Nowhere to invade: Rumex crispus and Typha latifolia projected to disappear under future climate scenarios.
Future climate change has been predicted to affect the potential distribution of plant species. However, only few studies have addressed how invasive species may respond to future climate change despite the known effects of plant species invasion on nutrient cycles, ecosystem functions, and agricult...
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doaj-99790f37f052483c924fe97ed0b9a5102020-11-25T01:18:47ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-0187e7072810.1371/journal.pone.0070728Nowhere to invade: Rumex crispus and Typha latifolia projected to disappear under future climate scenarios.Zhonglin XuZhaodong FengJianjun YangJianghua ZhengFang ZhangFuture climate change has been predicted to affect the potential distribution of plant species. However, only few studies have addressed how invasive species may respond to future climate change despite the known effects of plant species invasion on nutrient cycles, ecosystem functions, and agricultural yields. In this study, we predicted the potential distributions of two invasive species, Rumex crispus and Typha latifolia, under current and future (2050) climatic conditions. Future climate scenarios considered in our study include A1B, A2, A2A, B1, and B2A. We found that these two species will lose their habitat under the A1B, A2, A2A, and B1 scenarios. Their distributions will be maintained under future climatic conditions related to B2A scenarios, but the total area will be less than 10% of that under the current climatic condition. We also investigated variations of the most influential climatic variables that are likely to cause habitat loss of the two species. Our results demonstrate that rising mean annual temperature, variations of the coldest quarter, and precipitation of the coldest quarter are the main factors contributing to habitat loss of R. crispus. For T. latifolia, the main factors are rising mean annual temperature, variations in temperature of the coldest quarter, mean annual precipitation, and precipitation of the coldest quarter. These results demonstrate that the warmer and wetter climatic conditions of the coldest season (or month) will be mainly responsible for habitat loss of R. crispus and T. latifolia in the future. We also discuss uncertainties related to our study (and similar studies) and suggest that particular attention should be directed toward the manner in which invasive species cope with rapid climate changes because evolutionary change can be rapid for species that invade new areas.http://europepmc.org/articles/PMC3726609?pdf=render |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Zhonglin Xu Zhaodong Feng Jianjun Yang Jianghua Zheng Fang Zhang |
spellingShingle |
Zhonglin Xu Zhaodong Feng Jianjun Yang Jianghua Zheng Fang Zhang Nowhere to invade: Rumex crispus and Typha latifolia projected to disappear under future climate scenarios. PLoS ONE |
author_facet |
Zhonglin Xu Zhaodong Feng Jianjun Yang Jianghua Zheng Fang Zhang |
author_sort |
Zhonglin Xu |
title |
Nowhere to invade: Rumex crispus and Typha latifolia projected to disappear under future climate scenarios. |
title_short |
Nowhere to invade: Rumex crispus and Typha latifolia projected to disappear under future climate scenarios. |
title_full |
Nowhere to invade: Rumex crispus and Typha latifolia projected to disappear under future climate scenarios. |
title_fullStr |
Nowhere to invade: Rumex crispus and Typha latifolia projected to disappear under future climate scenarios. |
title_full_unstemmed |
Nowhere to invade: Rumex crispus and Typha latifolia projected to disappear under future climate scenarios. |
title_sort |
nowhere to invade: rumex crispus and typha latifolia projected to disappear under future climate scenarios. |
publisher |
Public Library of Science (PLoS) |
series |
PLoS ONE |
issn |
1932-6203 |
publishDate |
2013-01-01 |
description |
Future climate change has been predicted to affect the potential distribution of plant species. However, only few studies have addressed how invasive species may respond to future climate change despite the known effects of plant species invasion on nutrient cycles, ecosystem functions, and agricultural yields. In this study, we predicted the potential distributions of two invasive species, Rumex crispus and Typha latifolia, under current and future (2050) climatic conditions. Future climate scenarios considered in our study include A1B, A2, A2A, B1, and B2A. We found that these two species will lose their habitat under the A1B, A2, A2A, and B1 scenarios. Their distributions will be maintained under future climatic conditions related to B2A scenarios, but the total area will be less than 10% of that under the current climatic condition. We also investigated variations of the most influential climatic variables that are likely to cause habitat loss of the two species. Our results demonstrate that rising mean annual temperature, variations of the coldest quarter, and precipitation of the coldest quarter are the main factors contributing to habitat loss of R. crispus. For T. latifolia, the main factors are rising mean annual temperature, variations in temperature of the coldest quarter, mean annual precipitation, and precipitation of the coldest quarter. These results demonstrate that the warmer and wetter climatic conditions of the coldest season (or month) will be mainly responsible for habitat loss of R. crispus and T. latifolia in the future. We also discuss uncertainties related to our study (and similar studies) and suggest that particular attention should be directed toward the manner in which invasive species cope with rapid climate changes because evolutionary change can be rapid for species that invade new areas. |
url |
http://europepmc.org/articles/PMC3726609?pdf=render |
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