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首页> 外文期刊>Aquaculture Reports >Amino acid availability of processed Brassica carinata meals in hybrid striped bass Morone chrysops ♀ x M. saxatilis ♂
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Amino acid availability of processed Brassica carinata meals in hybrid striped bass Morone chrysops ♀ x M. saxatilis ♂

机译:在杂交条纹低音低音蛹中加工的芸苔鲫鱼的氨基酸可用性蛹♀x M. saxatilis♂

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An earlier study showed that hybrid striped bass ( Morone chrysops ♀ x M. saxatilis ♂) diets containing 20 % animal meals and up to 30 % aerobically fermented (AF) carinata meal ( Brassica carinata , CM) followed by a single wash with water (AFCM) or 30 % CM double-washed with water without AF (WCM), resulted in similar growth. However feed utilization and Fulton’s condition factor of 30 % WCM were better. The current study investigated effects of AFCM and WCM on amino acid digestibilities using naive fish. Effects of AFCM and WCM on trypsin activity, and amino acid availability were determined using hybrid striped bass fed experimental diets for 127 and 148 days, respectively (after a growth trial). High (30 %) AFCM reduced all essential amino acids (EAA) and conditionally EAA (CEAA) except histidine, methionine and threonine. However, all EAA and CEAAs except lysine and cysteine were digested better in 30 %WCM than 30 % AFCM. High (30 %) CMs resulted in generally high serum free methionine and tryptophan, but less leucine for the first 9 h. However, 30 % WCM resulted in generally more serum free arginine and valine than 30 % AFCM. High CMs increased muscle free histidine. Generally, WCM resulted in more muscle lysine and valine than AFCM. Muscle methionine was increased by CMs. Both serum and muscle free total EAAs in hybrid striped bass fed 30 % WCM were elevated continuously over a longer period above the baseline levels. Using EAA:lysine, only muscle histidine were adequate for muscle synthesis over the 36-h period. Overall, amino acids were more available in WCM than AFCM.
机译:早期的研究表明,杂交条纹低音(Morone Chrysops♀x M. saxatilis♂)含有20%的动物膳食的饮食,高达30%的有氧发酵(AF)Carinata膳食(芸苔Carinata,Cm),然后用水洗涤( AFCM)或30%厘米用没有AF(WCM)的水双洗净,导致类似的生长。然而,饲料利用率和富尔顿的条件因子为30%wcm更好。目前研究AFCM和WCM对使用NAIVIVE FISH的氨基酸消化的研究。 AFCM和WCM对胰蛋白酶活性的影响,并使用杂化条纹BASS FED实验饮食分别测定127和148天(在生长试验后)测定氨基酸可用性。除了组氨酸,蛋氨酸和苏氨酸外,高(30%)AFCM减少了所有必需氨基酸(EAA)和有条件的EAA(CEAA)。然而,除了赖氨酸和半胱氨酸外的所有EAA和CEAAs在30%WCM超过30%的AFCM中会更好地消化。高(30%)CMS导致通常高血清游离蛋氨酸和色氨酸,但少亮氨酸为前9小时。然而,30%wcm导致血清游离精氨酸和缬氨酸比30%的AFCM导致。高CMS增加肌肉自由组氨酸。通常,WCM导致肌肉赖氨酸和缬氨酸比AFCM更多。 CMS增加了肌肉甲硫氨酸。血清和肌肉中的血清和肌肉完全在杂交条纹低频中饲喂30%wcm的较长时间在基线水平上方连续升高。使用eaa:赖氨酸,只有肌肉组氨酸足以在36-H期间适用于肌肉合成。总体而言,氨基酸比AFCM更易用。

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