Fang Wen-Jing, Cai Qiong, Zhao Qing, Ji Cheng-Jun, Zhu Jiang-Ling, Tang Zhi-Yao, Fang Jing-Yun
School of Ecology and Environmental Science, Yunnan University, Kunming 650091, China.
Department of Ecology, College of Urban and Environmental Sciences, and Key Laboratory for Earth Surface Processes of the Ministry of Education, Peking University, Beijing 100871, China.
Plant Divers. 2022 May 19;44(5):436-444. doi: 10.1016/j.pld.2022.05.002. eCollection 2022 Sep.
Larch forests are important for species diversity, as well as soil and water conservation in mountain regions. In this study, we determined large-scale patterns of species richness in larch forests and identified the factors that drive these patterns. We found that larch forest species richness was high in southern China and low in northern China, and that patterns of species richness along an elevational gradient depend on larch forest type. In addition, we found that patterns of species richness in larch forests are best explained by contemporary climatic factors. Specifically, mean annual temperature and annual potential evapotranspiration were the most important factors for species richness of tree and shrub layers, while mean temperature of the coldest quarter and anomaly of annual precipitation from the Last Glacial Maximum to the present were the most important for that of herb layer and the whole community. Community structural factors, especially stand density, are also associated with the species richness of larch forests. Our findings that species richness in China's larch forests is mainly affected by energy availability and cold conditions support the ambient energy hypothesis and the freezing tolerance hypothesis.
落叶松林对于物种多样性以及山区的水土保持都很重要。在本研究中,我们确定了落叶松林物种丰富度的大规模格局,并识别了驱动这些格局的因素。我们发现,中国南方的落叶松林物种丰富度较高,而北方较低,且沿海拔梯度的物种丰富度格局取决于落叶松林类型。此外,我们发现,当代气候因素能最好地解释落叶松林的物种丰富度格局。具体而言,年平均温度和年潜在蒸散量是树木和灌木层物种丰富度的最重要因素,而最冷月平均温度以及从上新世最大冰期到现在的年降水量异常则是草本层和整个群落物种丰富度的最重要因素。群落结构因素,尤其是林分密度,也与落叶松林的物种丰富度相关。我们的研究结果表明,中国落叶松林的物种丰富度主要受能量可利用性和寒冷条件影响,这支持了环境能量假说和耐寒性假说。