Cargando…

Intricate Distribution Patterns of Six Cytotypes of Allium oleraceum at a Continental Scale: Niche Expansion and Innovation Followed by Niche Contraction With Increasing Ploidy Level

The establishment and success of polyploids are thought to often be facilitated by ecological niche differentiation from diploids. Unfortunately, most studies compared diploids and polyploids, ignoring variation in ploidy level in polyploids. To fill this gap, we performed a large-scale study of 11,...

Descripción completa

Detalles Bibliográficos
Autores principales: Duchoslav, Martin, Jandová, Michaela, Kobrlová, Lucie, Šafářová, Lenka, Brus, Jan, Vojtěchová, Kateřina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7755979/
https://www.ncbi.nlm.nih.gov/pubmed/33362819
http://dx.doi.org/10.3389/fpls.2020.591137
_version_ 1783626440660484096
author Duchoslav, Martin
Jandová, Michaela
Kobrlová, Lucie
Šafářová, Lenka
Brus, Jan
Vojtěchová, Kateřina
author_facet Duchoslav, Martin
Jandová, Michaela
Kobrlová, Lucie
Šafářová, Lenka
Brus, Jan
Vojtěchová, Kateřina
author_sort Duchoslav, Martin
collection PubMed
description The establishment and success of polyploids are thought to often be facilitated by ecological niche differentiation from diploids. Unfortunately, most studies compared diploids and polyploids, ignoring variation in ploidy level in polyploids. To fill this gap, we performed a large-scale study of 11,163 samples from 1,283 populations of the polyploid perennial geophyte Allium oleraceum with reported mixed-ploidy populations, revealed distribution ranges of cytotypes, assessed their niches and explored the pattern of niche change with increasing ploidy level. Altogether, six ploidy levels (3x−8x) were identified. The most common were pentaploids (53.6%) followed by hexaploids (22.7%) and tetraploids (21.6%). Higher cytotype diversity was found at lower latitudes than at higher latitudes (>52° N), where only tetraploids and pentaploids occurred. We detected 17.4% of mixed-ploidy populations, usually as a combination of two, rarely of three, cytotypes. The majority of mixed-ploidy populations were found in zones of sympatry of the participating cytotypes, suggesting they have arisen through migration (secondary contact zone). Using coarse-grained variables (climate, soil), we found evidence of both niche expansion and innovation in tetraploids related to triploids, whereas higher ploidy levels showed almost zero niche expansion, but a trend of increased niche unfilling of tetraploids. Niche unfilling in higher ploidy levels was caused by a contraction of niche envelopes toward lower continentality of the climate and resulted in a gradual decrease of niche breadth and a gradual shift in niche optima. Field-recorded data indicated wide habitat breadth of tetraploids and pentaploids, but also a pattern of increasing synanthropy in higher ploidy levels. Wide niche breadth of tetra- and pentaploids might be related to their multiple origins from different environmental conditions, higher “age”, and retained sexuality, which likely preserve their adaptive potential. In contrast, other cytotypes with narrower niches are mostly asexual, probably originating from a limited range of contrasting environments. Persistence of local ploidy mixtures could be enabled by the perenniality of A. oleraceum and its prevalence of vegetative reproduction, facilitating the establishment and decreasing exclusion of minority cytotype due to its reproductive costs. Vegetative reproduction might also significantly accelerate colonization of new areas, including recolonization of previously glaciated areas.
format Online
Article
Text
id pubmed-7755979
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-77559792020-12-24 Intricate Distribution Patterns of Six Cytotypes of Allium oleraceum at a Continental Scale: Niche Expansion and Innovation Followed by Niche Contraction With Increasing Ploidy Level Duchoslav, Martin Jandová, Michaela Kobrlová, Lucie Šafářová, Lenka Brus, Jan Vojtěchová, Kateřina Front Plant Sci Plant Science The establishment and success of polyploids are thought to often be facilitated by ecological niche differentiation from diploids. Unfortunately, most studies compared diploids and polyploids, ignoring variation in ploidy level in polyploids. To fill this gap, we performed a large-scale study of 11,163 samples from 1,283 populations of the polyploid perennial geophyte Allium oleraceum with reported mixed-ploidy populations, revealed distribution ranges of cytotypes, assessed their niches and explored the pattern of niche change with increasing ploidy level. Altogether, six ploidy levels (3x−8x) were identified. The most common were pentaploids (53.6%) followed by hexaploids (22.7%) and