4.7 Article

Seed dormancy profiles for forest dynamics plot data: focusing on a tropical seasonal rainforest in Xishuangbanna, southwest China

期刊

PLANT BIOLOGY
卷 23, 期 3, 页码 420-426

出版社

WILEY
DOI: 10.1111/plb.13232

关键词

Forest dynamics plot; non‐ dormant seeds; physiological dormancy; seed dormancy; tree species; tropical seasonal rainforest

资金

  1. Chinese Academy of Sciences 135 Program [2017XTBG-T01]
  2. National Natural Science Foundation of China [31670442, 31800353, 32061123003]
  3. West Light Foundation of the Chinese Academy of Sciences

向作者/读者索取更多资源

Long-term forest dynamics monitoring plots were used to construct seed dormancy profiles across tropical to temperate latitudes, based on data from nine forest dynamics plots and seed dormancy information. The study revealed differences in seed dormancy levels at different latitudes, showing an increase in dormancy with increasing latitude.
Long-term forest dynamics monitoring plots provide information on number of individual species in the plot, allowing us for the first time to construct seed dormancy profiles at the species and individual levels for a specific site. Focusing on the Xishuangbanna tropical season rainforest plot (XTRDP), we used data from nine forest dynamics plots (two for tropical, four for subtropical and three for temperate) and information on kind of seed dormancy to generate seed dormancy profiles for communities across tropical to temperate latitudes at the species and individual levels. Seed dormancy information was collected from previous publications, and some data were provided by two germplasm banks that test seed germination of wild plants in China. In XTRDP, 35% of the species and 58% of individuals have non-dormant seeds; the dominant species have non-dormant seeds. In all plots, the most common kind of dormancy among species and individuals with dormant seeds was physiological dormancy. At the species level, the profile for tropical, subtropical and temperate plots was similar to profiles for each of these vegetation regions. In all plots, except one subtropical plot, the percentage of species versus individuals with dormant seeds differed. All temperate plots had a higher percentage of individuals than species with dormant seeds, but this pattern was not consistent for tropical or subtropical plots. We show that dormancy increases with latitude at both the species and individual levels. Dormancy profiles at the individual tree level provide new insight into seed dormancy relationships within plant communities.

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