Cargando…

Mining Indole Alkaloid Synthesis Gene Clusters from Genomes of 53 Claviceps Strains Revealed Redundant Gene Copies and an Approximate Evolutionary Hourglass Model

Ergot fungi (Claviceps spp.) are infamous for producing sclerotia containing a wide spectrum of ergot alkaloids (EA) toxic to humans and animals, making them nefarious villains in the agricultural and food industries, but also treasures for pharmaceuticals. In addition to three classes of EAs, sever...

Descripción completa

Detalles Bibliográficos
Autores principales: Liu, Miao, Findlay, Wendy, Dettman, Jeremy, Wyka, Stephen A., Broders, Kirk, Shoukouhi, Parivash, Dadej, Kasia, Kolařík, Miroslav, Basnyat, Arpeace, Menzies, Jim G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8625505/
https://www.ncbi.nlm.nih.gov/pubmed/34822583
http://dx.doi.org/10.3390/toxins13110799
_version_ 1784606437625823232
author Liu, Miao
Findlay, Wendy
Dettman, Jeremy
Wyka, Stephen A.
Broders, Kirk
Shoukouhi, Parivash
Dadej, Kasia
Kolařík, Miroslav
Basnyat, Arpeace
Menzies, Jim G.
author_facet Liu, Miao
Findlay, Wendy
Dettman, Jeremy
Wyka, Stephen A.
Broders, Kirk
Shoukouhi, Parivash
Dadej, Kasia
Kolařík, Miroslav
Basnyat, Arpeace
Menzies, Jim G.
author_sort Liu, Miao
collection PubMed
description Ergot fungi (Claviceps spp.) are infamous for producing sclerotia containing a wide spectrum of ergot alkaloids (EA) toxic to humans and animals, making them nefarious villains in the agricultural and food industries, but also treasures for pharmaceuticals. In addition to three classes of EAs, several species also produce paspaline-derived indole diterpenes (IDT) that cause ataxia and staggers in livestock. Furthermore, two other types of alkaloids, i.e., loline (LOL) and peramine (PER), found in Epichloë spp., close relatives of Claviceps, have shown beneficial effects on host plants without evidence of toxicity to mammals. The gene clusters associated with the production of these alkaloids are known. We examined genomes of 53 strains of 19 Claviceps spp. to screen for these genes, aiming to understand the evolutionary patterns of these genes across the genus through phylogenetic and DNA polymorphism analyses. Our results showed (1) varied numbers of eas genes in C. sect. Claviceps and sect. Pusillae, none in sect. Citrinae, six idt/ltm genes in sect. Claviceps (except four in C. cyperi), zero to one partial (idtG) in sect. Pusillae, and four in sect. Citrinae, (2) two to three copies of dmaW, easE, easF, idt/ltmB, itd/ltmQ in sect. Claviceps, (3) frequent gene gains and losses, and (4) an evolutionary hourglass pattern in the intra-specific eas gene diversity and divergence in C. purpurea.
format Online
Article
Text
id pubmed-8625505
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-86255052021-11-27 Mining Indole Alkaloid Synthesis Gene Clusters from Genomes of 53 Claviceps Strains Revealed Redundant Gene Copies and an Approximate Evolutionary Hourglass Model Liu, Miao Findlay, Wendy Dettman, Jeremy Wyka, Stephen A. Broders, Kirk Shoukouhi, Parivash Dadej, Kasia Kolařík, Miroslav Basnyat, Arpeace Menzies, Jim G. Toxins (Basel) Article Ergot fungi (Claviceps spp.) are infamous for producing sclerotia containing a wide spectrum of ergot alkaloids (EA) toxic to humans and animals, making them nefarious villains in the agricultural and food industries, but also treasures for pharmaceuticals. In addition to three classes of EAs, several species also produce paspaline-derived indole diterpenes (IDT) that cause ataxia and staggers in livestock. Furthermore, two other types of alkaloids, i.e., loline (LOL) and peramine (PER), found in Epichloë spp., close relatives of Claviceps, have shown beneficial effects on host plants without evidence of toxicity to mammals. The gene clusters associated with the production of these alkaloids are known. We examined genomes of 53 strains of 19 Claviceps spp. to screen for these genes, aiming to understand the evolutionary patterns of these