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Hanseniaspora smithiae sp. nov., a Novel Apiculate Yeast Species From Patagonian Forests That Lacks the Typical Genomic Domestication Signatures for Fermentative Environments

During a survey of Nothofagus trees and their parasitic fungi in Andean Patagonia (Argentina), genetically distinct strains of Hanseniaspora were obtained from the sugar-containing stromata of parasitic Cyttaria spp. Phylogenetic analyses based on the single-gene sequences (encoding rRNA and actin)...

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Autores principales: Čadež, Neža, Bellora, Nicolas, Ulloa, Ricardo, Tome, Miha, Petković, Hrvoje, Groenewald, Marizeth, Hittinger, Chris Todd, Libkind, Diego
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8334367/
https://www.ncbi.nlm.nih.gov/pubmed/34367085
http://dx.doi.org/10.3389/fmicb.2021.679894
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author Čadež, Neža
Bellora, Nicolas
Ulloa, Ricardo
Tome, Miha
Petković, Hrvoje
Groenewald, Marizeth
Hittinger, Chris Todd
Libkind, Diego
author_facet Čadež, Neža
Bellora, Nicolas
Ulloa, Ricardo
Tome, Miha
Petković, Hrvoje
Groenewald, Marizeth
Hittinger, Chris Todd
Libkind, Diego
author_sort Čadež, Neža
collection PubMed
description During a survey of Nothofagus trees and their parasitic fungi in Andean Patagonia (Argentina), genetically distinct strains of Hanseniaspora were obtained from the sugar-containing stromata of parasitic Cyttaria spp. Phylogenetic analyses based on the single-gene sequences (encoding rRNA and actin) or on conserved, single-copy, orthologous genes from genome sequence assemblies revealed that these strains represent a new species closely related to Hanseniaspora valbyensis. Additionally, delimitation of this novel species was supported by genetic distance calculations using overall genome relatedness indices (OGRI) between the novel taxon and its closest relatives. To better understand the mode of speciation in Hanseniaspora, we examined genes that were retained or lost in the novel species in comparison to its closest relatives. These analyses show that, during diversification, this novel species and its closest relatives, H. valbyensis and Hanseniaspora jakobsenii, lost mitochondrial and other genes involved in the generation of precursor metabolites and energy, which could explain their slower growth and higher ethanol yields under aerobic conditions. Similarly, Hanseniaspora mollemarum lost the ability to sporulate, along with genes that are involved in meiosis and mating. Based on these findings, a formal description of the novel yeast species Hanseniaspora smithiae sp. nov. is proposed, with CRUB 1602(H) as the holotype.
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spelling pubmed-83343672021-08-05 Hanseniaspora smithiae sp. nov., a Novel Apiculate Yeast Species From Patagonian Forests That Lacks the Typical Genomic Domestication Signatures for Fermentative Environments Čadež, Neža Bellora, Nicolas Ulloa, Ricardo Tome, Miha Petković, Hrvoje Groenewald, Marizeth Hittinger, Chris Todd Libkind, Diego Front Microbiol Microbiology During a survey of Nothofagus trees and their parasitic fungi in Andean Patagonia (Argentina), genetically distinct strains of Hanseniaspora were obtained from the sugar-containing stromata of parasitic Cyttaria spp. Phylogenetic analyses based on the single-gene sequences (encoding rRNA and actin) or on conserved, single-copy, orthologous genes from genome sequence assemblies revealed that these strains represent a new species closely related to Hanseniaspora valbyensis. Additionally, delimitation of this novel species was supported by genetic distance calculations using overall genome relatedness indices (OGRI) between the novel taxon and its closest relatives. To better understand the mode of speciation in Hanseniaspora, we examined genes that were retained or lost in the novel species in comparison to its closest relatives. These analyses show that, during diversification, this novel species and its closest relatives, H. valbyensis and Hanseniaspora jakobsenii, lost mitochondrial and other genes involved in the generation of precursor metabolites and energy, which could explain their slower growth and higher ethanol yields under aerobic conditions. Similarly, Hanseniaspora mollemarum lost the ability to sporulate, along with genes that are involved in meiosis and mating. Based on these findings, a formal description of the novel yeast species Hanseniaspora smithiae sp. nov. is proposed, with CRUB 1602(H) as the holotype. Frontiers Media S.A. 2021-07-21 /pmc/articles/PMC8334367/ /pubmed/34367085 http://dx.doi.org/10.3389/fmicb.2021.679894 Text en Copyright © 2021 Čadež, Bellora, Ulloa, Tome, Petković, Groenewald, Hittinger and Libkind. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Microbiology
Čadež, Neža
Bellora, Nicolas
Ulloa, Ricardo
Tome, Miha
Petković, Hrvoje
Groenewald, Marizeth
Hittinger, Chris Todd
Libkind, Diego
Hanseniaspora smithiae sp. nov., a Novel Apiculate Yeast Species From Patagonian Forests That Lacks the Typical Genomic Domestication Signatures for Fermentative Environments
title Hanseniaspora smithiae sp. nov., a Novel Apiculate Yeast Species From Patagonian Forests That Lacks the Typical Genomic Domestication Signatures for Fermentative Environments
title_full Hanseniaspora smithiae sp. nov., a Novel Apiculate Yeast Species From Patagonian Forests That Lacks the Typical Genomic Domestication Signatures for Fermentative Environments
title_fullStr Hanseniaspora smithiae sp. nov., a Novel Apiculate Yeast Species From Patagonian Forests That Lacks the Typical Genomic Domestication Signatures for Fermentative Environments
title_full_unstemmed Hanseniaspora smithiae sp. nov., a Novel Apiculate Yeast Species From Patagonian Forests That Lacks the Typical Genomic Domestication Signatures for Fermentative Environments
title_short Hanseniaspora smithiae sp. nov., a Novel Apiculate Yeast Species From Patagonian Forests That Lacks the Typical Genomic Domestication Signatures for Fermentative Environments
title_sort hanseniaspora smithiae sp. nov., a novel apiculate yeast species from patagonian forests that lacks the typical genomic domestication signatures for fermentative environments
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8334367/
https://www.ncbi.nlm.nih.gov/pubmed/34367085
http://dx.doi.org/10.3389/fmicb.2021.679894
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