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Several steps of lateral gene transfer followed by events of ‘birth-and-death’ evolution shaped a fungal sorbicillinoid biosynthetic gene cluster

Journal Article · · BMC Evolutionary Biology (Online)
 [1];  [2];  [2]
  1. Technische Univ. Wien (Austria). Inst. of Chemical Engineering. Research Area Biochemical Technology. Microbiology Group; DOE/OSTI
  2. Technische Univ. Wien (Austria). Inst. of Chemical Engineering. Research Area Biochemical Technology. Microbiology Group
Background: Sorbicillinoids are a family of complex cyclic polyketides produced by only a small number of distantly related ascomycete fungi such as Trichoderma (Sordariomycetes) and Penicillium (Eurotiomycetes). In T. reesei, they are synthesized by a gene cluster consisting of eight genes including two polyketide synthases (PKS). To reconstruct the evolutionary origin of this gene cluster, we examined the occurrence of these eight genes in ascomycetes. Results: A cluster comprising at least six of them was only found in Hypocreales (Acremonium chrysogenum, Ustilaginoidea virens, Trichoderma species from section Longibrachiatum) and in Penicillium rubens (Eurotiales). In addition, Colletotrichum graminicola contained the two pks (sor1 and sor2), but not the other sor genes. A. chrysogenum was the evolutionary eldest species in which sor1, sor2, sor3, sor4 and sor6 were present. Sor5 was gained by lateral gene transfer (LGT) from P. rubens. In the younger Hypocreales (U. virens, Trichoderma spp.), the cluster evolved by vertical transfer, but sor2 was lost and regained by LGT from C. graminicola. SorB (=sor2) and sorD (=sor4) were symplesiomorphic in P. rubens, whereas sorA, sorC and sorF were obtained by LGT from A. chrysogenum, and sorE by LGT from Pestalotiopsis fici (Xylariales). The sorbicillinoid gene cluster in Trichoderma section Longibrachiatum is under strong purifying selection. The T. reesei sor genes are expressed during fast vegetative growth, during antagonism of other fungi and regulated by the secondary metabolism regulator LAE1. Conclusions: Our findings pinpoint the evolution of the fungal sorbicillinoid biosynthesis gene cluster. The core cluster arose in early Hypocreales, and was complemented by LGT. During further speciation in the Hypocreales, it became subject to birth and death evolution in selected lineages. In P. rubrens (Eurotiales), two cluster genes were symplesiomorphic, and the whole cluster formed by LGT from at least two different fungal donors.
Research Organization:
Lawrence Berkeley National Laboratory (LBNL), Berkeley, CA (United States)
Sponsoring Organization:
USDOE Office of Science (SC), Biological and Environmental Research (BER). Biological Systems Science Division
Grant/Contract Number:
AC02-05CH11231
OSTI ID:
1626780
Journal Information:
BMC Evolutionary Biology (Online), Journal Name: BMC Evolutionary Biology (Online) Journal Issue: 1 Vol. 16; ISSN 1471-2148
Publisher:
BioMed CentralCopyright Statement
Country of Publication:
United States
Language:
English

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Cited By (7)

Analysis of the hybrid genomes of two field isolates of the soil-borne fungal species Verticillium longisporum journal January 2018
Engineering of the Filamentous Fungus Penicillium chrysogenum as Cell Factory for Natural Products journal November 2018
Additional file 2 of Sorbicillinoids hyperproduction without affecting the cellulosic enzyme production in Trichoderma reesei JNTR5 dataset January 2022
Evolutionary and functional patterns of shared gene neighbourhood in fungi journal September 2019
The diversity of Trichoderma species from soil in South Africa, with five new additions journal May 2018
Constitutive hyperproduction of sorbicillinoids in Trichoderma reesei ZC121 journal October 2018
Gene regulation associated with sexual development and female fertility in different isolates of Trichoderma reesei journal May 2018


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