Climate change and the increase of human population will threaten conservation of Asian cobras

Sci Rep. 2021 Sep 13;11(1):18113. doi: 10.1038/s41598-021-97553-4.

Abstract

Asian cobras (genus Naja) are venomous snakes distributed from the Middle East to Southeast Asia. Because cobras often live near humans settlements, they are responsible for a large part of snakebite incidents and as such pose a challenge for public health systems. In the light of growing human populations, correctly mapping the present and future ranges of Asian cobras is therefore important for both biological conservation and public health management. Here, we mapped the potential climatic niches of ten Asian cobra species for both the present and the future, with the aim to quantify changes in climate and human population densities relative to their current and future ranges. Our analyses reveal that cobras that are adapted to dry climates and inhabit islands have narrow climatic niches, while those of mainland species with larger geographic ranges are much wider. We also found a higher degree of fragmentation of future cobra distributions; within the next 50 years, Asian cobras will lose an average of around 60% of their current suitable climatic range. In the near future, Naja mandalayensis, N. sputatrix, N. samarensis, and N. philippinensis are likely to have no accessible suitable climate space left. Besides, a further increase of human populations in this region may also exponentially accelerate the effects of anthropogenic impacts. Solutions for conservation may involve awareness and appropriate use of law to overcome the rate of habitat degradation and the increase of animal trade of Asian cobras, while promoting investment on health systems to avoid snakebite fatalities.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Animals
  • Asia
  • Biodiversity*
  • Climate Change*
  • Conservation of Natural Resources
  • Ecosystem*
  • Elapidae*
  • Geography
  • Human Activities*
  • Humans
  • Population Density*
  • Seasons
  • Temperature