J Plant Ecol ›› Advance articles     DOI:10.1093/jpe/rtag217

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Life history and bud-position strategies shape stage-specific phenological responses to global change in grasslands

Aifang Wen, Tianle Meng, Jian Yang, Jie Zhou, Lei Yue, Lingyu Xue, Zhonghang Wei, Hao Sun, Zhuangsheng Tang, Jie Yang*   

  1. Key Laboratory of Grassland Ecosystem of the Ministry of Education, Pratacultural College, Gansu Agricultural University, Lanzhou, Gansu 730070, China
    *Corresponding author: Jie Yang
    Email: yang_jie@gsau.edu.cn
  • Received:2026-04-01 Revised:2026-07-24 Accepted:2026-09-03 Online:2026-09-21 Published:2026-09-21

Abstract: Plant phenology is a sensitive indicator of ecosystem responses to global change, yet how phenological responses vary among developmental stages, environmental contexts, and plant functional strategies remains poorly resolved in grasslands. We conducted a meta-analysis of 1,004 observations extracted from 67 publications to quantify the effects of warming, precipitation change, and nitrogen (N) addition on five phenological stages: green-up date (GUD), flowering date (FLD), fruiting date (FRD), reproductive onset date (RD), and senescence date (SD). Warming was associated with significant shifts across several stages, advancing GUD (-2.657 ± 0.004 d), FLD (-3.314 ± 0.002 d), and FRD (-1.871 ± 0.002 d), while delaying SD (1.300 ± 0.002 d). RD showed no significant overall response to warming. The magnitude of warming-related GUD advancement varied with mean annual temperature (slope = -0.02201), mean annual precipitation (slope = -0.00024), and experimental duration (slope = -0.03301). Increased precipitation advanced GUD (-2.039 ± 0.016 d) and FLD (-1.370 ± 0.005 d), whereas decreased precipitation and N addition produced limited overall shifts but stronger context dependence. Phenological responses also differed among life-history and bud-position groups: significant early-season relationships were more frequently detected in perennials and geophytes, whereas annuals and chamaephytes showed more stage-specific reproductive or late-season relationships. Reproductive responses varied more strongly along climatic gradients than early-season responses. Together, these findings show that grassland phenological responses are stage-, context-, and strategy-dependent and support incorporating developmental stage and plant strategy into future phenological predictions.

Key words: global change, grassland phenology, life history, bud position, environmental gradients, meta-analysis