Asymmetric Warming of Day and Night Benefits the Early Growth of Acer mono Seedlings More Than Symmetric Warming

Author:

Yuan Junfeng1234,Yu Xinlei5,Wu Ting6,Gao Shitong1278,Zhang Ting127,Yan Qiaoling127ORCID,Li Rongping910,Zhu Jiaojun127

Affiliation:

1. CAS Key Laboratory of Forest Ecology and Silviculture Institute of Applied Ecology, Chinese Academy of Sciences Shenyang China

2. Qingyuan Forest CERN, National Observation and Research Station Shenyang China

3. Guangdong Provincial Key Laboratory of Applied Botany, South China Botanical Garden Chinese Academy of Sciences Guangzhou China

4. Key Laboratory of Vegetation Restoration and Management of Degraded Ecosystems South China Botanical Garden, Chinese Academy of Sciences Guangzhou China

5. Guangzhou Beipei High School Guangzhou China

6. Key Laboratory of Poyang Lake Basin Agricultural Resource and Ecology of Jiangxi Province College of Land Resource and Environment, Jiangxi Agricultural University Nanchang China

7. Key Laboratory of Terrestrial Ecosystem Carbon Neutrality Shenyang China

8. University of Chinese Academy of Sciences Beijing China

9. Institute of Atmospheric Environment, China Meteorological Administration Shenyang China

10. Key Laboratory of Black Soil Evolution and Ecological Effect Institute of Atmospheric Environment, China Meteorological Administration Shenyang China

Abstract

AbstractAsymmetric warming refers to the difference between the increase in daytime maximum temperature and the increase in nighttime minimum temperature and has been documented in temperate regions. However, its impacts on seedling growth have been largely ignored. In this study, seedlings of a widely distributed tree species, Acer mono Maxim., were exposed to both symmetric warming (SW) and asymmetric warming scenarios (day warming [DW], night warming [NW] and diurnal asymmetric warming [DAW]). Compared to control, all warming scenarios were found to enhance belowground biomass. DW promoted the seedling growth, while NW reduced the stem biomass. DAW did not impact the total biomass relative to the control. Compared to SW, DAW advanced phenology, increased indole‐3‐acetic acid content and chlorophyll content, which enhanced total biomass and stored more NSC in the root. Future DAW would be not beneficial to the growth of A. mono seedlings by comparing with the control. This research encourages further exploration of tree growth experiments under asymmetric warming conditions, as most studies tend to underestimate the warming effects on plant growth by focusing on SW. Incorporating the responses of seedling physiology and growth to non‐uniform diurnal warming into earth system models is crucial for more accurately predicting carbon and energy balances in a warmer world.

Publisher

Wiley

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