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Chinese Journal of Applied Ecology ›› 2026, Vol. 37 ›› Issue (8): 2547-2555.doi: 10.13287/j.1001-9332.202608.043

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Response of non-structural carbohydrates in the roots of Larix gmelinii to climate warming and provenance variation

ZHU Wencong1, ZHAO Qiulan1, LIU Yalong2, QUAN Xiankui1*   

  1. 1Ministry of Education Key Laboratory of Sustainable Forest Ecosystem Management, Northeast Forestry University, Harbin 150040, China;
    2Technical Promotion Station of Forest Management Department of Daxing’anling Forestry Group Company, Jiagedaqi 165002, Heilongjiang, China
  • Received:2026-02-14 Revised:2026-06-30 Online:2026-08-18 Published:2027-02-18

Abstract: We employed a common garden experiment to simulate climate warming, based on which we investigated the responses of non-structural carbohydrates (NSC), soluble sugars (SS), starch (ST) concentrations and the SS/ST in fine, medium, and coarse roots of 11 provenances of Larix gmelinii at the end of the growing season. The results showed that climate warming significantly decreased NSC concentration, SS concentration and SS/ST by 8.0%-10.6%, 16.4%-24.5% and 25.3%-30.8%, respectively, across all root types. ST concentration in the fine and middle roots significantly increased by 9.9%-15.3%, and ST concentration in the coarse roots varied insignificantly. As root diameter increased, the decrease in SS concentration showed an increasing trend, while the increase in ST concentration showed a decreasing trend. The warming-induced changes in NSC concentration, SS concentration, and SS/ST across different root diameter classes after climate warming, namely the warming effect, were significantly and positively correlated with aridity index (AI) of the seed collection sites. In contrast, the warming effect on ST was significantly and negatively correlated with AI. L. gmelinii adapted to climate warming by regulating NSC concentration and the proportions of its components in roots of different diameter classes, and this capacity varied among provenances. The effects of root diameter class and provenance should be considered when investigating the responses of root NSC to climate warming.

Key words: climate change, carbon storage, common garden, acclimation, adaptation