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Global Warming Pushes the Distribution Range of the Two Alpine 'glasshouse' Species North- and Upwards in the Eastern Himalayas and the Hengduan Mountains

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Journal Front Plant Sci
Date 2022 Oct 24
PMID 36275548
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Abstract

Alpine plants' distribution is being pushed higher towards mountaintops due to global warming, finally diminishing their range and thereby increasing the risk of extinction. Plants with specialized 'glasshouse' structures have adapted well to harsh alpine environments, notably to the extremely low temperatures, which makes them vulnerable to global warming. However, their response to global warming is quite unexplored. Therefore, by compiling occurrences and several environmental strata, we utilized multiple ensemble species distribution modeling (eSDM) to estimate the historical, present-day, and future distribution of two alpine 'glasshouse' species Hook. f. & Thomson and Batalin. was predicted to extend its distribution from the Eastern Himalaya (EH) to the Hengduan Mountains (HM), whereas was restricted exclusively in the HM. Both species witnessed a northward expansion of suitable habitats followed by a southerly retreat in the HM region. Our findings reveal that both species have a considerable range shift under different climate change scenarios, mainly triggered by precipitation rather than temperature. The model predicted northward and upward migration for both species since the last glacial period which is mainly due to expected future climate change scenarios. Further, the observed niche overlap between the two species presented that they are more divergent depending on their habitat, except for certain regions in the HM. However, relocating appropriate habitats to the north and high elevation may not ensure the species' survival, as it needs to adapt to the extreme climatic circumstances in alpine habitats. Therefore, we advocate for more conservation efforts in these biodiversity hotspots.

References
1.
Pierce D, Barnett T, Santer B, Gleckler P . Selecting global climate models for regional climate change studies. Proc Natl Acad Sci U S A. 2009; 106(21):8441-6. PMC: 2689003. DOI: 10.1073/pnas.0900094106. View

2.
Song B, Zhang Z, Stocklin J, Yang Y, Niu Y, Chen J . Multifunctional bracts enhance plant fitness during flowering and seed development in Rheum nobile (Polygonaceae), a giant herb endemic to the high Himalayas. Oecologia. 2012; 172(2):359-70. DOI: 10.1007/s00442-012-2518-2. View

3.
Williams J, Jackson S, Kutzbach J . Projected distributions of novel and disappearing climates by 2100 AD. Proc Natl Acad Sci U S A. 2007; 104(14):5738-42. PMC: 1851561. DOI: 10.1073/pnas.0606292104. View

4.
Rumpf S, Hulber K, Klonner G, Moser D, Schutz M, Wessely J . Range dynamics of mountain plants decrease with elevation. Proc Natl Acad Sci U S A. 2018; 115(8):1848-1853. PMC: 5828587. DOI: 10.1073/pnas.1713936115. View

5.
Morueta-Holme N, Engemann K, Sandoval-Acuna P, Jonas J, Segnitz R, Svenning J . Strong upslope shifts in Chimborazo's vegetation over two centuries since Humboldt. Proc Natl Acad Sci U S A. 2015; 112(41):12741-5. PMC: 4611603. DOI: 10.1073/pnas.1509938112. View