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高二氧化碳浓度下大黍和钩状柱花草的生长、产量及光合作用

Growth, yield and photosynthesis of Panicum maximum and Stylosanthes hamata under elevated CO2.

作者信息

Bhatt R K, Baig M J, Tiwari H S, Roy Sharmila

机构信息

Indian Grassland and Fodder Research Institute, Jhansi- 284 003, India.

出版信息

J Environ Biol. 2010 Jul;31(4):549-52.

Abstract

Plant height, biomass production, assimilatory functions and chlorophyll accumulation of Panicum maximum and Stylosanthes hamata in intercropping systems was influenced significantly under elevated CO2 (600 +/- 50 ppm) in open top chambers (OTCs). The plant height increased by 32.0 and 49.0% over the control in P. maximum and S. hamata respectively in intercropping system under elevated CO2 over open field grown crops (Ca). P. maximum and S. hamata produced 67 and 85% higher fresh and dry biomass respectively under elevated CO2. Rates of photosynthesis and stomatal conductance increased in both the crop species in intercropping systems under elevated CO2. The canopy photosynthesis (photosynthesis x leaf area index) of these crop species increased significantly under elevated CO2 over the open grown crops. The chlorophyll a and b accumulation were also higher in the leaves of both the crop species as grown in OTC with elevated CO2. The increased chlorophyll content, leaf area index and canopy photosynthesis led to higher growth and biomass production in these crop species under elevated CO2. The total carbon sequestration in crop biomass and soils during the three years was 21.53 Mg C/ha under elevated CO2. The data revealed that P. maximum and S. hamata intercropping system is the potential as a sink for the increasing level of CO2 in the atmosphere in the semi-arid tropics.

摘要

在开放式顶部气室(OTC)中,当二氧化碳浓度升高至600±50 ppm时,间作系统中臂形草和钩状柱花草的株高、生物量生产、同化功能和叶绿素积累均受到显著影响。与露天种植作物(Ca)相比,在二氧化碳浓度升高的间作系统中,臂形草和钩状柱花草的株高分别比对照增加了32.0%和49.0%。在二氧化碳浓度升高的情况下,臂形草和钩状柱花草的鲜生物量和干生物量分别增加了67%和85%。在二氧化碳浓度升高的间作系统中,两种作物的光合速率和气孔导度均有所增加。与露天种植作物相比,在二氧化碳浓度升高的情况下,这些作物的冠层光合作用(光合速率×叶面积指数)显著增加。在二氧化碳浓度升高的OTC中生长的两种作物叶片中,叶绿素a和b的积累也更高。叶绿素含量、叶面积指数和冠层光合作用的增加导致这些作物在二氧化碳浓度升高的情况下生长加快、生物量增加。在二氧化碳浓度升高的情况下,三年间作物生物量和土壤中的总碳固存量为21.53 Mg C/ha。数据表明,在半干旱热带地区,臂形草和钩状柱花草间作系统有潜力成为大气中不断增加的二氧化碳的汇。

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