genes across the genus through phylogenetic and DNA polymorphism analyses. Our results showed (1) varied numbers of eas genes in C. sect. Claviceps and sect. Pusillae, none in sect. Citrinae, six idt/ltm genes in sect. Claviceps (except four in C. cyperi), zero to one partial (idtG) in sect. Pusillae, and four in sect. Citrinae, (2) two to three copies of dmaW, easE, easF, idt/ltmB, itd/ltmQ in sect. Claviceps, (3) frequent gene gains and losses, and (4) an evolutionary hourglass pattern in the intra-specific eas gene diversity and divergence in C. purpurea. MDPI 2021-11-13 /pmc/articles/PMC8625505/ /pubmed/34822583 http://dx.doi.org/10.3390/toxins13110799 Text en © 2021 by https://creativecommons.org/licenses/by/4.0/Her Majesty the Queen in Right of Canada, as represented by Agriculture and Agri Food Canada. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Liu, Miao
Findlay, Wendy
Dettman, Jeremy
Wyka, Stephen A.
Broders, Kirk
Shoukouhi, Parivash
Dadej, Kasia
Kolařík, Miroslav
Basnyat, Arpeace
Menzies, Jim G.
Mining Indole Alkaloid Synthesis Gene Clusters from Genomes of 53 Claviceps Strains Revealed Redundant Gene Copies and an Approximate Evolutionary Hourglass Model
title Mining Indole Alkaloid Synthesis Gene Clusters from Genomes of 53 Claviceps Strains Revealed Redundant Gene Copies and an Approximate Evolutionary Hourglass Model
title_full Mining Indole Alkaloid Synthesis Gene Clusters from Genomes of 53 Claviceps Strains Revealed Redundant Gene Copies and an Approximate Evolutionary Hourglass Model
title_fullStr Mining Indole Alkaloid Synthesis Gene Clusters from Genomes of 53 Claviceps Strains Revealed Redundant Gene Copies and an Approximate Evolutionary Hourglass Model
title_full_unstemmed Mining Indole Alkaloid Synthesis Gene Clusters from Genomes of 53 Claviceps Strains Revealed Redundant Gene Copies and an Approximate Evolutionary Hourglass Model
title_short Mining Indole Alkaloid Synthesis Gene Clusters from Genomes of 53 Claviceps Strains Revealed Redundant Gene Copies and an Approximate Evolutionary Hourglass Model
title_sort mining indole alkaloid synthesis gene clusters from genomes of 53 claviceps strains revealed redundant gene copies and an approximate evolutionary hourglass model
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8625505/
https://www.ncbi.nlm.nih.gov/pubmed/34822583
http://dx.doi.org/10.3390/toxins13110799
work_keys_str_mv AT liumiao miningindolealkaloidsynthesisgeneclustersfromgenomesof53clavicepsstrainsrevealedredundantgenecopiesandanapproximateevolutionaryhourglassmodel
AT findlaywendy miningindolealkaloidsynthesisgeneclustersfromgenomesof53clavicepsstrainsrevealedredundantgenecopiesandanapproximateevolutionaryhourglassmodel
AT dettmanjeremy miningindolealkaloidsynthesisgeneclustersfromgenomesof53clavicepsstrainsrevealedredundantgenecopiesandanapproximateevolutionaryhourglassmodel
AT wykastephena miningindolealkaloidsynthesisgeneclustersfromgenomesof53clavicepsstrainsrevealedredundantgenecopiesandanapproximateevolutionaryhourglassmodel
AT broderskirk miningindolealkaloidsynthesisgeneclustersfromgenomesof53clavicepsstrainsrevealedredundantgenecopiesandanapproximateevolutionaryhourglassmodel
AT shoukouhiparivash miningindolealkaloidsynthesisgeneclustersfromgenomesof53clavicepsstrainsrevealedredundantgenecopiesandanapproximateevolutionaryhourglassmodel
AT dadejkasia miningindolealkaloidsynthesisgeneclustersfromgenomesof53clavicepsstrainsrevealedredundantgenecopiesandanapproximateevolutionaryhourglassmodel
AT kolarikmiroslav miningindolealkaloidsynthesisgeneclustersfromgenomesof53clavicepsstrainsrevealedredundantgenecopiesandanapproximateevolutionaryhourglassmodel
AT basnyatarpeace miningindolealkaloidsynthesisgeneclustersfromgenomesof53clavicepsstrainsrevealedredundantgenecopiesandanapproximateevolutionaryhourglassmodel
AT menziesjimg miningindolealkaloidsynthesisgeneclustersfromgenomesof53clavicepsstrainsrevealedredundantgenecopiesandanapproximateevolutionaryhourglassmodel