The Sensitivity of Green-Up Dates to Different Temperature Parameters in the Mongolian Plateau Grasslands

Author:

Wang Meiyu12ORCID,Zhang Hongyan12,Wang Bohan12,Wang Qingyu12,Chen Haihua12,Gong Jialu12,Sun Mingchen3,Zhao Jianjun12ORCID

Affiliation:

1. Key Laboratory of Geographical Processes and Ecological Security in Changbai Mountains, Ministry of Education, School of Geographical Sciences, Northeast Normal University, Changchun 130024, China

2. Urban Remote Sensing Application Innovation Center, School of Geographical Sciences, Northeast Normal University, Changchun 130024, China

3. School of Information Engineering, Changchun University of Finance and Economics, Changchun 130024, China

Abstract

The rise in global average surface temperature has promoted the advancement of spring vegetation phenology. However, the response of spring vegetation phenology to different temperature parameters varies. The Mongolian Plateau, one of the largest grasslands in the world, has green-up dates (GUDs) with unclear sensitivity to different temperature parameters. To address this issue, we investigated the responses of GUDs to different temperature parameters in the Mongolian Plateau grasslands. The results show that GUDs responded significantly differently to changes in near-surface temperature (TMP), near-surface temperature maximum (TMX), near-surface temperature minimum (TMN), and diurnal temperature range (DTR). GUDs advanced as TMP, TMX, and TMN increased, with TMN having a more significant effect, whereas increases in DTR inhibited the advancement of GUDs. GUDs were more sensitive to TMX and TMN than to TMP. The sensitivity of GUDs to DTR showed an increasing trend from 1982 to 2015 and showed this parameter’s great importance to GUDs. Our results also show that the spatial and temporal distributions of temperature sensitivity are only related to temperature conditions in climatic zones instead of whether they are arid.

Funder

National Natural Science Foundation of China

basic construction funds (innovation capacity building) for the budget of Jilin Province in 2023

National Key R&D Program of China

Publisher

MDPI AG

Subject

General Earth and Planetary Sciences

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