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The effect of increased atmospheric temperature and CO2 concentration during crop growth on the chemical composition and in vitro rumen fermentation characteristics of wheat straw

机译:作物生长期间大气温度和CO2浓度升高对麦秸化学成分和体外瘤胃发酵特性的影响

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摘要

This experiment was conducted to investigate the effects of increased atmospheric temperature and CO2 concentration during crop growth on the chemical composition and in vitro rumen fermentation characteristics of wheat straw. The field experiment was carried out from November 2012 to June 2013 at Changshu (31°32′93″N, 120°41′88″E) agro-ecological experimental station. A total of three treatments were set. The concentration of CO2 was increased to 500 μmol/mol in the first treatment (CO2 group). The temperature was increased by 2 °C in the second treatment (TEM group) and the concentration of CO2 and temperature were both increased in the third treatment (CO2 + TEM group). The mean temperature and concentration of CO2 in control group were 10.5 °C and 413 μmol/mol. At harvesting, the wheat straws were collected and analyzed for chemical composition and in vitro digestibility. Results showed that dry matter was significantly increased in all three treatments. Ether extracts and neutral detergent fiber were significantly increased in TEM and CO2 + TEM groups. Crude protein was significantly decreased in CO2 + TEM group. In vitro digestibility analysis of wheat straw revealed that gas production was significantly decreased in CO2 and CO2 + TEM groups. Methane production was significantly decreased in TEM and CO2 + TEM groups. Ammonia nitrogen and microbial crude protein were significantly decreased in all three treatments. Total volatile fatty acids were significantly decreased in CO2 and CO2 + TEM groups. In conclusion, the chemical composition of the wheat straw was affected by temperature and CO2 and the in vitro digestibility of wheat straw was reduced, especially in the combined treatment of temperature and CO2.
机译:进行该实验以研究作物生长过程中大气温度和CO2浓度升高对小麦秸秆化学成分和体外瘤胃发酵特性的影响。田间试验于2012年11月至2013年6月在常熟(31°32′93″ N,120°41′88″ E)农业生态试验站进行。总共设置了三种治疗。在第一个治疗中(CO2组),CO2的浓度增加到500μmol/ mol。第二种治疗(TEM组)的温度升高了2℃,第三种治疗(CO2 + TEM组)的CO2浓度和温度均升高。对照组的平均温度和CO2浓度为10.5°C和413μmol/ mol。收获时,收集麦秸并分析其化学组成和体外消化率。结果表明,在所有三种处理中,干物质均显着增加。在TEM和CO2 ++ TEM组中,乙醚提取物和中性洗涤剂纤维显着增加。 CO2 + TEM组粗蛋白显着降低。小麦秸秆的体外消化率分析表明,CO2和CO2 + TEM组的产气量明显减少。 TEM组和CO2 + TEM组的甲烷产量显着下降。在所有三种处理中,氨氮和微生物粗蛋白均显着降低。 CO2和CO2 + TEM组的总挥发性脂肪酸显着降低。总之,温度和CO 2影响麦草的化学成分,降低麦草的体外消化率,特别是在温度和CO 2的联合处理中。

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