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Adaptation of Nitraria sphaerocarpa to wind-blown sand environments at the edge of a desert oasis
Authors:LI Qiu-yan  ZHAO Wen-zhi and FANG Hai-yan
Institution:1. Chinese Ecosystem Network Research Linze Inland River Basin Comprehensive Research Station,Laboratory of Hydrology and Applied Ecology,Cold and Arid Regions Environmental and Engineering Research Institute,Chinese Academy of Sciences,Lanzhou 730000,China
2. Institute of Geographical Sciences and Natural Resources Research,Chinese Academy of Sciences,Beijing 100101,China
Abstract:This study addresses the adaptation of Nitraria sphaerocarpa to blown sand at the edge of a desert oasis with regard to the aspects of soil seed banks, seedlings, and population. Horizontally, the total number of seeds per unit area decreased from the shrub canopy center to intershrub areas, and most seeds were found under shrub canopies. Vertically, the highest proportion of seeds was found at depths of 5-10 cm. The emergence percentage, seedling mass, and seedling height, which were significantly affected by both burial depth and seed size, were highest at the optimal burial depth of 2 cm, and decreased with increasing burial depth in each seed size-class. Although seedling mass was usually greatest for large seeds and least for small seeds at each burial depth, little difference was observed in seedling height at shallow burial depths of 0-3 cm. The population shows a patchy and discontinuous distribution pattern. Population height increases with increasing sand depth. Also the density increases with increasing depth of sand in the desert; however, there is a steady decrease when the depth of sand is more than 100 cm. This result indicates that the depth of sand that is most suitable for the growth of Nitraria sphaerocarpa is 100 cm. The size of the population is significantly correlated with the sand depth, which increases with increasing depth in the desert.
Keywords:Nitraria sphaerocarpa  soil seed bank  seedling growth  sand burial  adaptation  desert oasis  edge  environments  sand  result  the growth  steady  decrease  however  density  discontinuous  distribution pattern  little  difference  large  small  increasing  optimal  depth  seedling
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