首页 | 本学科首页   官方微博 | 高级检索  
   检索      


Higher clonal integration in the facultative epiphytic fern Selliguea griffithiana growing in the forest canopy compared with the forest understorey
Authors:Hua-Zheng Lu  Wen-Yao Liu  Fei-Hai Yu  Liang Song  Xing-Liang Xu  Chuan-Sheng Wu  Yu-Long Zheng  Yang-Ping Li  He-De Gong  Ke Chen  Su Li  Xi Chen  Jin-Hua Qi  Shu-Gang Lu
Abstract:Background and Aims The advantage of clonal integration (resource sharing between connected ramets of clonal plants) varies and a higher degree of integration is expected in more stressful and/or more heterogeneous habitats. Clonal facultative epiphytes occur in both forest canopies (epiphytic habitats) and forest understories (terrestrial habitats). Because environmental conditions, especially water and nutrients, are more stressful and heterogeneous in the canopy than in the understorey, this study hypothesizes that clonal integration is more important for facultative epiphytes in epiphytic habitats than in terrestrial habitats.Methods In a field experiment, an examination was made of the effects of rhizome connection (connected vs. disconnected, i.e. with vs. without clonal integration) on survival and growth of single ramets, both young and old, of the facultative epiphytic rhizomatous fern Selliguea griffithiana (Polypodiaceae) in both epiphytic and terrestrial habitats. In another field experiment, the effects of rhizome connection on performance of ramets were tested in small (10 × 10 cm2) and large (20 × 20 cm2) plots in both epiphytic and terrestrial habitats.Key Results Rhizome disconnection significantly decreased survival and growth of S. griffithiana in both experiments. The effects of rhizome disconnection on survival of single ramets and on ramet number and growth in plots were greater in epiphytic habitats than in terrestrial habitats.Conclusions Clonal integration contributes greatly to performance of facultative epiphytic ferns, and the effects were more important in forest canopies than in forest understories. The results therefore support the hypothesis that natural selection favours genotypes with a higher degree of integration in more stressful and heterogeneous environments.
Keywords:Clonal integration  facultative epiphyte  forest canopy  forest understorey  habitat adaptation  ephiphytic fern  Selliguea griffithiana  Polypodiaceae  resource heterogeneity  resource sharing  clonal plant
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号