Assessment of cutting time on nutrient values, in vitro fermentation and methane production among three ryegrass cultivars.

IF 2.2 2区 农林科学 Asian-Australasian Journal of Animal Sciences Pub Date : 2020-08-01 Epub Date: 2019-10-21 DOI:10.5713/ajas.19.0369
Chunmei Wang, Fujiang Hou, Metha Wanapat, Tianhai Yan, Eun Joong Kim, Nigel David Scollan
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Abstract

Objective: The 3×3 factorial arrangement was used to investigate if either high watersoluble carbohydrates (WSC) cultivars or suitable time of day that the grass cut could improve nutrient values and in vitro fermentation characteristics.

Methods: The 3 cultivars were mowed at 3 diurnal time points and included a benchmark WSC ryegrass cultivar 'Premium', and 2 high WSC cultivars AberAvon and AberMagic, which contained, on average, 157, 173, and 193 g/kg dry matter (DM) of WSC, and 36.0, 36.5, and 34.1 g/kg DM of N during 7th regrowth stage, respectively. The fermentation jars were run at 39°C with gas production recorded and sampled at 2, 5, 8, 11, 14, 17, 22, 28, 36, and 48 h. The rumen liquid was collected from 3 rumen fistulated cows grazing on ryegrass pasture.

Results: High WSC cultivars had significantly greater WSC content, in vitro DM digestibility (IVDMD) and total gas production (TGP), and lower lag time than Premium cultivar. Methane production for AberMagic cultivar containing lower N concentration was marginally lower than that for AberAvon and Premium cultivars. Grass cut at Noon or PM contained greater WSC concentration, IVDMD and TGP, and lower N and neutral detergent fiber (NDF) contents, but CH4 production was also increased, compared to grass cut in AM. Meanwhile, the effects of diurnal cutting time were influenced by cultivars, such as in vitro CH4 production for AberMagic was not affected by cutting time. The IVDMD and gas production per unit of DM incubated were positively related to WSC concentration, WSC/N and WSC/NDF, respectively, and negatively related to N and NDF concentrations.

Conclusion: These results imply either grass cut in Noon or PM or high WSC cultivars could improve nutrient values, IVDMD and in vitro TGP, and that AberMagic cultivar has a slightly lower CH4 production compared to AberAvon and Premium. Further study is necessary to determine whether the increase of CH4 production response incurred by shifting from AM cutting to Noon and/or PM cutting could be compensated for by high daily gain from increased WSC concentration and DM digestibility.

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评估割草时间对三种黑麦草栽培品种的营养价值、体外发酵和甲烷产量的影响。
目的采用 3×3 因式排列,研究高水溶性碳水化合物(WSC)栽培品种或一天中合适的割草时间是否能提高营养价值和体外发酵特性:3 种栽培品种在 3 个昼夜时间点刈割,其中包括一种基准水溶性碳水化合物黑麦草栽培品种 "Premium",以及两种高水溶性碳水化合物栽培品种 AberAvon 和 AberMagic,它们在第 7 个生长期的平均水溶性碳水化合物含量分别为 157、173 和 193 克/千克干物质(DM),氮含量分别为 36.0、36.5 和 34.1 克/千克 DM。发酵罐的温度为 39°C,记录产气量并在 2、5、8、11、14、17、22、28、36 和 48 小时取样:结果:高 WSC 栽培品种的 WSC 含量、体外 DM 消化率 (IVDMD) 和总产气量 (TGP) 明显高于特级栽培品种,滞后时间也低于特级栽培品种。氮浓度较低的 AberMagic 栽培品种的甲烷产量略低于 AberAvon 和 Premium 栽培品种。与上午割下的草相比,中午或下午割下的草含有更高的 WSC 浓度、IVDMD 和 TGP,N 和中性洗涤纤维 (NDF) 含量较低,但 CH4 产量也有所增加。同时,昼夜割草时间的影响受到不同品种的影响,如AberMagic的体外CH4产量不受割草时间的影响。培养单位DM的IVDMD和产气量分别与WSC浓度、WSC/N和WSC/NDF呈正相关,而与N和NDF浓度呈负相关:这些结果表明,正午割草、下午割草或高WSC栽培品种都能提高营养价值、IVDMD和体外TGP,与AberAvon和Premium相比,AberMagic栽培品种的CH4产量略低。有必要进行进一步研究,以确定从上午割草改为中午和/或下午割草所增加的CH4产生量是否可以通过增加WSC浓度和DM消化率所带来的高日增重来补偿。
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来源期刊
Asian-Australasian Journal of Animal Sciences
Asian-Australasian Journal of Animal Sciences AGRICULTURE, DAIRY & ANIMAL SCIENCE-
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期刊介绍: Asian-Australasian Journal of Animal Sciences (AJAS) aims to publish original and cutting-edge research results and reviews on animal-related aspects of the life sciences. Emphasis will be placed on studies involving farm animals such as cattle, buffaloes, sheep, goats, pigs, horses, and poultry. Studies for the improvement of human health using animal models may also be publishable. AJAS will encompass all areas of animal production and fundamental aspects of animal sciences: breeding and genetics, reproduction and physiology, nutrition, meat and milk science, biotechnology, behavior, welfare, health, and livestock farming systems.
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