Precipitation Regulates Phenological Responses of Annual and Perennial Forbs to Warming and Degradation in an Alpine Meadow on the Qinghai–Xizang Plateau

ABSTRACT Alpine grasslands on the Qinghai‐Xizang Plateau are increasingly threatened by climate warming and degradation, which promote an increase in annual plants in the community. However, how they shape the plant phenophases of annual and perennial plants remains unclear. In particular, there is limited understanding of whether and how ambient climate regulates their responses to warming and degradation. We conducted a three‐year warming experiment across moderately (MD) and severely degraded (SD) grasslands to determine the responses of phenophases of an annual and a perennial forb. We found that neither warming nor degradation significantly affected the onsets and durations of phenological sequences for the annual plant due to the offsetting of a direct advancing effect by an indirect delaying effect via decreased plant richness, which varied with the year. Warming effects on the onset of leaf‐out and end of leaf‐coloring of the perennial plant varied with degradation and year, whereas SD advanced the onset of leaf‐out and prolonged its total activity period relative to MD under warming. This suggested that warming could benefit the growth of perennial plants in the degraded alpine grasslands. Precipitation regulated the responses of phenophases of both annual and perennial plants to warming and degradation via decreased plant richness and/or increased their relative coverage in the community. Our findings indicate that attention should not only be paid to the life history characteristics of plants but also to the regulatory roles of vegetation status and ambient climate when evaluating the impact of climate change on plant phenology.

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Publication Details

Journal
Ecology and Evolution
Published
2026-09-29
DOI
https://doi.org/10.1002/ece3.74423
Primary Topic
Remote Sensing in Agriculture
Type
article
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article

Precipitation Regulates Phenological Responses of Annual and Perennial Forbs to Warming and Degradation in an Alpine Meadow on the Qinghai–Xizang Plateau

Lanying Chen, Wangwang Lv, Shujuan Cui, Jingya Lv et al.
Ecology and Evolution
Remote Sensing in Agriculture
article

Precipitation Regulates Phenological Responses of Annual and Perennial Forbs to Warming and Degradation in an Alpine Meadow on the Qinghai–Xizang Plateau

Lanying Chen, Wangwang Lv, Shujuan Cui, Jingya Lv, Yang Zhou (65942), Jianping Sun, Shiping Wang, A. Wang, Fang Yuan
article en

Abstract

ABSTRACT Alpine grasslands on the Qinghai‐Xizang Plateau are increasingly threatened by climate warming and degradation, which promote an increase in annual plants in the community. However, how they shape the plant phenophases of annual and perennial plants remains unclear. In particular, there is limited understanding of whether and how ambient climate regulates their responses to warming and degradation. We conducted a three‐year warming experiment across moderately (MD) and severely degraded (SD) grasslands to determine the responses of phenophases of an annual and a perennial forb. We found that neither warming nor degradation significantly affected the onsets and durations of phenological sequences for the annual plant due to the offsetting of a direct advancing effect by an indirect delaying effect via decreased plant richness, which varied with the year. Warming effects on the onset of leaf‐out and end of leaf‐coloring of the perennial plant varied with degradation and year, whereas SD advanced the onset of leaf‐out and prolonged its total activity period relative to MD under warming. This suggested that warming could benefit the growth of perennial plants in the degraded alpine grasslands. Precipitation regulated the responses of phenophases of both annual and perennial plants to warming and degradation via decreased plant richness and/or increased their relative coverage in the community. Our findings indicate that attention should not only be paid to the life history characteristics of plants but also to the regulatory roles of vegetation status and ambient climate when evaluating the impact of climate change on plant phenology.

Ecology and EvolutionVol. 16(10)
China West Normal University (CN), Chinese Academy of Sciences (CN), Institute of Tibetan Plateau Research (CN), University of Chinese Academy of Sciences (CN), Anqing Normal University (CN)
Climate action
Openalex Percentile: Top 11%
Remote Sensing in Agriculture
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