Zhang Ze, Zhang Zhihao, Hautier Yann, Qing Hua, Yang Jie, Bao Tiejun, Hajek Olivia L, Knapp Alan K
Ministry of Education Key Laboratory of Ecology and Resource Use of the Mongolian Plateau, Inner Mongolia University, Hohhot, China.
Inner Mongolia Key Laboratory of Grassland Ecology, School of Ecology and Environment, Inner Mongolia University, Hohhot, China.
Front Plant Sci. 2023 Apr 11;14:1142786. doi: 10.3389/fpls.2023.1142786. eCollection 2023.
Phenology and productivity are important functional indicators of grassland ecosystems. However, our understanding of how intra-annual precipitation patterns affect plant phenology and productivity in grasslands is still limited. Here, we conducted a two-year precipitation manipulation experiment to explore the responses of plant phenology and productivity to intra-annual precipitation patterns at the community and dominant species levels in a temperate grassland. We found that increased early growing season precipitation enhanced the above-ground biomass of the dominant rhizome grass, , by advancing its flowering date, while increased late growing season precipitation increased the above-ground biomass of the dominant bunchgrass, , by delaying senescence. The complementary effects in phenology and biomass of the dominant species, and , maintained stable dynamics of the community above-ground biomass under intra-annual precipitation pattern variations. Our results highlight the critical role that intra-annual precipitation and soil moisture patterns play in the phenology of temperate grasslands. By understanding the response of phenology to intra-annual precipitation patterns, we can more accurately predict the productivity of temperate grasslands under future climate change.
物候和生产力是草原生态系统重要的功能指标。然而,我们对于年内降水模式如何影响草原植物物候和生产力的理解仍然有限。在此,我们进行了一项为期两年的降水控制实验,以探究温带草原群落和优势物种水平上植物物候和生产力对年内降水模式的响应。我们发现,生长季早期降水增加通过提前优势根茎型禾本科植物的开花日期,提高了其地上生物量,而生长季晚期降水增加则通过延迟衰老增加了优势丛生禾本科植物的地上生物量。优势物种[物种名称1]和[物种名称2]在物候和生物量上的互补效应,在年内降水模式变化下维持了群落地上生物量的稳定动态。我们的结果凸显了年内降水和土壤湿度模式在温带草原物候中所起的关键作用。通过了解物候对年内降水模式的响应,我们能够更准确地预测未来气候变化下温带草原的生产力。