4.4 Article

Belowground bud banks of four dominant macrophytes along a small-scale elevational gradient in Dongting Lake wetlands, China

Journal

AQUATIC BOTANY
Volume 122, Issue -, Pages 9-14

Publisher

ELSEVIER
DOI: 10.1016/j.aquabot.2014.12.006

Keywords

Vegetative reproduction; Bud demography; Shoot regeneration; Flooding impact; Meristem limitation

Funding

  1. National Key Technology Research and Development Program of China [2014BAC09B03]
  2. Knowledge Innovation Program of the Chinese Academy of Sciences [ISACX-LYQY-QN-1207]
  3. National Natural Science Foundation of China [31000143]
  4. Hunan Provincial Natural Science Foundation of China [14JJ2137]

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Belowground bud banks play a fundamental role in the population dynamics of clonal wetland macrophytes. We investigated the size and seasonal dynamics of the belowground bud banks of four dominant macrophytes along a small-scale elevational gradient in Dongting Lake wetlands, China. The below-ground bud banks of all four species were found to peak in January, the coldest month of the year. Bud banks were densest for low-elevation Phalaris arundinacea L. (1049 +/- 70 buds m(-2)), intermediate for mid-elevation Carex brevicuspis C.B. Clarke and Polygonum hydropiper L. (565 +/- 52 buds m(-2) and 484 +/- 78 buds m(-2), respectively), and lowest for high-elevation Miscanthus sacchariflorus (Maxim.) Hackel (333 +/- 52 buds m(-2)). Elevation, which reflects stand flooding regimes, explained 85% of the variability in bud bank size among the four species. The bud bank size of Carex brevicuspis, Polygonum hydropiper, and Phalaris arundinacea decreased markedly after the spring sprout, thus indicating that these three species may be sensitive to the timing of disturbance. Bud bank densities for all four species were lowest just before flooding (in May), which might be a strategy to reduce maintenance costs through the flooding season (June-October). Among the four species examined, the bud bank density of Phalaris arundinacea was highest during the growing season, which suggests that this species may be the most resilient to environmental change. (C) 2015 Elsevier B.V. All rights reserved.

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