Clonal plasticity and diversity facilitates the adaptation of Rhododendron aureum Georgi to alpine environment.

Four small oval populations and five large intensive populations of Rhododendron aureum growing at the alpine in Changbai Mountain (China) were studied in two types of habitat (in the tundra and in Betula ermanii forest). Identification and delimitation of genets were inferred from excavation in sma...

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Main Authors: Xiaolong Wang, Wei Zhao, Lin Li, Jian You, Biao Ni, Xia Chen
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2018-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC5944948?pdf=render
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spelling doaj-a0ce7a1476a84f6c91af9a63c8246dc02020-11-25T01:24:06ZengPublic Library of Science (PLoS)PLoS ONE1932-62032018-01-01135e019708910.1371/journal.pone.0197089Clonal plasticity and diversity facilitates the adaptation of Rhododendron aureum Georgi to alpine environment.Xiaolong WangWei ZhaoLin LiJian YouBiao NiXia ChenFour small oval populations and five large intensive populations of Rhododendron aureum growing at the alpine in Changbai Mountain (China) were studied in two types of habitat (in the tundra and in Betula ermanii forest). Identification and delimitation of genets were inferred from excavation in small populations and from amplified fragment length polymorphism (AFLP) markers by the standardized sampling design in large populations. Clonal architecture and clonal diversity were then estimated. For the four small populations, they were monoclonal, the spacer length (18.6 ± 5.6 in tundra, 29.7 ± 9.7 in Betula ermanii forest, P < 0.05) was shorter and branching intensity (136.7 ± 32.9 in tundra, 43.4 ± 12.3 in Betula ermanii forest, P < 0.05) was higher in the tundra than that in Betula ermanii forest. For the five large populations, they were composed of multiple genets with high level of clonal diversity (Simpson's index D = 0.84, clonal richness R = 0.25, Fager's evenness E = 0.85); the spatial distribution of genets showed that the clonal growth strategy of R. aureum exhibits both guerilla and phalanx. Our results indicate that the clonal plasticity of R. aureum could enhance exploitation of resource heterogeneity and in turn greatly contribute to maintenance or improvement of fitness and the high clonal diversity of R. aureum increase the evolutionary rates to adapt the harsh alpine environment in Changbai Mountain.http://europepmc.org/articles/PMC5944948?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Xiaolong Wang
Wei Zhao
Lin Li
Jian You
Biao Ni
Xia Chen
spellingShingle Xiaolong Wang
Wei Zhao
Lin Li
Jian You
Biao Ni
Xia Chen
Clonal plasticity and diversity facilitates the adaptation of Rhododendron aureum Georgi to alpine environment.
PLoS ONE
author_facet Xiaolong Wang
Wei Zhao
Lin Li
Jian You
Biao Ni
Xia Chen
author_sort Xiaolong Wang
title Clonal plasticity and diversity facilitates the adaptation of Rhododendron aureum Georgi to alpine environment.
title_short Clonal plasticity and diversity facilitates the adaptation of Rhododendron aureum Georgi to alpine environment.
title_full Clonal plasticity and diversity facilitates the adaptation of Rhododendron aureum Georgi to alpine environment.
title_fullStr Clonal plasticity and diversity facilitates the adaptation of Rhododendron aureum Georgi to alpine environment.
title_full_unstemmed Clonal plasticity and diversity facilitates the adaptation of Rhododendron aureum Georgi to alpine environment.
title_sort clonal plasticity and diversity facilitates the adaptation of rhododendron aureum georgi to alpine environment.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2018-01-01
description Four small oval populations and five large intensive populations of Rhododendron aureum growing at the alpine in Changbai Mountain (China) were studied in two types of habitat (in the tundra and in Betula ermanii forest). Identification and delimitation of genets were inferred from excavation in small populations and from amplified fragment length polymorphism (AFLP) markers by the standardized sampling design in large populations. Clonal architecture and clonal diversity were then estimated. For the four small populations, they were monoclonal, the spacer length (18.6 ± 5.6 in tundra, 29.7 ± 9.7 in Betula ermanii forest, P < 0.05) was shorter and branching intensity (136.7 ± 32.9 in tundra, 43.4 ± 12.3 in Betula ermanii forest, P < 0.05) was higher in the tundra than that in Betula ermanii forest. For the five large populations, they were composed of multiple genets with high level of clonal diversity (Simpson's index D = 0.84, clonal richness R = 0.25, Fager's evenness E = 0.85); the spatial distribution of genets showed that the clonal growth strategy of R. aureum exhibits both guerilla and phalanx. Our results indicate that the clonal plasticity of R. aureum could enhance exploitation of resource heterogeneity and in turn greatly contribute to maintenance or improvement of fitness and the high clonal diversity of R. aureum increase the evolutionary rates to adapt the harsh alpine environment in Changbai Mountain.
url http://europepmc.org/articles/PMC5944948?pdf=render
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