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Effect of reduced ferulate-mediated lignin/arabinoxylan cross-linking in corn silage on feed intake, digestibility, and milk production

机译:玉米青贮饲料中阿魏酸介导的木质素/阿拉伯木聚糖交联减少对饲料摄入,消化率和产奶量的影响

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摘要

Cross-linking of lignin to arabinoxylan by ferulates limits in vitro rumen digestibility of grass cell walls. The effect of ferulate cross-linking on dry matter intake (DMI), milk production, and in vivo digestibility was investigated in ad libitum and restricted-intake digestion trials with lambs, and in a dajry cow performance trial using the low-ferulate sfe corn mutant. Silages of 5 inbred corn lines were fed: W23, 2 W23s/e lines (M04- 4 and M04-21), B73, and B7Sbm3. As expected, the W23s/e silages contained fewer ferulate ether cross-links and B73bm3 silage had a lower lignin concentration than the respective genetic controls. Silages were fed as the sole ingredient to 4 lambs per silage treatment. Lambs were confined to metabolism crates and fed ad libitum for a 12-d adaptation period followed by a 5-d collection period of feed refusals and feces. Immediately following the ad libitum feeding trial, silage offered was limited to 2% of body weight. After a 2-d adaptation to restricted feeding, feed refusals and feces were collected for 5 d. Seventy Holstein cows were blocked by lactation, days in milk, body weight, and milk production and assigned to total mixed ration diets based on the 5 corn silages. Diets were fed for 28 d and data were collected on weekly DMI and milk production and composition. Fecal grab samples were collected during the last week of the lactation trial for estimation of feed digestibility using acid-insoluble ash as a marker. Silage, total mixed ration, feed refusals, and fecal samples were analyzed for crude protein, starch, neutral detergent fiber (NDF), cell wall polysaccharides, and lignin. The W23s/e silages resulted in lower DMI in the ad libitum trial than the W23 silage, but DMI did not differ in the restricted trial. No differences were observed for NDF or cell wall polysaccharide digestibility by lambs with restricted feeding, but the amount of NDF digested daily increased for lambs fed the M04-21 W23s/e silage ad libitum. Lambs were less selective against NDF and lignin when offered W23s/e silages. The B73bm3 silage did not affect DMI or digestibility of cell walls at the restricted feeding level, but total daily NDF digested was greater at ad libitum intake. Intake, milk production, and cell wall digestibility were greater for cows fed diets containing W23s/e silages than for those fed W23 silage. Although milk production was greater for the B73bm3 diet, DMI and cell wall digestibility were not altered. Cows were less selective against cell wall material when fed both W23s/e and B73bm3 silages. Reduced ferulate cross-linking in sfe corn silage is a new genetic mechanism for improving milk production.
机译:阿魏酸酯对木质素与阿拉伯木聚糖的交联限制了草细胞壁的体外瘤胃消化率。阿魏酸酯交联对羔羊的随意摄入和限制摄入消化试验以及在使用低阿魏酸盐的sfe玉米的达里牛性能试验中,研究了阿魏酸酯交联对干物质摄入(DMI),产奶量和体内消化率的影响。突变体。饲喂5个自交玉米系青贮饲料:W23、2个W23s / e系(M04-4和M04-21),B73和B7Sbm3。正如预期的那样,W23s / e青贮饲料中含有较少的阿魏酸醚交联键,而B73bm3青贮饲料中的木质素浓度低于相应的遗传对照。青贮饲料作为唯一成分喂入每只青贮饲料4只羊羔。羔羊被限制在新陈代谢的板条箱中,自由采食12天的适应期,然后是5天的拒食和粪便收集期。在随意喂养试验之后,立即提供的青贮饲料仅限于体重的2%。限制饲喂2天后,拒绝饲喂和粪便收集5天。 70头荷斯坦奶牛因泌乳,泌乳天数,体重和产奶量而受阻,并根据5种玉米青贮饲料分配给混合日粮。饲喂日粮28天,并收集每周DMI和牛奶产量及组成的数据。在泌乳试验的最后一周收集粪便样本,以酸不溶性灰分作为标记物来评估饲料的消化率。对青贮饲料,总混合日粮,拒食和粪便样品进行了粗蛋白,淀粉,中性洗涤剂纤维(NDF),细胞壁多糖和木质素的分析。 W23s / e青贮饲料在随意试验中的DMI低于W23青贮饲料,但DMI在限制性试验中没有差异。饲喂受限的羔羊的NDF或细胞壁多糖消化率没有差异,但随意饲喂M04-21 W23s / e青贮饲料的羔羊每天消化的NDF量增加。当提供W23s / e青贮饲料时,羔羊对NDF和木质素的选择性较低。在限制饲喂水平下,B73bm3青贮饲料不会影响DMI或细胞壁的消化率,但随意摄入时,每日总NDF消化量更大。饲喂含W23s / e青贮饲料的母牛的摄入量,产奶量和细胞壁消化率要高于饲喂W23青贮饲料的母牛。尽管B73bm3饮食的牛奶产量更高,但DMI和细胞壁消化率没有改变。饲喂W23s / e和B73bm3青贮饲料时,母牛对细胞壁材料的选择性较低。 sfe玉米青贮饲料中阿魏酸交联的减少是提高牛奶产量的新遗传机制。

著录项

  • 来源
    《Journal of dairy science》 |2011年第10期|p.5124-5137|共14页
  • 作者单位

    USDA-ARS, Plant Science Research Unit and US Dairy Forage Research Center Cluster, St. Paul, MN 55108 ,Department of Agronomy and Plant Genetics, University of Minnesota, St. Paul 55108;

    USDA-ARS, US Dairy Forage Research Center, Madison, Wl 53706;

    Department of Agronomy and Plant Genetics, University of Minnesota, St. Paul 55108;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    corn silage; ferulate; digestibility; milk production;

    机译:玉米青贮阿ulate消化率牛奶生产;

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