LI Wenda, WANG Guoliang, LIU Guobin, et al. Effects of Nitrogen Additions on Growth and Propagation of Bothriochloa Ischaemum Population[J]. Bulletin of Soiland Water Conservation, 2016, 36(1): 174-178.
DOI:
LI Wenda, WANG Guoliang, LIU Guobin, et al. Effects of Nitrogen Additions on Growth and Propagation of Bothriochloa Ischaemum Population[J]. Bulletin of Soiland Water Conservation, 2016, 36(1): 174-178. DOI: 10.13961/j.cnki.stbctb.2016.01.030.
Effects of Nitrogen Additions on Growth and Propagation of Bothriochloa Ischaemum Population
[Objective] The objective of this study is to analyze the influences of N addition on population characteristics and reproduction strategies of Bothriochloa ischaemum population in order to assess the impact of N deposition on the ecological environment. [Methods] This study was conducted to investigate the responses of population characteristics and reproduction strategies of B. ischaemum population to N addition based on four N addition treatments
including control CK(0 g/(m2·a))
low nitrogen (2.5 g/(m2·a))
middle nitrogen (5.0 g/(m2·a)) and high nitrogen (10.0 g/(m2·a)) for two years. [Results] (1) The N addition significantly increased the height and biomass of B. ischaemum population
population biomass reached the maximum with middle nitrogen treatment. (2) N addition had changed the nutrient allocation strategies of B. ischaemum. Root-shoot ratio decreased with the increments of N addition. (3) N addition promoted sexual reproduction and vegetative propagation of B. ischaemum population
enabled its high ability of breeding and competition. [Conclusion] Moderate N sedimentation or N addition (<5 g/(m2·a)) can promote the growth and development of B. ischaemum population
and improve its ecological function in soil and water conservation.
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references
Holland E A, Dentener F J, Braswell B H, et al. Contemporary and pre-industrial global reactive nitrogen budgets[J]. Biogeochemistry, 1999,46(1):7-43.
Vitousek P M, Mooney H A, Lubchenco J, et al. Human Domination of Earth's Ecosystems[J]. Science, 1997,277(5335):494-499.
Yang Haijun, Li Yang, Wu Mingyu, et al. Plant community responses to nitrogen addition and increased precipitation: The importance of water availability and species traits[J]. Global Change Biology, 2011,17(9):2936-2944.
LeBauer D S, Treseder K K. Nitrogen limitation of net primary productivity in terrestrial ecosystems is globally distributed[J]. Ecology, 2008,89(2):371-379.
Grechi I, Vivin P, Hilbert G, et al. Effect of light and nitrogen supply on internal C:N balance and control of root-to-shoot biomass allocation in grapevine[J]. Environmental and Experimental Botany, 2007,59(2):139-149.
Wang Guoliang, liu Fang. Carbon allocation of Chinese pine seedlings along a nitrogen addition gradient[J]. Forest Ecology and Management, 2014(334):114-121.
Precise measurement and caculation of carbon sink on check dams in Loess Plateau——A case study at Gaoxigou small watershed, Yulin City, Shaanxi Province
Mechanism of sand-layer sliding induced by water content changes on sand covered loess slopes
Effects of grazing intensity on soil and vegetation at Baidunzi salt marsh wetland in arid area
Effectiveness of wind and sand stabilization by artificial Haloxylon ammodendron forests of different ages in Turpan City and its relationship with biomass
Dynamics and driving factors of soil organic carbon sequestration during vegetation restoration on Loess Plateau
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