湿润热带地区不同加工方式下火焰(Delonix regia)种子的营养成分及体外发酵特性

Lamidi Akeem Atanda, E E Evien, O. Tajudeen
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引用次数: 0

摘要

本研究评估了在湿润热带地区不同加工方法下的flamboyant (Delonix regia)种子的营养成分和体外发酵特性。8种不同的处理方法组成了实验处理,即T1(原/对照);T2(烤);T3(水中浸泡24小时);T4(水中浸泡48小时);T5(瘤胃液浸泡24小时);T6(瘤胃液浸泡48小时);T7(半煮45分钟)和T8(煮45分钟)。在完全随机设计(CRD)中重复了三次治疗。利用统计分析系统(SAS) version 9对营养成分和体外发酵特性进行单因素方差分析(ANOVA)。采用Duncan 's New multiple Range Test (DNMRT)分离平均值。结果表明,显著(P0.05)内容被记录为干物质(DM)、粗蛋白(CP)、醚提取物(EE),灰,中性洗涤纤维(NDF)、酸性洗涤纤维(ADF)、磷(P)和铁(Fe)内容在整个实验治疗,内容范围从88.41 - 89.51% 20.59 - 21.45% 2.24 - 3.05% 4.25 - 4.89% 38.89 - 39.78% 25.14 - 25.47% 3.7 - 4.0%,62.90 - 66.50毫克/公斤DM、CP, EE,灰、NDF、ADF、P和铁含量。甲烷气体(CH4)产量差异显著(P<0.05),差异范围为15.33 ~ 29.33 (ml)。不同处理的发酵效率(FE)、短链脂肪酸(SCFA)、体外有机物消化率(IVOMD)和代谢能(ME)值相近,分别为0.37 ~ 0.67、0.75 ~ 1.02 Mmol、61.92 ~ 68.61%和7.38 ~ 9.55 MJ/kg DM。综上所述,无论采用何种加工方法,花火籽除粗纤维外,其余营养成分均能满足反刍动物的营养需求,粗纤维可通过粗饲料或纤维性饲料加以强化。体外发酵特性表明,该种子具有作为饲料资源支持反刍动物生产的潜力,特别是在旱季。
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Nutrient Profile and in vitro Fermentation Characteristics of Flamboyant (Delonix regia) Seeds Subjected to Different Processing Methods for Sustainable Ruminant Production in Humid Tropic
This study assessed the nutrient profile and in vitro fermentation characteristics of flamboyant (Delonix regia) seeds subjected to different processing methods for sustainable ruminant production in humid tropic. Eight (8) different processing methods formed the experimental treatments, namely T1 (raw/control); T2 (roasted); T3 (soaked in water for 24 hours); T4 (soaked in water for 48 hours); T5 (soaked in rumen liquor for 24 hours); T6 (soaked in rumen liquor for 48 hours); T7 (parboiled for 45 minutes.) and T8 (cooked 45 minutes. The treatments were replicated three times in a Completely Randomized Design (CRD). Data obtained on the nutrient profile and in vitro fermentation characteristics was subjected to a One-way Analysis of Variance (ANOVA) using statistical analysis system (SAS) version 9. The mean was separated using Duncan’s New multiple Range Test (DNMRT). The results showed that there was a significant (P<0.05) effects of processing methods on crude fibre (CF) and calcium (Ca) contents of the processed seeds with the values ranges from 2.97 % in T4 to 4.59% in T8 for crude fibre (CF). Similar (P>0.05) contents was recorded for dry matter (DM), crude protein (CP), ether extract (EE), ash, neutral detergent fibre (NDF), acid detergent fibre (ADF), phosphorous (P) and iron (Fe) content across the experimental treatments, the contents ranges from 88.41 – 89.51%, 20.59 – 21.45%, 2.24 – 3.05%, 4.25 – 4.89% 38.89 – 39.78%, 25.14 – 25.47%, 3.7 – 4.0%, 62.90 – 66.50mg/kg for DM, CP, EE, ash, NDF, ADF, P and Fe content respectively. Significant (P<0.05) different was observed for methane gas (CH4) production, with values ranges from 15.33 – 29.33 (ml). Similar value was observed for fermentation efficiency (FE), short chain fatty acids (SCFA), in vitro organic matter digestibility (IVOMD) and metabolisible energy (ME) across the experimental treatments and the values ranges from 0.37 – 0.67, 0.75 – 1.02 Mmol, 61.92 – 68.61% and 7.38 – 9.55 MJ/kg DM, respectively. Conclusively, irrespective of the processing methods flamboyant seeds had adequate nutrients to meet the nutritional requirements of ruminants except crude fibre (CF) which can be fortified with roughages or fibrous feedstuffs. The in vitro fermentation characteristics showed that the seed has potentials as a feed resource to support ruminant animal production especially in the dry season.
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