Engineering Technology Fish Farming of Snakeheads Channa striat ,Bloch, 1793) Based Feed Vitamin C Increase to Superior Quality Using Microsatellite

I. Samidjan, D. Rachmawati
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引用次数: 1

Abstract

Objectives for snakeheads farming Cngineered to produce superior products based artificial diet eenrichment vitamin C with different doses and the use of microsatellites to increase growth and determine the superior quality. Methods February to November 2017 Examined the Effect of artificial feed Enriched with vitamin C doses per 100 g feed were given 0 mg (T1), 12 mg (T2), 24 mg ,and 36 mg (T3), 48 mg (T4) were using a completely randomized design (CRD) and 4 treatments and 3 replications. Furthermore, to determine the superior quality using microsatellite genetic markers to see the genetic code snakeheads. Then the treatment was analyzed by ANOVA and data arrangement of molecular weight DNA, polymorphism were analyzed by Cco-stat and Minitab version 11. The data collected observations of the size of the  weight absolute, survival, FCR,  molecular weight DNA composition, heterogeneity genotype, polymorphism. The results showed that highest of polymorphism were T3 (weight absolute 169.18 mg) and lowest ppolymorphism  treatment T1 (weight absolute 149.25 mg) .Next analysis of polymorphism results using a micro-satellite in treatment (T2, ribbon 3,4), and (T3, ribbons 5.6) and (T4, ribbons 7 and 8)  respectively using IS-GB1F 5-CCC TGT ATT TCA TTT CTC CA-3 and IS-GB 1 R 5-ACC AAC ACT GCA ATC TCT CT-3 bright ribbons found in treatment T4 (ribbons 7.8) snakeheads are the results showed that the growth of snakeheads were highest in T3 (with ribbons 205bp allele ladder with 215 bps and 225 bps on the right, Addition as well as having polymorphism is high and. variation of different types also found the number of alleles and heterozygotes.
利用微卫星技术提高饲料维生素C的优良品质
蛇头养殖的目标是生产基于不同剂量的富含维生素C的人工饲料的优质产品,并使用微卫星来增加生长和确定优质产品。方法2017年2月至11月,采用完全随机设计(CRD)和4个处理和3个重复,每100g饲料给予0 mg(T1)、12 mg(T2)、24 mg和36 mg(T3)、48 mg(T4)富含维生素C的人工饲料的效果。此外,利用微卫星遗传标记来确定优良品质,以查看蛇头的遗传密码。然后通过方差分析和分子量DNA数据排列对治疗进行分析,通过Cco-stat和Minitab version 11对多态性进行分析。数据收集了观察到的绝对体重大小、存活率、FCR、分子量DNA组成、异质性基因型、多态性。结果显示,多态性最高的是T3(绝对体重169.18mg)和最低的多态性处理T1(绝对体重149.25mg),和(T3,条带5.6)和(T4,条带7和8)分别用IS-GB1F5-CCC TGT ATT TCA TTT CTC CA-3和IS-GB1R5-ACC AAC ACT GCA ATC TCT CT-3处理T4(条带7.8)蛇头的结果表明(带205bp等位基因梯,右边分别为215bps和225bps,加性和多态性较高,不同类型的变异也发现了等位基因和杂合子的数量。
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