Download Aquaculture Genome Technologies by Zhanjiang (John) Liu PDF

By Zhanjiang (John) Liu

Genomics is a speedily transforming into clinical box with purposes starting from greater affliction resistance to elevated fee of development. Aquaculture Genome applied sciences comprehensively covers the sphere of genomics and its purposes to the aquaculture undefined. This quantity seems to be to bridge the space among a simple realizing of genomic know-how to its sensible use within the aquaculture undefined.

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Base substitutions are changes of a specific base to any other of the three bases. For instance, base A can be mutated to any of C, G, or T. Mutations from purines (A and G) to purines or from pyrimidines (C and T) to pyrimidines are called transitions; mutations from purines to pyrimidines or vice versa are called transversions. Transitions are the most frequent mutations because the chemical reactions involved in such mutations are more likely to occur. In relation to molecular analysis, deletions and insertions are expected to cause changes of fragment lengths of at least one base pair while base substitutions generally do not affect fragment sizes unless the base substitutions cause the gain or loss of restriction sites.

2004. An RFLP database for authentication of commercial cyst samples of the brine shrimp Artemia spp. (International Study on Artemia LXX). Aquaculture, 231, pp. 93–112. Botstein D, RL White, M Skolnick, and RW Davis. 1980. Construction of a genetic linkage map in man using restriction fragment length polymorphisms. Am J Hum Genet, 32, pp. 314–331. Bouchon D, C Souty-Grosset, and R Raimond. 1994. Mitochondrial DNA variation and markers of species identity in two penaeid shrimp species: Penaeus monodon Fabricius and P.

AFLP can be used effectively for genetic linkage mapping. 1. However, AFLP as a dominant marker, lacks the ability to be transferred across species borders, and it is difficult to transfer data among laboratories. As a result of its high efficiency, it is well suited for association analysis of traits with markers. However, after initial identification of associated AFLPs, it is highly recommended that such AFLPs be converted to sequence characterized amplified region (SCAR) markers. Conclusion AFLP analysis is a robust, multilocus PCR-based DNA fingerprinting technique that provides the most efficient, reliable, and economical analysis of population genetics.

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