豇豆固定林下饲用玉米不同的结实率会影响两种植物的近似组成

S. Barsila
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摘要

饲料玉米(Zea mays)和豇豆(Vigna unguiculata)混合栽培因其快速生长、高生物量产量、高适口性和互惠生长行为而受到欢迎。评价不同种率玉米混交林和固定种率豇豆混交林的化学成分状况,可以确定最佳的牧草收获期和适宜的种率。因此,2016年5月至9月,在尼泊尔兰普尔农林大学(AFU)按照标准农艺做法进行了玉米豇豆种植试验。试验采用随机完全区组设计(RCBD),在化肥施用量相同的条件下,分为T1 (40kg/ha玉米种子)、T2 (50kg/ha玉米种子)、T3 (30kg/ha玉米种子)和T4 (40kg/ha玉米种子+除草)4个处理,每个处理20 kg/ha豇豆种子,共5个重复。样品在AFU动物营养实验室进行近似分析。粗纤维、粗蛋白质和粗灰分含量在不同处理间的差异具有极显著性,粗脂肪含量在两季处理间的差异具有统计学意义。玉米茎部灰分和粗纤维含量在T1时最高,分别为10.94%和31.24%;大豆茎部粗蛋白质含量在T3时最高,为28.09%,播后45 d粗蛋白质含量与T2相近。播后75 d, T4处理玉米茎部粗纤维(CF)含量最高,达35.87%。研究结果表明,如果以40公斤玉米/公顷的播种率来满足平衡饲料对灰分和粗纤维的较高要求,则适宜在播后45天采收玉米;如果期望收获最高的粗蛋白质含量,则适宜在75公斤玉米/公顷采收豇豆,但可能以较高的粗纤维含量为代价。然而,结果清楚地表明,在饲料林分中加入饲料豇豆作为豆类成分,如玉米,可能有助于在收获后期保持持久的营养价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Different seed rates of forage maize with a fixed stand of cowpea affects proximate composition of both species
Mixed cultivation of fodder maize (Zea mays) and cowpea (Vigna unguiculata) is popular due to their fast-growing, high biomass yielding, high palatable, and mutualistic growing behavior. Evaluation of status of chemical composition of these mixed stands grown with different seed rates of maize, but with a fixed stand of cowpea would suggest the best period of forage harvesting and also the appropriate seed rate. Accordingly an experiment was done by following standard agronomic practices to grow maize-cowpea at Agriculture and Forestry University (AFU) Rampur, Nepal during May to September 2016. The experiment was done by using randomized complete block design (RCBD) consisting of 4 treatments, T1 (40kg/ ha maize seed), T2 (50kg/ha maize seed), T3 (30kg/ha maize seed) and T4 (40kg/ha maize seed + weeding) along with 20 kg/ha of cowpea seed for each treatment, and 5 replications, under a similar rate of chemical fertilizer. Samples were tested for proximate analysis at Animal Nutrition laboratory of AFU. A highly significant result was obtained among different treatments for crude fibre, crude protein, and ash content while ether extract content was statistically similar among the treatments in both the harvests. Maximum ash (10.94%) and crude fibre (31.24%) content were obtained in T1 on maize stem, and higher crude protein (CP) (28.09%) content was obtained in T3 on cowpea that was similar with T2 on cowpea for CP content at 45 days after sowing. At 75 days after sowing, higher crude fibre (CF) (35.87%) content was obtained for treatment T4 on maize stem. Research results suggested that harvesting of maize is suitable at 45 days after sowing (DAS) if higher ash and crude fibre requirement for balanced feed is expected to meet by using 40 kg seed rate of maize/ha whereas harvesting of cowpea at 75 DAS would be more appropriate if highest crude protein content is expected to harvest, but it would be possible to attain at the cost of higher crude fiber content. Nevertheless results clearly indicated that inclusion of fodder cowpea as a legume component in a fodder stand, such as maize could be helpful for a persistent nutritive value during later stage of harvesting.
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