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首页> 外文期刊>Aquaculture Research >Changes in proximate and amino acid composition during early developmentof two Australian Percichthyid fish, Macquarie perch, Macquariaaustralasica Cuvier, and trout cod, Maccullochella macquarensis (Cuvier)
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Changes in proximate and amino acid composition during early developmentof two Australian Percichthyid fish, Macquarie perch, Macquariaaustralasica Cuvier, and trout cod, Maccullochella macquarensis (Cuvier)

机译:两种澳大利亚鲈鱼,Macquarie鲈鱼,Macquariaaustralasica Cuvier和鳟鱼鳕鱼Maccullochella macquarensis(Cuvier)早期发育过程中近似氨基酸组成的变化

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摘要

In the present paper, the results of a study on changes in the proximate and amino acid composition of the eggs and larvae of two Australian native Percichthyid fish, Macquarie perch, Macquaria australasica Cuvier, and trout cod, Maccullochella macquarensis (Cuvier), are presented. The stages of development studied were unfertilized and fertilized eggs, newly hatched larvae, and post-yolk-sac larvae tin Macquarie perch only). In Macquarie perch, significant changes in moisture content occurred throughout development, but this was not so in trout cod, The protein content (per cent dry weight) in Macquarie perch larvae only decreased significantly after hatching (P < 0.05), On the other hand, the total lipid (by dry weight) increased significantly during this transformation (P < 0.05), and decreased significantly in yolk-sac-resorbed larvae, In trout cod, the protein and lipid content did not change significantly up to hatching. The ash content increased significantly in newly hatched and yolk-sac-resorbed larvae of both species. The total amino acid contents of unfertilized eggs, fertilized eggs, newly hatched larvae and yolk-sac-resorbed larvae of Macquarie perch and trout cod were 5752, 4652, 3696 and 2723 mu mol g(-1) (dry weight), and 4688, 3448 and 2329 mu mol g(-1) respectively, In the amino acid pool in Macquarie perch, the essential amino acids (EAAs) leucine, isoleucine and valine, and the non-essential amino acids (NEAAs) alanine. aspargine and glutamate occurred in the greatest quantities in non-fertilized eggs, and the cysteine content was the smallest. In Macquarie perch. five out of nine EAAs (i.e. isoleucine, leucine, lysine, threonine and valine) and six out of eight NEAAs (i,e. alanine, asparagine, glutamate, glycine, proline and serine) decreased significantly (P < 0.05) from one developmental stage to the other. In trout cod, all the EAAs, barring lysine and all the NEAAs decreased significantly with development.
机译:在本文中,提出了两种澳大利亚本地鲈鱼,Macquarie perch,Macquaria australasica Cuvier和鳟鱼鳕鱼Maccullochella macquarensis(Cuvier)的卵和幼虫的近似和氨基酸组成变化的研究结果。 。研究的发育阶段是未受精卵和受精卵,新孵化的幼虫和卵黄囊幼虫锡麦格理鲈。在Macquarie鲈鱼中,整个发育过程中水分含量发生了显着变化,但在鳟鱼鳕中却没有。在孵化后,Macquarie鲈鱼幼虫中的蛋白质含量(干重百分比)仅显着下降(P <0.05)。 ,总脂质(以干重计)在此转化过程中显着增加(P <0.05),而在卵黄囊吸收的幼虫中显着降低。在鳟鱼鳕鱼中,蛋白质和脂质含量在孵化前没有显着变化。这两个物种的新孵化和卵黄囊吸收幼虫的灰分含量均显着增加。麦格理鲈鱼和鳟鱼鳕鱼的未受精卵,受精卵,新孵化的幼虫和卵黄囊吸收的幼虫的总氨基酸含量分别为5752、4652、3696和2723μmol g(-1)(干重)和4688分别为3448和2329μmol g(-1),在麦格理栖息地的氨基酸库中,必需氨基酸(EAA)亮氨酸,异亮氨酸和缬氨酸,以及非必需氨基酸(NEAAs)丙氨酸。未受精卵中天冬酰胺和谷氨酸的含量最高,而半胱氨酸含量最小。在麦格理栖息。九种EAA中的五种(即异亮氨酸,亮氨酸,赖氨酸,苏氨酸和缬氨酸)和八种NEAA中的六种(即丙氨酸,天冬酰胺,谷氨酸,甘氨酸,脯氨酸和丝氨酸)从一种发育显着降低(P <0.05)舞台到另一个。在鳟鱼鳕鱼中,除赖氨酸外,所有EAA均随着发育而显着下降。

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