尼日利亚包奇州不同土壤和水分条件下耐旱牧草品种的选择

Amarachi G. Nwokocha, S. Idris, Yunusa M. Ishiaku
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摘要

畜牧生产是一个农业系统,是人类蛋白质和卡路里的来源。它的生产是一些人的主要经济来源,也是另一些人的补充来源。然而,土地侵占和干旱制约了畜牧业牧草的可持续生产。由于农牧民冲突和湿地灭绝,情况进一步恶化。在苏丹萨凡纳地区开展一项能在不同土壤质地和水分条件下良好生长的最佳牧草品种选择试验势在必行。本试验在美国巴布科克大学的纱棚内,客观地考察了高粱、雄脚草、白毛蚶和白毛蚶在砂质、砂质粘土壤土和砂质壤土质地和100%、75%、50%和25% 4种水分配比下的生产性能。在整个试验过程中都采用了标准的农艺建议。收集的数据包括株高、鲜干茎重、根重、叶数和叶长。生成的数据采用方差分析进行分析。结果表明,砂质壤土(Gamawa土壤类型)最适合各牧草品种的生长,砂质粘壤土(Zaki土壤类型)次之。无论土壤质地类型和水分胁迫水平如何处理,桤木的表现都显著优于其他牧草,其次是白杨。对于水位;100%和75%是最有希望的生物量结果。根据结果,建议该地区受试牧场的生产用水量为75%,比实际作物需水量少25%。
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Selection of Drought-Tolerant Pasture Species under Varying Soil and Moisture Conditions in Bauchi State, Nigeria
Livestock production is an agricultural system that serves as humanity’s protein and calorie source. Its production is the main economic stay for some people and a complementary source for others. However, land misappropriation and draught constrain the sustainable production of pasture for feeding livestock. Further aggravated by farmer/herder clashes and wetlands extinction. The need for an experiment for the selection of the best pasture species in the Sudan Savannah region that can thrive well under diverse soil textures and moisture status becomes imperative. This trial was conducted in the screen house of Babcock University, objectively to test the performances of Sorghum almum, Andropogon gayanus, Brachiaria mulato and Centrosema pascuorum under Sand, Sandy Clay Loam, and Sandy Loam textures and four water regimes: 100%, 75%, 50%, and 25%. Standard agronomic recommendations were practised throughout the experiment. Data collected included plant height, fresh and dry shoot and root weights, number of leaves, and leaf length. Data generated were analyzed using ANOVA. According to the results, Sandy Loam soil (Soil type from Gamawa) was the best for supporting all the pasture species, followed by Sandy Clay Loam (Soil type from Zaki). S. almum outperformed other pasture species significantly irrespective of soil textural type and water stress level treatments, followed by B. mulato. For water levels; 100% and 75% had the most promising biomass outcome. Based on the results, a 75% water regime which represents 25% deficit of the actual crop water requirement is recommended for the production of the tested pastures in the area.
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