Ageratina adenophora and Lantana camara in Kailash Sacred Landscape, India: Current distribution and future climatic scenarios through modeling

The Himalayan region is one of the global biodiversity hotspots. However, its biodiversity and ecosystems are threatened due to abiotic and biotic drivers. One of the major biotic threats to biodiversity in this region is the rapid spread of Invasive Alien Species (IAS). Natural forests and grasslan...

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Published in:PloS one Vol. 16; no. 5; p. e0239690
Main Authors: Chaudhary, Alka, Sarkar, Mriganka Shekhar, Adhikari, Bhupendra Singh, Rawat, Gopal Singh
Format: Journal Article
Language:English
Published: United States Public Library of Science 11-05-2021
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Abstract The Himalayan region is one of the global biodiversity hotspots. However, its biodiversity and ecosystems are threatened due to abiotic and biotic drivers. One of the major biotic threats to biodiversity in this region is the rapid spread of Invasive Alien Species (IAS). Natural forests and grasslands are increasingly getting infested by IAS affecting regeneration of native species and decline in availability of bio-resources. Assessing the current status of IAS and prediction of their future spread would be vital for evolving specific species management interventions. Keeping this in view, we conducted an in-depth study on two IASs, viz., Ageratina adenophora and Lantana camara in the Indian part of Kailash Sacred Landscape (KSL), Western Himalaya. Intensive field surveys were conducted to collect the presence of A. adenophora (n = 567) and L. camara (n = 120) along an altitudinal gradient between 300 and 3000 m a.s.l. We performed Principal Component Analysis to nullify the multi-colinearity effects of the environmental predictors following MaxEnt species distribution model in the current and future climatic scenarios for both the species. All current and future model precision (i.e., Area Under the Curve; AUC) for both species was higher than 0.81. It is predicted that under the current rate of climate change and higher emission (i.e., RCP 8.5 pathway), A. adenophora will spread 45.3% more than its current distribution and is likely to reach up to 3029 m a.s.l., whereas, L. camara will spread 29.8% more than its current distribution range and likely to reach up to 3018 m a.s.l. Our results will help in future conservation planning and participatory management of forests and grasslands in the Kailash Sacred Landscape-India.
AbstractList The Himalayan region is one of the global biodiversity hotspots. However, its biodiversity and ecosystems are threatened due to abiotic and biotic drivers. One of the major biotic threats to biodiversity in this region is the rapid spread of Invasive Alien Species (IAS). Natural forests and grasslands are increasingly getting infested by IAS affecting regeneration of native species and decline in availability of bio-resources. Assessing the current status of IAS and prediction of their future spread would be vital for evolving specific species management interventions. Keeping this in view, we conducted an in-depth study on two IASs, viz., Ageratina adenophora and Lantana camara in the Indian part of Kailash Sacred Landscape (KSL), Western Himalaya. Intensive field surveys were conducted to collect the presence of A. adenophora (n = 567) and L. camara (n = 120) along an altitudinal gradient between 300 and 3000 m a.s.l. We performed Principal Component Analysis to nullify the multi-colinearity effects of the environmental predictors following MaxEnt species distribution model in the current and future climatic scenarios for both the species. All current and future model precision (i.e., Area Under the Curve; AUC) for both species was higher than 0.81. It is predicted that under the current rate of climate change and higher emission (i.e., RCP 8.5 pathway), A. adenophora will spread 45.3% more than its current distribution and is likely to reach up to 3029 m a.s.l., whereas, L. camara will spread 29.8% more than its current distribution range and likely to reach up to 3018 m a.s.l. Our results will help in future conservation planning and participatory management of forests and grasslands in the Kailash Sacred Landscape-India.
The Himalayan region is one of the global biodiversity hotspots. However, its biodiversity and ecosystems are threatened due to abiotic and biotic drivers. One of the major biotic threats to biodiversity in this region is the rapid spread of Invasive Alien Species (IAS). Natural forests and grasslands are increasingly getting infested by IAS affecting regeneration of native species and decline in availability of bio-resources. Assessing the current status of IAS and prediction of their future spread would be vital for evolving specific species management interventions. Keeping this in view, we conducted an in-depth study on two IASs, viz., Ageratina adenophora and Lantana camara in the Indian part of Kailash Sacred Landscape (KSL), Western Himalaya. Intensive field surveys were conducted to collect the presence of A . adenophora ( n = 567) and L . camara ( n = 120) along an altitudinal gradient between 300 and 3000 m a.s.l. We performed Principal Component Analysis to nullify the multi-colinearity effects of the environmental predictors following MaxEnt species distribution model in the current and future climatic scenarios for both the species. All current and future model precision (i.e., Area Under the Curve; AUC) for both species was higher than 0.81. It is predicted that under the current rate of climate change and higher emission (i.e., RCP 8.5 pathway), A . adenophora will spread 45.3% more than its current distribution and is likely to reach up to 3029 m a.s.l., whereas, L . camara will spread 29.8% more than its current distribution range and likely to reach up to 3018 m a.s.l. Our results will help in future conservation planning and participatory management of forests and grasslands in the Kailash Sacred Landscape–India.
Audience Academic
Author Adhikari, Bhupendra Singh
Rawat, Gopal Singh
Chaudhary, Alka
Sarkar, Mriganka Shekhar
AuthorAffiliation Zoological Survey of India, INDIA
2 Department of Biological Sciences, Indian Institute of Science Education and Research Kolkata, West Bengal, India
1 Wildlife Institute of India, Dehradun, Uttarakhand, India
3 North-East Regional Centre, G. B. Pant National Institute of Himalayan Environment (NIHE), Itanagar, Arunachal Pradesh, India
AuthorAffiliation_xml – name: 1 Wildlife Institute of India, Dehradun, Uttarakhand, India
– name: 2 Department of Biological Sciences, Indian Institute of Science Education and Research Kolkata, West Bengal, India
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  orcidid: 0000-0002-4789-6911
  surname: Chaudhary
  fullname: Chaudhary, Alka
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BackLink https://www.ncbi.nlm.nih.gov/pubmed/33974622$$D View this record in MEDLINE/PubMed
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Snippet The Himalayan region is one of the global biodiversity hotspots. However, its biodiversity and ecosystems are threatened due to abiotic and biotic drivers. One...
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SubjectTerms Ageratina - physiology
Analysis
Anthropogenic factors
Biodegradation
Biodiversity
Biological diversity
Biology and Life Sciences
Climate Change
Climate models
Climatic conditions
Community
Conservation of Natural Resources
Current distribution
Earth Sciences
Ecology and Environmental Sciences
Ecosystem
Ecosystems
Editing
Environmental degradation
Forest products
Humans
India
Introduced Species
Invasive species
Land use
Lantana - physiology
Livestock
Livestock grazing
Models, Biological
Non-timber forest resources
Nonnative species
Physical Sciences
Phytogeography
Plants, Ornamental
Probability distribution
Research and Analysis Methods
Reviews
Timber
Tourism
Wildlife
Wildlife habitats
Wildlife management
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Title Ageratina adenophora and Lantana camara in Kailash Sacred Landscape, India: Current distribution and future climatic scenarios through modeling
URI https://www.ncbi.nlm.nih.gov/pubmed/33974622
https://www.proquest.com/docview/2525626888
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https://doaj.org/article/3baf9ffe66bd42458c0fbf48ee5efcc4
http://dx.doi.org/10.1371/journal.pone.0239690
Volume 16
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