Predicting the Impact of Climate Change on the Habitat Distribution of Parthenium hysterophorus around the World and in South Korea

The global climate change, including increases in temperature and precipitation, may exacerbate the invasion by . . Here, MaxEnt modeling was performed to predict . distribution worldwide and in South Korea under the current and future climate global climate changes, including increases in temperatu...

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Veröffentlicht in:Biology (Basel, Switzerland) Switzerland), 2023-01, Vol.12 (1), p.84
Hauptverfasser: Adhikari, Pradeep, Lee, Yong-Ho, Poudel, Anil, Lee, Gaeun, Hong, Sun-Hee, Park, Yong-Soon
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Sprache:eng
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Zusammenfassung:The global climate change, including increases in temperature and precipitation, may exacerbate the invasion by . . Here, MaxEnt modeling was performed to predict . distribution worldwide and in South Korea under the current and future climate global climate changes, including increases in temperature and precipitation. Under the current climate, . was estimated to occupy 91.26%, 83.26%, and 62.75% of the total land area of Australia, South America, and Oceania, respectively. However, under future climate scenarios, the habitat distribution of . would show the greatest change in Europe (56.65%) and would extend up to 65°N by 2081-2100 in South Korea, . currently potentially colonizing 2.24% of the land area, particularly in six administrative divisions. In the future, . would spread rapidly, colonizing all administrative divisions, except Incheon, by 2081-2100. Additionally, the southern and central regions of South Korea showed greater habitat suitability than the northern region. These findings suggest that future climate change will increase . distribution both globally and locally. Therefore, effective control and management strategies should be employed around the world and in South Korea to restrict the habitat expansion of . .
ISSN:2079-7737
2079-7737
DOI:10.3390/biology12010084