Plant phenology and global climate change: Current progresses and challenges

Фенология растений и глобальное изменение климата: современный прогресс и проблемы
Shilong Piao, Lingli Liu, Ivan A. Janssens, Xu Lian, Anping Chen, Xiaolin Zhu, Yongshuo H. Fu, Miaogen Shen, Qiang Liu, Junhu Dai
2019-03-18

global climate changeleaf coloringleaf unfoldingplant phenologyprocess-based phenology modeling
Plant phenology, the annually recurring sequence of plant developmental stages, is important for plant functioning and ecosystem services and their biophysical and biogeochemical feedbacks to the climate system. Plant phenology depends on temperature, and the current rapid climate change has revived interest in understanding and modeling the responses of plant phenology to the warming trend and the consequences thereof for ecosystems. Here, we review recent progresses in plant phenology and its interactions with climate change. Focusing on the start (leaf unfolding) and end (leaf coloring) of plant growing seasons, we show that the recent rapid expansion in ground- and remote sensing- based phenology data acquisition has been highly beneficial and has supported major advances in plant phenology research. Studies using multiple data sources and methods generally agree on the trends of advanced leaf unfolding and delayed leaf coloring due to climate change, yet these trends appear to have decelerated or even reversed in recent years. Our understanding of the mechanisms underlying the plant phenology responses to climate warming is still limited. The interactions between multiple drivers complicate the modeling and prediction of plant phenology changes. Furthermore, changes in plant phenology have important implications for ecosystem carbon cycles and ecosystem feedbacks to climate, yet the quantification of such impacts remains challenging. We suggest that future studies should primarily focus on using new observation tools to improve the understanding of tropical plant phenology, on improving process-based phenology modeling, and on the scaling of phenology from species to landscape-level.
1
Mechanisms driving plant phenology responses to warming remain poorly understood, while multiple interacting drivers complicate modeling and prediction.
2
Multiple datasets and methods consistently indicate earlier leaf unfolding and later leaf coloring under recent warming.
3
Phenological changes affect ecosystem carbon cycles and climate feedbacks, but their impacts remain difficult to quantify; priorities include tropical observations, process-based models, and landscape-scale upscaling.
4
Rapid expansion of ground-based and remote-sensing phenology observations has substantially advanced research on plant responses to climate change.
5
Trends toward earlier leaf unfolding and delayed leaf coloring have decelerated or even reversed in recent years.

Plant phenology (timing of annual plant developmental stages, especially leaf unfolding and leaf coloring)

climate-change responses and ecosystem consequences of the timing of leaf unfolding and leaf coloring, including their mechanisms, trends, modeling, and carbon-cycle feedbacks

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Publication Date
2019-03-18
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Shilong Piao
Lingli Liu
Ivan A. Janssens
Xu Lian
Anping Chen
Xiaolin Zhu
Yongshuo H. Fu
Miaogen Shen
Qiang Liu
Junhu Dai
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