原生或外源苯并恶嗪类化合物对新鲜或青贮全玉米饲粮体外瘤胃发酵及降解率的影响

IF 2.4 3区 农林科学 Q1 AGRICULTURE, DAIRY & ANIMAL SCIENCE
Claudia Lang, Mubarik Mahmood, Ratchaneewan Khiaosa-Ard, Anna Kaltenegger, Elke Humer, Stefanie Wetzels, Josef J Gross, Christelle A M Robert, Pierre Mateo, Matthias Erb, Qendrim Zebeli, Thomas Hartinger
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引用次数: 0

摘要

苯并恶嗪类化合物(BXs)是次生植物化合物,是玉米植物防御食草动物和微生物病原体的重要组成部分。整株玉米是反刍家畜的常见饲料,最常作为青贮饲料,这一保存过程促进bx转化为有效的下游代谢物6-甲氧基-苯并恶唑啉-2(3H)- 1 (MBOA)。BXs的抗菌作用可能不仅限于植物病原体,还可能影响瘤胃生态系统,但尚未对此进行研究。本研究采用瘤胃模拟技术,分析了低BX和高BX玉米基因型(新鲜或青贮形式)对体外瘤胃发酵和主要近源营养物质可降解性的影响。此外,还测试了外源MBOA在低BX玉米基因型培养中的添加情况。所获得的数据显示,pH、短链脂肪酸、产气量和气体组成等瘤胃发酵变量没有差异。同样,培养高BX玉米基因型或添加外源MBOA也不影响底物的降解性。青贮玉米与新鲜玉米相比,某些近缘营养物质的可降解性略有提高,但这与玉米基因型或外源MBOA无关。未发现BXs对体外瘤胃发酵的不利影响,基于此,未来的研究可能会关注BXs或其衍生物的潜在吸收及其对动物的长期影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of Native or Exogenous Benzoxazinoids on In Vitro Ruminal Fermentation and Degradability of Either Fresh or Ensiled Whole-Crop Maize-Based Diets in Cattle.

Benzoxazinoids (BXs) are secondary plant compounds and an important part of the plant's defence system against herbivore attacks and microbial pathogens in maize. Whole-crop maize represents a common feed for ruminant livestock and is most commonly fed as silage, a conservation process that promotes the conversion of BXs into the potent downstream metabolite 6-Methoxy-benzoxazolin-2(3H)-one (MBOA). Possibly, the antimicrobial impact of BXs may not be restricted to plant pathogens but could as well affect the rumen ecosystem, which, however, has not yet been investigated. The present study analysed the effects of a low and a high BX maize genotype, either in fresh or ensiled form, on the in vitro ruminal fermentation and the degradability of main proximate nutrients using a rumen simulation technique. Moreover, the addition of exogenous MBOA when incubating the low BX maize genotype was tested. The data obtained showed no differences in ruminal fermentation variables, such as pH, short-chain fatty acids, gas production and gas composition. Likewise, the incubation of high BX maize genotype or the addition of exogenous MBOA did not affect the substrate degradability. The ensiling of maize slightly increased the degradability of certain proximate nutrients when compared to fresh maize, which, however, should not be related to maize genotype or exogenous MBOA. No detrimental impact of BXs on the in vitro ruminal fermentation were found and based on this, future studies may then focus on potential absorption and subsequent impact of BXs or its derivatives on the animal in long-term.

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来源期刊
Journal of Animal Physiology and Animal Nutrition
Journal of Animal Physiology and Animal Nutrition 农林科学-奶制品与动物科学
CiteScore
6.30
自引率
0.00%
发文量
124
审稿时长
2 months
期刊介绍: As an international forum for hypothesis-driven scientific research, the Journal of Animal Physiology and Animal Nutrition publishes original papers in the fields of animal physiology, biochemistry and physiology of nutrition, animal nutrition, feed technology and preservation (only when related to animal nutrition). Well-conducted scientific work that meets the technical and ethical standards is considered only on the basis of scientific rigor. Research on farm and companion animals is preferred. Comparative work on exotic species is welcome too. Pharmacological or toxicological experiments with a direct reference to nutrition are also considered. Manuscripts on fish and other aquatic non-mammals with topics on growth or nutrition will not be accepted. Manuscripts may be rejected on the grounds that the subject is too specialized or that the contribution they make to animal physiology and nutrition is insufficient. In addition, reviews on topics of current interest within the scope of the journal are welcome. Authors are advised to send an outline to the Editorial Office for approval prior to submission.
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