Next Generation Sequencing and Whole Genome Selection in by Zhanjiang (John) Liu

By Zhanjiang (John) Liu

Contemporary advancements in DNA marker applied sciences, particularly the emergence of unmarried Nucleotide Polymorphism (SNP) discovery, have rendered many of the conventional tools of genetic study superseded. subsequent new release Sequencing and full Genome choice in Aquaculture comprehensively covers the present nation of analysis in entire genome choice and applies those discoveries to the aquaculture particularly. The textual content starts with a radical assessment of SNP and transitions into issues resembling subsequent new release sequencing, EST information mining, SNP caliber overview, and entire genome choice rules. finishing with a dialogue of the technology's particular functions to the undefined, this article is going to be a priceless reference for these excited about all features of aquaculture research.Special Features: Unique linking of SNP applied sciences, subsequent new release sequencing applied sciences, and full genome choice within the context of aquaculture researchThorough evaluate of unmarried Nucleotide Polymorphism and present research8-page colour plate part that includes precise illustrations

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Extra resources for Next Generation Sequencing and Whole Genome Selection in Aquaculture

Example text

Liu ZJ. 2007d. Single nucleotide polymorphism (SNP). In: Aquaculture Genome Technologies, edited by ZJ Liu. Blackwell Publishing, Ames, IA, pp. 59–72. Liu ZJ and Cordes JF. 2004. DNA marker technologies and their applications in aquaculture genetics (vol 238, pg 1, 2004). Aquaculture, 242:735–736. Liu ZJ, Li P, Kucuktas H, Nichols A, Tan G, Zheng XM, Argue BJ, and Dunham RA. 1999. Development of amplified fragment length polymorphism (AFLP) markers suitable for genetic linkage mapping of catfish.

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1990. Fingerprinting genomes using PCR with arbitrary primers. Nucleic Acids Res, 18:7213–7218. Whitehead A, Anderson SL, Kuivila KM, Roach JL, and May B. 2003. Genetic variation among interconnected populations of Catostomus occidentalis: Implications for distinguishing impacts of contaminants from biogeographical structuring. Mol Ecol, 12:2817–2833. Williams JG, Kubelik AR, Livak KJ, Rafalski JA, and Tingey SV. 1990. DNA polymorphisms amplified by arbitrary primers are useful as genetic markers.

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