Ma Yue, Zhao Xiang, Li Xiaona, Hu Yanxia, Wang Chao
College of Grassland Science, Shanxi Agricultural University, Jinzhong 030801, China.
Institute of Grassland, Flowers and Ecology, Beijing Academy of Agriculture and Forestry Sciences, Beijing 100097, China.
Plants (Basel). 2023 May 16;12(10):1994. doi: 10.3390/plants12101994.
Nitrogen deposition and biodiversity alter plant flowering phenology through abiotic factors and functional traits. However, few studies have considered their combined effects on flowering phenology. A common garden experiment with two nitrogen addition levels (0 and 6 g N m year) and five species richness levels (1, 2, 4, 6, and 8) was established. We assessed the effects of nitrogen addition and plant species richness on three flowering phenological events of L. via changes in functional traits, soil nutrients, and soil moisture and temperature. The first flowering day was delayed, the last flowering day advanced, and the flowering duration shortened after nitrogen addition. Meanwhile, the last flowering day advanced, and flowering duration shortened along plant species richness gradients, with an average of 0.64 and 0.95 days change per plant species increase, respectively. Importantly, it was observed that plant species richness affected flowering phenology mainly through changes in plant nutrient acquisition traits (i.e., leaf nitrogen and carbon/nitrogen ratio). Our findings illustrate the non-negligible effects of intraspecific variation in functional traits on flowering phenology and highlight the importance of including functional traits in phenological models to improve predictions of plant phenology in response to nitrogen deposition and biodiversity loss.
氮沉降和生物多样性通过非生物因素和功能性状改变植物开花物候。然而,很少有研究考虑它们对开花物候的综合影响。我们建立了一个有两个氮添加水平(0和6克氮/平方米/年)和五个物种丰富度水平(1、2、4、6和8)的共同花园实验。我们通过功能性状、土壤养分以及土壤湿度和温度的变化,评估了氮添加和植物物种丰富度对柳叶菜三个开花物候事件的影响。氮添加后,初花日期延迟,终花日期提前,开花持续时间缩短。同时,终花日期提前,开花持续时间沿植物物种丰富度梯度缩短,每增加一个植物物种,平均分别变化0.64天和0.95天。重要的是,观察到植物物种丰富度主要通过植物养分获取性状(即叶片氮含量和碳氮比)的变化影响开花物候。我们的研究结果说明了功能性状种内变异对开花物候的不可忽视的影响,并强调了在物候模型中纳入功能性状以改善对植物物候响应氮沉降和生物多样性丧失的预测的重要性。