首页> 外文会议>2nd International Nitrogen Conference , Oct 14-18, 2001, Potomac, Maryland, USA >Symbiotic Performance of Herbaceous Legumes in Tropical Cover Cropping Systems
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Symbiotic Performance of Herbaceous Legumes in Tropical Cover Cropping Systems

机译:草本豆科植物在热带覆盖系统中的共生性能

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Increasing use of herbaceous legumes such as mucuna (Mucuna pruriens var. utilis [Wright] Bruck) and lablab (Lablab purpureus [L.] Sweet) in the derived savannas of West Africa can be attributed to their potential to fix atmospheric nitrogen (N_2). The effects of management practices on N_2 fixation in mucuna and lablab were examined using ~(15)N isotope dilution technique. Dry matter yield of both legumes at 12 weeks was two to five times more in in situ mulch (IM) than live mulch (LM) systems. Land Equivalent Ratios, however, showed 8 to 30% more efficient utilization of resources required for biomass production under LM than IM systems. Live mulching reduced nodule numbers in the legumes by one third compared to values in the IM systems. Similarly, nodule mass was reduced by 34 to 58% under LM compared to the IM systems. The proportion of fixed N_2 in the legumes was 18% higher in LM than IM systems. Except for inoculated mucuna, the amounts of N fixed by both legumes were greater in IM than LM systems. Rhizobia inoculation of the legumes did not significantly increase N_2 fixation compared to uninoculated plots. Application of N fertilizer reduced N_2 fixed in the legumes by 36 to 51% compared to inoculated or uninoculated systems. The implications of cover cropping, N fertilization, and rhizobia inoculation on N contributions of legumes into tropical low-input systems were discussed.
机译:在西非衍生稀树草原上增加使用豆科植物(Mucuna pruriens var。utilis [Wright] Bruck)和Lablab(Lablab purpureus [L.] Sweet)等草本豆类,可以归因于其固定大气氮(N_2)的潜力。 。使用〜(15)N同位素稀释技术检查了管理措施对粘液和实验室中N_2固定的影响。就地覆盖(IM)而言,两种豆类植物在12周时的干物质产量比活覆盖(LM)系统高两到五倍。然而,土地当量比率显示,LM方式下的生物质生产所需资源的资源利用率比IM系统高出8至30%。与IM系统中的值相比,实时覆盖使豆类中的根瘤数减少了三分之一。同样,与IM系统相比,LM下的结节质量减少了34%至58%。 LM中豆类中固定N_2的比例比IM系统高18%。除了接种粘液菌外,IM中两种豆类固定的N量都比LM系统中的要大。与未接种地块相比,根瘤菌接种豆科植物不会显着增加N_2固定。与接种或未接种的系统相比,施用氮肥可使豆类中固定的N_2减少36%至51%。讨论了套作,氮肥和根瘤菌接种对豆类对热带低投入系统的氮贡献的影响。

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