Phylogenetic relationships of Rhizoctonia fungi within the Cantharellales.

Phylogenetic relationships of Rhizoctonia fungi within the Cantharellales.
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DOI:
10.1016/j.funbio.2016.01.012
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发表时间:
2016-04
期刊:
影响因子:
2.5
通讯作者:
Cubeta, Marc A.
Cubeta, Marc A.
中科院分区:
生物学3区
文献类型:
--
作者:
Gonzalez, Dolores;Rodriguez-Carres, Marianela;Boekhout, Teun;Stalpers, Joost;Kuramae, Eiko E.;Nakatani, Andreia K.;Vilgalys, Rytas;Cubeta, Marc A.

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利用核糖体DNA簇区域ITS-LSU、rpb 2、tef 1和atp 6的部分序列数据和165个分类单元rpb 2基因座的公开序列数据,对鸡油菌目(Cantharellales)内丝核菌属真菌的系统发育关系进行了研究。数据集进行了单独分析,并结合使用最大简约,最大似然和贝叶斯系统发育推断方法。所有的分析都支持Ceratobasidiaceae的单系性,该科包括Ceratobasidium和Thanatephorus属。多位点分析显示,10个支持单系群,与以前的分离到吻合组菌丝融合标准的基础上。这一分析,再加上一个更大的样本的165 rpb 2序列的真菌在鸡油菌目的分析支持的姐妹关系之间的Botryobasidiaceae和Ceratobasidiaceae和姐妹关系的Tulasnellaceae与其余的鸡油菌目。包括额外的序列数据没有澄清不一致观察到的丝核菌真菌在以前的研究的基础上分析的一个或多个基因的鸡油菌目。与这些真菌相关的生态和形态特征的多样性需要进一步的研究,重新评估同源和同源性状的性状进化。
Phylogenetic relationships of Rhizoctonia fungi within the order Cantharellales were studied using sequence data from portions of the ribosomal DNA cluster regions ITS-LSU, rpb2, tef1 and atp6 for 50 taxa, and public sequence data from the rpb2 locus for 165 taxa. Data sets were analyzed individually and combined using Maximum Parsimony, Maximum Likelihood and Bayesian Phylogenetic Inference methods. All analyses supported the monophyly of the family Ceratobasidiaceae, which comprises the genera Ceratobasidium and Thanatephorus. Multi-locus analysis revealed 10 well supported monophyletic groups that were consistent with previous separation into anastomosis groups based on hyphal fusion criteria. This analysis coupled with analyses of a larger sample of 165 rpb2 sequences of fungi in the Cantharellales supported a sister relationship between the Botryobasidiaceae and Ceratobasidiaceae and a sister relationship of the Tulasnellaceae with the rest of the Cantharellales. The inclusion of additional sequence data did not clarify incongruences observed in previous studies of Rhizoctonia fungi in the Cantharellales based on analyses of a single or multiple genes. The diversity of ecological and morphological characters associated with these fungi requires further investigation on character evolution for re-evaluating homologous and homoplasious characters.
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