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半干旱热带地区基于阿拉伯胶树(Forssk.)Hayne的农林牧复合系统下,毛花雀稗(Cenchrus ciliaris L.)的生长、生物量生产与光合作用

Growth, biomass production and photosynthesis of Cenchrus ciliaris L. under Acacia tortilis (Forssk.) Hayne based silvopastoral systems in semi arid tropics.

作者信息

Mishra A K, Tiwari H S, Bhatt R K

机构信息

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

出版信息

J Environ Biol. 2010 Nov;31(6):987-93.

Abstract

The growth, biomass production and photosynthesis of Cenchrus ciliaris was studied under the canopies of 17 yr old Acacia tortilis trees in semi arid tropical environment. On an average the full grown canopy of A. tortilis at the spacing of 4 x 4 m allowed 55% of total Photosynthetically Active Radiation (PAR) which in turn increased Relative Humidity (RH) and reduced under canopy temperature to -1.75 degrees C over the open air temperature. C. ciliaris attained higher height under the shade of A. tortilis. The tiller production and leaf area index decreased marginally under the shade of tree canopies as compared to the open grown grasses. C. ciliaris accumulated higher chlorophyll a and b under the shade of tree canopies indicating its shade adaptation potential. The assimilatory functions such as rate of photosynthesis, transpiration, stomatal conductance, photosynthetic water use efficiency (PN/TR) and carboxylation efficiency (PN/CINT) decreased under the tree canopies due to low availability of PAR. The total biomass production in term of fresh and dry weight decreased under the tree canopies. On average of 2 yr C. ciliaris had produced 12.78 t ha(-1) green and 3.72 -t ha(-1) dry biomass under the tree canopies of A. tortilis. The dry matter yield reduced to 38% under the tree canopies over the open grown grasses. The A. tortilis + C. ciliaris maintained higher soil moisture, organic carbon content and available N P K for sustainable biomass production for the longer period. The higher accumulation of crude protein, starch, sugar and nitrogen in leaves and stem of C. ciliaris indicates that this grass species also maintained its quality under A. tortilis based silvopastoral system. The photosynthesis and dry matter accumulation are closely associated with available PAR indicating that for sustainable production of this grass species in the silvopasture systems for longer period about 55% or more PAR is required.

摘要

在半干旱热带环境中,对生长在17年生阿拉伯胶树树冠下的狗尾草的生长、生物量生产和光合作用进行了研究。平均而言,株行距为4×4米的成年阿拉伯胶树树冠能透过55%的光合有效辐射(PAR),这反过来增加了相对湿度(RH),并使树冠下的温度比露天温度降低了1.75摄氏度。狗尾草在阿拉伯胶树的树荫下长得更高。与露天生长的草相比,在树冠遮荫下,狗尾草的分蘖产量和叶面积指数略有下降。狗尾草在树冠遮荫下积累了更高的叶绿素a和叶绿素b,表明其具有适应遮荫的潜力。由于光合有效辐射的可利用性较低,树冠下的光合作用、蒸腾作用、气孔导度、光合水分利用效率(PN/TR)和羧化效率(PN/CINT)等同化功能下降。树冠下以鲜重和干重计算的总生物量产量下降。平均两年间,狗尾草在阿拉伯胶树的树冠下产生了12.78吨/公顷的绿色生物量和3.72吨/公顷的干生物量。与露天生长的草相比,树冠下的干物质产量降低到了38%。阿拉伯胶树 + 狗尾草组合在较长时期内保持了较高的土壤湿度、有机碳含量和有效氮磷钾,有利于可持续生物量生产。狗尾草叶片和茎中粗蛋白、淀粉、糖和氮的较高积累表明,在基于阿拉伯胶树的林牧系统下,这种草的品质也得以保持。光合作用和干物质积累与可利用的光合有效辐射密切相关,这表明为了在林牧系统中长时间可持续地生产这种草,需要约55%或更多的光合有效辐射。

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