Introgression and gene family contraction drive the evolution of lifestyle and host shifts of hypocrealean fungi
Hypocrealean fungi (Ascomycota) are known for their diversity of lifestyles. Their vital influences on agricultural and natural ecosystems have resulted in a number of sequenced genomes, which provide essential data for genomic analysis. Totally, 45 hypocrealean fungal genomes constructed a phylogen...
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doaj-1758e2ec3e854965b3b3bf7367ca05192020-11-25T00:47:00ZengTaylor & Francis GroupMycology2150-12032150-12112018-07-019317618810.1080/21501203.2018.14783331478333Introgression and gene family contraction drive the evolution of lifestyle and host shifts of hypocrealean fungiWeiwei Zhang0Xiaoling Zhang1Kuan Li2Chengshu Wang3Lei Cai4Wenying Zhuang5Meichun Xiang6Xingzhong Liu7Institute of Microbiology, Chinese Academy of SciencesInstitute of Microbiology, Chinese Academy of SciencesInstitute of Microbiology, Chinese Academy of SciencesInstitute of Plant Physiology and Ecology, Shanghai Institutes for Biological Sciences, Chinese Academy of SciencesInstitute of Microbiology, Chinese Academy of SciencesInstitute of Microbiology, Chinese Academy of SciencesInstitute of Microbiology, Chinese Academy of SciencesInstitute of Microbiology, Chinese Academy of SciencesHypocrealean fungi (Ascomycota) are known for their diversity of lifestyles. Their vital influences on agricultural and natural ecosystems have resulted in a number of sequenced genomes, which provide essential data for genomic analysis. Totally, 45 hypocrealean fungal genomes constructed a phylogeny. The phylogeny showed that plant pathogens in Nectriaceae diverged earliest, followed by animal pathogens in Cordycipitaceae, Ophiocordycipitaceae and Clavicipitaceae with mycoparasites in Hypocreaceae. Insect/nematode pathogens and grass endophytes in Clavicipitaceae diverged at last. Gene families associated with host-derived nutrients are significantly contracted in diverged lineages compared with the ancestral species. Introgression was detected in certain lineages of hypocrealean fungi, and the main functions of the genes located in the introgressed regions are involved in host recognition, transcriptional regulation, stress response and cell growth regulation. These results indicate that contraction of gene families and introgression might be main mechanisms to drive lifestyle differentiation and evolution and host shift of hypocrealean fungi.http://dx.doi.org/10.1080/21501203.2018.1478333Phylogenomicevolutionary processintrogressiongene contractionhost shift |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Weiwei Zhang Xiaoling Zhang Kuan Li Chengshu Wang Lei Cai Wenying Zhuang Meichun Xiang Xingzhong Liu |
spellingShingle |
Weiwei Zhang Xiaoling Zhang Kuan Li Chengshu Wang Lei Cai Wenying Zhuang Meichun Xiang Xingzhong Liu Introgression and gene family contraction drive the evolution of lifestyle and host shifts of hypocrealean fungi Mycology Phylogenomic evolutionary process introgression gene contraction host shift |
author_facet |
Weiwei Zhang Xiaoling Zhang Kuan Li Chengshu Wang Lei Cai Wenying Zhuang Meichun Xiang Xingzhong Liu |
author_sort |
Weiwei Zhang |
title |
Introgression and gene family contraction drive the evolution of lifestyle and host shifts of hypocrealean fungi |
title_short |
Introgression and gene family contraction drive the evolution of lifestyle and host shifts of hypocrealean fungi |
title_full |
Introgression and gene family contraction drive the evolution of lifestyle and host shifts of hypocrealean fungi |
title_fullStr |
Introgression and gene family contraction drive the evolution of lifestyle and host shifts of hypocrealean fungi |
title_full_unstemmed |
Introgression and gene family contraction drive the evolution of lifestyle and host shifts of hypocrealean fungi |
title_sort |
introgression and gene family contraction drive the evolution of lifestyle and host shifts of hypocrealean fungi |
publisher |
Taylor & Francis Group |
series |
Mycology |
issn |
2150-1203 2150-1211 |
publishDate |
2018-07-01 |
description |
Hypocrealean fungi (Ascomycota) are known for their diversity of lifestyles. Their vital influences on agricultural and natural ecosystems have resulted in a number of sequenced genomes, which provide essential data for genomic analysis. Totally, 45 hypocrealean fungal genomes constructed a phylogeny. The phylogeny showed that plant pathogens in Nectriaceae diverged earliest, followed by animal pathogens in Cordycipitaceae, Ophiocordycipitaceae and Clavicipitaceae with mycoparasites in Hypocreaceae. Insect/nematode pathogens and grass endophytes in Clavicipitaceae diverged at last. Gene families associated with host-derived nutrients are significantly contracted in diverged lineages compared with the ancestral species. Introgression was detected in certain lineages of hypocrealean fungi, and the main functions of the genes located in the introgressed regions are involved in host recognition, transcriptional regulation, stress response and cell growth regulation. These results indicate that contraction of gene families and introgression might be main mechanisms to drive lifestyle differentiation and evolution and host shift of hypocrealean fungi. |
topic |
Phylogenomic evolutionary process introgression gene contraction host shift |
url |
http://dx.doi.org/10.1080/21501203.2018.1478333 |
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