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Nutritional implications of mould development in feedstuffs and alternatives to reduce the mycotoxin problem in poultry feeds [Review]

机译:饲料中霉菌形成的营养影响以及减少家禽饲料中霉菌毒素问题的替代方法[综述]

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摘要

Fungi may develop in:stored grains following field inoculation. In the course of their development fungi utilize plant nutrients, contributing to a reduction in their content. This reduction is obviously related to the degree of fungi development, but may become. relevant in extreme cases During the process of host,colonization fungi may also produce toxins that are harmful for humans and animals. This occurs mainly under specific conditions of plants stress, such as those produced by adverse weather conditions, for instance drought has been shown to prompt aflatoxin production in peanuts. Differences in mycotoxin production are also related to plant genotype. Aflatoxin B1 produced by Aspergillus flavus is the, most carcinogenic natural substance known. It is-frequently charged with-the reduction in performance of domestic birds, even when its concentration in the feed is very low. Approaches to eliminate mycotoxins from contaminated grains are not always worthwhile in practical and economical terms. Strategies used to reduce mycotoxin levels in cereal grains include the dilution of infected with. healthier, grains,, or the addition of adsorbents to the feeds. Several compounds such as activated charcoal, aluminosilicates and processed cell wall of Saccharomyces sp. (esterified glucomannan)have shown to be effective as mycotoxin adsorbents in poultry feeds. Adsorbent effectiveness has been reported with in vitro and in vivo techniques; however, it is still very difficult to quantify their benefits in commercial operations.
机译:田间接种后,真菌可能会在存储的谷物中生长。真菌在发育过程中会利用植物养分,从而减少其含量。这种减少显然与真菌发育的程度有关,但有可能成为事实。与极端情况相关在寄主过程中,定殖真菌还可能产生对人类和动物有害的毒素。这主要发生在植物胁迫的特定条件下,例如恶劣天气条件下产生的胁迫,例如干旱已显示出促使花生中黄曲霉毒素产生的原因。霉菌毒素产生的差异也与植物基因型有关。黄曲霉产生的黄曲霉毒素B1是已知的最致癌的天然物质。它经常导致家禽性能下降,即使其在饲料中的浓度很低也是如此。从污染和污染的谷物中消除霉菌毒素的方法,从实用和经济角度来讲,并不总是值得的。降低谷物中霉菌毒素水平的策略包括稀释。健康,谷物或在饲料中添加吸附剂。几种化合物,例如活性炭,铝硅酸盐和酿酒酵母菌种的加工细胞壁。 (酯化的葡甘露聚糖)已证明在禽类饲料中作为霉菌毒素吸附剂有效。已有体外和体内技术报道了吸附剂的有效性。但是,要量化它们在商业运营中的收益仍然非常困难。

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