tetraploids (21.6%). Higher cytotype diversity was found at lower latitudes than at higher latitudes (>52° N), where only tetraploids and pentaploids occurred. We detected 17.4% of mixed-ploidy populations, usually as a combination of two, rarely of three, cytotypes. The majority of mixed-ploidy populations were found in zones of sympatry of the participating cytotypes, suggesting they have arisen through migration (secondary contact zone). Using coarse-grained variables (climate, soil), we found evidence of both niche expansion and innovation in tetraploids related to triploids, whereas higher ploidy levels showed almost zero niche expansion, but a trend of increased niche unfilling of tetraploids. Niche unfilling in higher ploidy levels was caused by a contraction of niche envelopes toward lower continentality of the climate and resulted in a gradual decrease of niche breadth and a gradual shift in niche optima. Field-recorded data indicated wide habitat breadth of tetraploids and pentaploids, but also a pattern of increasing synanthropy in higher ploidy levels. Wide niche breadth of tetra- and pentaploids might be related to their multiple origins from different environmental conditions, higher “age”, and retained sexuality, which likely preserve their adaptive potential. In contrast, other cytotypes with narrower niches are mostly asexual, probably originating from a limited range of contrasting environments. Persistence of local ploidy mixtures could be enabled by the perenniality of A. oleraceum and its prevalence of vegetative reproduction, facilitating the establishment and decreasing exclusion of minority cytotype due to its reproductive costs. Vegetative reproduction might also significantly accelerate colonization of new areas, including recolonization of previously glaciated areas. Frontiers Media S.A. 2020-12-09 /pmc/articles/PMC7755979/ /pubmed/33362819 http://dx.doi.org/10.3389/fpls.2020.591137 Text en Copyright © 2020 Duchoslav, Jandová, Kobrlová, Šafářová, Brus and Vojtěchová. http://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 Plant Science
Duchoslav, Martin
Jandová, Michaela
Kobrlová, Lucie
Šafářová, Lenka
Brus, Jan
Vojtěchová, Kateřina
Intricate Distribution Patterns of Six Cytotypes of Allium oleraceum at a Continental Scale: Niche Expansion and Innovation Followed by Niche Contraction With Increasing Ploidy Level
title Intricate Distribution Patterns of Six Cytotypes of Allium oleraceum at a Continental Scale: Niche Expansion and Innovation Followed by Niche Contraction With Increasing Ploidy Level
title_full Intricate Distribution Patterns of Six Cytotypes of Allium oleraceum at a Continental Scale: Niche Expansion and Innovation Followed by Niche Contraction With Increasing Ploidy Level
title_fullStr Intricate Distribution Patterns of Six Cytotypes of Allium oleraceum at a Continental Scale: Niche Expansion and Innovation Followed by Niche Contraction With Increasing Ploidy Level
title_full_unstemmed Intricate Distribution Patterns of Six Cytotypes of Allium oleraceum at a Continental Scale: Niche Expansion and Innovation Followed by Niche Contraction With Increasing Ploidy Level
title_short Intricate Distribution Patterns of Six Cytotypes of Allium oleraceum at a Continental Scale: Niche Expansion and Innovation Followed by Niche Contraction With Increasing Ploidy Level
title_sort intricate distribution patterns of six cytotypes of allium oleraceum at a continental scale: niche expansion and innovation followed by niche contraction with increasing ploidy level
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7755979/
https://www.ncbi.nlm.nih.gov/pubmed/33362819
http://dx.doi.org/10.3389/fpls.2020.591137
work_keys_str_mv AT duchoslavmartin intricatedistributionpatternsofsixcytotypesofalliumoleraceumatacontinentalscalenicheexpansionandinnovationfollowedbynichecontractionwithincreasingploidylevel
AT jandovamichaela intricatedistributionpatternsofsixcytotypesofalliumoleraceumatacontinentalscalenicheexpansionandinnovationfollowedbynichecontractionwithincreasingploidylevel
AT kobrlovalucie intricatedistributionpatternsofsixcytotypesofalliumoleraceumatacontinentalscalenicheexpansionandinnovationfollowedbynichecontractionwithincreasingploidylevel
AT safarovalenka intricatedistributionpatternsofsixcytotypesofalliumoleraceumatacontinentalscalenicheexpansionandinnovationfollowedbynichecontractionwithincreasingploidylevel
AT brusjan intricatedistributionpatternsofsixcytotypesofalliumoleraceumatacontinentalscalenicheexpansionandinnovationfollowedbynichecontractionwithincreasingploidylevel
AT vojtechovakaterina intricatedistributionpatternsofsixcytotypesofalliumoleraceumatacontinentalscalenicheexpansionandinnovationfollowedbynichecontractionwithincreasingploidylevel