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- W4225013427 abstract "At least 10,000 virus species have the ability to infect humans but, at present, the vast majority are circulating silently in wild mammals1,2. However, changes in climate and land use will lead to opportunities for viral sharing among previously geographically isolated species of wildlife3,4. In some cases, this will facilitate zoonotic spillover-a mechanistic link between global environmental change and disease emergence. Here we simulate potential hotspots of future viral sharing, using a phylogeographical model of the mammal-virus network, and projections of geographical range shifts for 3,139 mammal species under climate-change and land-use scenarios for the year 2070. We predict that species will aggregate in new combinations at high elevations, in biodiversity hotspots, and in areas of high human population density in Asia and Africa, causing the cross-species transmission of their associated viruses an estimated 4,000 times. Owing to their unique dispersal ability, bats account for the majority of novel viral sharing and are likely to share viruses along evolutionary pathways that will facilitate future emergence in humans. Notably, we find that this ecological transition may already be underway, and holding warming under 2 °C within the twenty-first century will not reduce future viral sharing. Our findings highlight an urgent need to pair viral surveillance and discovery efforts with biodiversity surveys tracking the range shifts of species, especially in tropical regions that contain the most zoonoses and are experiencing rapid warming." @default.
- W4225013427 created "2022-04-29" @default.
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- W4225013427 date "2022-04-28" @default.
- W4225013427 modified "2023-10-17" @default.
- W4225013427 title "Climate change increases cross-species viral transmission risk" @default.
- W4225013427 cites W1882658170 @default.
- W4225013427 cites W1936105280 @default.
- W4225013427 cites W1974950151 @default.
- W4225013427 cites W1985936925 @default.
- W4225013427 cites W1987605728 @default.
- W4225013427 cites W1991038167 @default.
- W4225013427 cites W2001613157 @default.
- W4225013427 cites W2040815881 @default.
- W4225013427 cites W2052709694 @default.
- W4225013427 cites W2056972503 @default.
- W4225013427 cites W2074277386 @default.
- W4225013427 cites W2079780057 @default.
- W4225013427 cites W2080641666 @default.
- W4225013427 cites W2085927787 @default.
- W4225013427 cites W2089424447 @default.
- W4225013427 cites W2092418241 @default.
- W4225013427 cites W2096292826 @default.
- W4225013427 cites W2099005226 @default.
- W4225013427 cites W2103209538 @default.
- W4225013427 cites W2106150884 @default.
- W4225013427 cites W2108086837 @default.
- W4225013427 cites W2108940449 @default.
- W4225013427 cites W2111158823 @default.
- W4225013427 cites W2116159613 @default.
- W4225013427 cites W2124697749 @default.
- W4225013427 cites W2127435093 @default.
- W4225013427 cites W2139416101 @default.
- W4225013427 cites W2146713153 @default.
- W4225013427 cites W2160446903 @default.
- W4225013427 cites W2174924180 @default.
- W4225013427 cites W2180616956 @default.
- W4225013427 cites W2182503628 @default.
- W4225013427 cites W2252787603 @default.
- W4225013427 cites W2262083583 @default.
- W4225013427 cites W2306323185 @default.
- W4225013427 cites W2337225114 @default.
- W4225013427 cites W2410390527 @default.
- W4225013427 cites W2466165022 @default.
- W4225013427 cites W2472069494 @default.
- W4225013427 cites W2487451717 @default.
- W4225013427 cites W2541697905 @default.
- W4225013427 cites W2581068562 @default.
- W4225013427 cites W2585392573 @default.
- W4225013427 cites W2598701004 @default.
- W4225013427 cites W2605578307 @default.
- W4225013427 cites W2609942500 @default.
- W4225013427 cites W2614464134 @default.
- W4225013427 cites W2618653913 @default.
- W4225013427 cites W2700382303 @default.
- W4225013427 cites W2765563228 @default.
- W4225013427 cites W2787894218 @default.
- W4225013427 cites W2788045019 @default.
- W4225013427 cites W2793244561 @default.
- W4225013427 cites W2806870532 @default.
- W4225013427 cites W2809002745 @default.
- W4225013427 cites W2896783604 @default.
- W4225013427 cites W2900185100 @default.
- W4225013427 cites W2902249445 @default.
- W4225013427 cites W2919193315 @default.
- W4225013427 cites W2941881349 @default.
- W4225013427 cites W2948703559 @default.
- W4225013427 cites W2949626501 @default.
- W4225013427 cites W2982034030 @default.
- W4225013427 cites W2986098667 @default.
- W4225013427 cites W2998500935 @default.
- W4225013427 cites W3000355687 @default.
- W4225013427 cites W3015530812 @default.
- W4225013427 cites W3016074853 @default.
- W4225013427 cites W3016282791 @default.
- W4225013427 cites W3022499782 @default.
- W4225013427 cites W3097080103 @default.
- W4225013427 cites W3104895181 @default.
- W4225013427 cites W3199449662 @default.
- W4225013427 cites W3216174433 @default.
- W4225013427 cites W4206087073 @default.
- W4225013427 cites W4294541781 @default.
- W4225013427 cites W758002412 @default.
- W4225013427 doi "https://doi.org/10.1038/s41586-022-04788-w" @default.
- W4225013427 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/35483403" @default.
- W4225013427 hasPublicationYear "2022" @default.
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