Open access · CC-BY
via OpenAlex
Genome Sequencing and Comparative Transcriptomics of the Model Entomopathogenic Fungi Metarhizium anisopliae and M. acridum
Qiang Gao, Kai Jin, Sheng‐Hua Ying, Yongjun Zhang, Guohua Xiao, Yanfang Shang, Zhibing Duan, Xiao Hu, Xueqin Xie, Gang Zhou, Guoxiong Peng, Zhibing Luo, Wei Huang, Bing Wang, Weiguo Fang
PLoS Genetics · 2011 · ▲ 675 citations
Abstract
Metarhizium spp. are being used as environmentally friendly alternatives to chemical insecticides, as model systems for studying insect-fungus interactions, and as a resource of genes for biotechnology. We present a comparative analysis of the genome sequences of the broad-spectrum insect pathogen Metarhizium anisopliae and the acridid-specific M. acridum. Whole-genome analyses indicate that the genome structures of these two species are highly syntenic and suggest that the genus Metarhizium evolved from plant endophytes or pathogens. Both M. anisopliae and M. acridum have a strikingly larger proportion of genes encoding secreted proteins than other fungi, while ~30% of these have no functionally characterized homologs, suggesting hitherto unsuspected interactions between fungal pathogens and insects. The analysis of transposase genes provided evidence of repeat-induced point mutations occurring in M. acridum but not in M. anisopliae. With the help of pathogen-host interaction gene database, ~16% of Metarhizium genes were identified that are similar to experimentally verified genes involved in pathogenicity in other fungi, particularly plant pathogens. However, relative to M. acridum, M. anisopliae has evolved with many expanded gene families of proteases, chitinases, cytochrome P450s, polyketide synthases, and nonribosomal peptide synthetases for cuticle-degradation, detoxification, and toxin biosynthesis that may facilitate its ability to adapt to heterogeneous environments. Transcriptional analysis of both fungi during early infection processes provided further insights into the genes and pathways involved in infectivity and specificity. Of particular note, M. acridum transcribed distinct G-protein coupled receptors on cuticles from locusts (the natural hosts) and cockroaches, whereas M. anisopliae transcribed the same receptor on both hosts. This study will facilitate the identification of virulence genes and the development of improved biocontrol strains with customized properties.
◌ CITATION ONLY
Full text is not openly licensed for redistribution here. Read it at the source:
Provenance
- Source
- OpenAlex
- DOI
- 10.1371/journal.pgen.1001264
- Canonical
- link ↗
- Fetched
- 2026-07-25 MST
Cite this
APA
Gao, Q., Jin, K., Ying, S., Zhang, Y., Xiao, G., Shang, Y., Duan, Z., Hu, X., Xie, X., Zhou, G., Peng, G., Luo, Z., Huang, W., Wang, B., Fang, W., Wang, S., Zhong, Y., Ma, L., Leger, R.J.S., & Zhao, G. (2011). Genome Sequencing and Comparative Transcriptomics of the Model Entomopathogenic Fungi Metarhizium anisopliae and M. acridum. <em>PLoS Genetics</em>. https://doi.org/10.1371/journal.pgen.1001264
Vancouver
Gao Q, Jin K, Ying S, Zhang Y, Xiao G, Shang Y, et al. Genome Sequencing and Comparative Transcriptomics of the Model Entomopathogenic Fungi Metarhizium anisopliae and M. acridum. PLoS Genetics. 2011. doi:10.1371/journal.pgen.1001264.
BibTeX
@article{qiang2011Genome,
title = {Genome Sequencing and Comparative Transcriptomics of the Model Entomopathogenic Fungi Metarhizium anisopliae and M. acridum},
author = {Qiang Gao and Kai Jin and Sheng‐Hua Ying and Yongjun Zhang and Guohua Xiao and Yanfang Shang and Zhibing Duan and Xiao Hu and Xueqin Xie and Gang Zhou and Guoxiong Peng and Zhibing Luo and Wei Huang and Bing Wang and Weiguo Fang and Sibao Wang and Yi Zhong and Li‐Jun Ma and Raymond J. St. Leger and Guoping Zhao and Yan Pei and Ming‐Guang Feng and Yuxian Xia and Chengshu Wang},
journal = {PLoS Genetics},
year = {2011},
doi = {10.1371/journal.pgen.1001264},
}
Research neighborhood
References, citing works, and semantically nearest findings. Click a node to open it.
Related findings
PLoS Biology 2007
Open access · CC-BY
Epigenetic Natural Variation in Arabidopsis thaliana
Nature 2018
Open access · CC-BY
The landscape of genomic alterations across childhood cancers
Nature Communications 2018
Open access · CC-BY
Circulating tumor DNA analysis depicts subclonal architecture and genomic evolution of small cell lung cancer
bioRxiv (Cold Spring Harbor Laboratory) 2020
Preprint · OA
The genome of North American beaver provides insights into the mechanisms of its longevity and cancer resistance
New Phytologist 2018
Open access · OA
Comparative genomics and transcriptomics depict ericoid mycorrhizal fungi as versatile saprotrophs and plant mutualists
Frontiers in Oncology 2013
Open access · CC-BY