Wu Yun, Barrett Spencer C H, Duan Xuyu, Zhang Jie, Cha Yongpeng, Tu Chengyi, Li Qingjun
School of Civil Engineering, Architecture and Environment, Xihua University, Chengdu, China.
Yunnan Key Laboratory of Plant Reproductive Adaptation and Evolutionary Ecology, Yunnan University, Kunming, China.
Front Plant Sci. 2021 Nov 11;12:727957. doi: 10.3389/fpls.2021.727957. eCollection 2021.
Quantifying the relations between plant-antagonistic interactions and natural selection among populations is important for predicting how spatial variation in ecological interactions drive adaptive differentiation. Here, we investigate the relations between the opportunity for selection, herbivore-mediated selection, and the intensity of plant-herbivore interaction among 11 populations of the insect-pollinated plant over 2 years. We experimentally quantified herbivore-mediated directional selection on three floral traits (two display and one phenological) within populations and found evidence for herbivore-mediated selection for a later flowering start date and a greater number of flowers per plant. The opportunity for selection and strength of herbivore-mediated selection on number of flowers varied nonlinearly with the intensity of herbivory among populations. These parameters increased and then decreased with increasing intensity of plant-herbivore interactions, defined as an increase in the ratio of herbivore-damaged flowers per individual. Our results provide novel insights into how plant-antagonistic interactions can shape spatial variation in selection on floral traits and contribute toward understanding the mechanistic basis of geographic variation in angiosperm flowers.
量化植物与拮抗生物之间的相互作用与种群间自然选择的关系,对于预测生态相互作用中的空间变异如何驱动适应性分化至关重要。在此,我们在两年时间里,研究了11个虫媒授粉植物种群中选择机会、食草动物介导的选择以及植物 - 食草动物相互作用强度之间的关系。我们通过实验量化了种群内食草动物对三个花部性状(两个展示性状和一个物候性状)的定向选择,并发现了食草动物介导选择使开花起始日期延迟和单株花朵数量增加的证据。选择机会以及食草动物对花朵数量的选择强度,在种群间随食草作用强度呈非线性变化。这些参数随着植物 - 食草动物相互作用强度的增加(定义为单株被食草动物损伤花朵比例的增加)先增加后减少。我们的研究结果为植物与拮抗生物的相互作用如何塑造花部性状选择的空间变异提供了新见解,并有助于理解被子植物花朵地理变异的机制基础。