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Climate variability pbkp_redicts thermal limits of aquatic insects across elevation and latitude
ArticleAbstract: Janzen's extension of the climate variability hypothesis (CVH) posits that increased seasonal variatPalabras claves:aquatic insects, Climate Change, CT MAX, CT MIN, Janzen's hypothesis, Thermal breadth, vulnerabilityAutores:Andrea C. Encalada, Flecker A.S., Funk W.C., Ghalambor C.K., Gill B.A., Juan Manuel Guayasamin, Kondratieff B.C., Poff N.L.R., Shah A.A., Thomas S.A., Zamudio K.R.Fuentes:googlescopusInsects in high-elevation streams: Life in extreme environments imperiled by climate change
ReviewAbstract: Climate change is altering conditions in high-elevation streams worldwide, with largely unknown effePalabras claves:aquatic insects, EVOLUTION, flow, Oxygen, Physiology, Plasticity, TEMPERATURE, Ultraviolet radiationAutores:Birrell J.H., Dean Jacobsen, Hotaling S., Joseph Giersch J., Shah A.A., Williamson C.E., Woods H.A.Fuentes:scopusTemperature dependence of metabolic rate in tropical and temperate aquatic insects: Support for the Climate Variability Hypothesis in mayflies but not stoneflies
ArticleAbstract: A fundamental gap in climate change vulnerability research is an understanding of the relative thermPalabras claves:aquatic insects, climate change vulnerability, Elevation, latitude, metabolic rate, thermal performance curve, THERMAL TOLERANCEAutores:Andrea C. Encalada, Flecker A.S., Funk W.C., Ghalambor C.K., Havird J.C., Juan Manuel Guayasamin, Kondratieff B.C., Poff N.L.R., Shah A.A., Thomas S.A., Woods H.A., Zamudio K.R.Fuentes:googlescopus