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首页> 外文期刊>Comparative biochemistry and physiology, Part A. Molecular and integrative physiology >Production of short-chain fatty acids and gas from various oligosaccharides by gut microbes of carp (Cyprinus carpio L.) in micro-scale batch culture.
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Production of short-chain fatty acids and gas from various oligosaccharides by gut microbes of carp (Cyprinus carpio L.) in micro-scale batch culture.

机译:鲤鱼肠道微生物在小规模分批培养中由各种低聚糖生产短链脂肪酸和气体。

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We studied the metabolism of various oligosaccharides by carp (Cyprinus carpio) hindgut microbes by measuring gas productivity and organic acid production in gut contents using a 50-microl-scale batch culture system. Carp hindgut contents were incubated with 500 microg each of raffinose, lactosucrose, kestose, lactulose, gentiobiose, 4'-galactosyllactose and 6'-galactosyllactose and soybean-, xylo-, and isomalto-oligosaccharides or none (blank culture) at 25 degrees C for 6 h. The time-course of gas release from the culture (Y microl/culture) was expressed as an exponential function of incubation time (t) [Y=A+Bx(1-e(-kt))]; A, B and k are constants). Potential production of gas (A+B) from soybean-oligosaccharide and raffinose was larger than for the other saccharides except for kestose, and blank culture. The rate constant of gas (k) for lactosucrose was larger than that for isomalto- and xylo-oligosaccharide, lactulose, kestose or blank culture. Net production of total SCFA (sum of acetic, propionic and n-butyric acid weights) from cultures with soybean- and isomalto-oligosaccharides, raffinose, gentiobiose and lactosucrose was greater than that from blank culture. These results suggested that soybean-oligosaccharide and raffinose were potentially highly fermentable oligosaccharides for carp hindgut microbes. Chemical structures of oligosaccharides seem to play an important role in the fermentability. It is also likely that oligosaccharide utilization differs between mammals and teleosts.
机译:我们通过使用50微米规模的分批培养系统测量气体生产率和肠道内容物中有机酸的产生,研究了鲤鱼(Cyprinus carpio)后肠微生物对各种寡糖的代谢。鲤鱼后肠内容物分别与棉子糖,乳糖蔗糖,乳糖,乳果糖,龙胆二糖,4'-半乳糖基乳糖和6'-半乳糖基乳糖和大豆,木糖和异麦芽低聚糖分别或500微克在25°C下孵育持续6小时。从培养物中释放气体的时间过程(Y微升/培养物)表示为培养时间(t)的指数函数[Y = A + Bx(1-e(-kt))]; A,B和k是常数)。由大豆寡糖和棉子糖产生的气体(A + B)的潜在产量要比其他糖类的多,除了硬脂糖和空白培养物。乳糖蔗糖的气体(k)速率常数大于异麦芽糖和木糖寡糖,乳果糖,硬糖或空白培养液的气体速率常数。用大豆和异麦芽寡糖,棉子糖,龙胆二糖和乳糖蔗糖培养的总SCFA(乙酸,丙酸和正丁酸重量的总和)的净产量要比空白培养的净产量高。这些结果表明,大豆低聚糖和棉子糖对于鲤鱼后肠微生物而言是潜在的高度可发酵的低聚糖。寡糖的化学结构似乎在发酵能力中起重要作用。哺乳动物和硬骨鱼之间的低聚糖利用也可能不同。

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