetidae mitogenomes varied. We detected large-scale gene rearrangements between Phallomycetidae mitogenomes, including gene displacement and tRNA doubling. A total of 4499 bp and 7746 bp aligned fragments were detected between the mitochondrial and nuclear genomes of R. cfr. rubripermanens and R. rubella, respectively, indicating possible gene transferring events. We further found frequent intron loss/gain and potential intron transfer events in Phallomycetidae mitogenomes during the evolution, and the mitogenomes of R. rubella contained a novel intron P44. Phylogenetic analyses using both Bayesian inference (BI) and Maximum Likelihood (ML) methods based on a combined mitochondrial gene dataset obtained an identical and well-supported phylogenetic tree for Basidiomycota, wherein R. cfr. rubripermanens and Turbinellus floccosus are sister species. This study served as the first report on mitogenomes from the genus Ramaria, which provides a basis for understanding the evolution, genetics, and taxonomy of this important fungal group.

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前两个线粒体基因组揭示了拉马属线粒体基因组的进化和担子菌门的系统发育。
在本研究中,我们组装并分析了两种拉玛属植物的有丝分裂基因组。拉马利菌有丝分裂基因组的组装。永久红唇和风疹红唇呈环状,大小分别为126,497 bp和143,271 bp。有丝分裂基因组比较分析表明,内含子区对拉马aria有丝分裂基因组大小变异的贡献最大,贡献率为43.74%。在遗传内容、基因长度、trna和密码子使用方面,两种拉玛属有丝分裂基因组差异很大。此外,不同核心蛋白编码基因(PCGs)在芽孢菌科有丝分裂基因组中的进化速率也存在差异。我们检测到疣菌科有丝分裂基因组之间的大规模基因重排,包括基因位移和tRNA加倍。在线粒体基因组和核基因组之间分别检测到4499 bp和7746 bp的序列片段。分别为永久红疹和风疹红疹,表明可能存在基因转移事件。我们进一步发现,在进化过程中,疣菌科有丝分裂基因组中存在频繁的内含子丢失/获得和潜在的内含子转移事件,并且风疹R.有丝分裂基因组中含有一个新的内含子P44。利用贝叶斯推理(BI)和最大似然(ML)方法,基于组合的线粒体基因数据集进行系统发育分析,获得了一个相同且得到良好支持的担子菌门系统发育树。永久红藻和絮状涡轮藻是姐妹种。本研究首次报道了Ramaria属的有丝分裂基因组,为了解这一重要真菌类群的进化、遗传和分类提供了基础。
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来源期刊
Ima Fungus
Ima Fungus Agricultural and Biological Sciences-Agricultural and Biological Sciences (miscellaneous)
CiteScore
11.00
自引率
3.70%
发文量
18
审稿时长
20 weeks
期刊介绍: The flagship journal of the International Mycological Association. IMA Fungus is an international, peer-reviewed, open-access, full colour, fast-track journal. Papers on any aspect of mycology are considered, and published on-line with final pagination after proofs have been corrected; they are then effectively published under the International Code of Nomenclature for algae, fungi, and plants. The journal strongly supports good practice policies, and requires voucher specimens or cultures to be deposited in a public collection with an online database, DNA sequences in GenBank, alignments in TreeBASE, and validating information on new scientific names, including typifications, to be lodged in MycoBank. News, meeting reports, personalia, research news, correspondence, book news, and information on forthcoming international meetings are included in each issue
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