Seasonality in Holocene temperature reconstructions in southwestern China
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Reconstructions of global surface temperature, dominated by records from the northern extratropics, show an apparent Holocene cooling trend after the early Holocene Climatic Optimum. However, model simulations suggest a global warming Holocene tendency. This “Holocene temperature conundrum” is probably caused by the seasonal bias of paleotemperature proxies. Here we report a quantitative Holocene record with ~100-year resolution based on brGDGTs from an alpine lake in southwestern China. Our reconstructed Holocene temperature displays a steady long-term trend without distinct cooling or warming changes. Based on the temperature values and their evolution through time, our reconstruction possibly represents temperature changes in ice-free seasons from March to November. Unlike the often-documented Holocene cooling in regional summer temperatures driven by boreal summer insolation, this observed trend in our reconstructed temperature is probably caused by the slightly decreasing local ice-free season insolation and compensated somewhat increasing atmospheric greenhouse-gas concentrations. Our results demonstrate that the climate drivers of ice-free season and summer temperature changes would be quite different, and highlight the significance of elucidating the seasonality of proxies before using them for paleoclimate reconstructions.



