Principles of GeneticsJohn Wiley & Sons, 2015 M10 26 - 648 páginas Principles of Genetics is one of the most popular texts in use for the introductory course. It opens a window on the rapidly advancing science of genetics by showing exactly how genetics is done. Throughout, the authors incorporate a human emphasis and highlight the role of geneticists to keep students interested and motivated. The seventh edition has been completely updated to reflect the latest developments in the field of genetics. Principles of Genetics continues to educate today’s students for tomorrows science by focusing on features that aid in content comprehension and application. This text is an unbound, three hole punched version. |
Contenido
ChaptER | 1 |
ChaptER | 4 |
Genetics and Evolution | 10 |
ChaptER 2 | 18 |
Mitosis | 24 |
ChaptER 3 | 40 |
applications of Mendels principles | 46 |
SOLVE IT Using the ChiSquare test | 52 |
DNA REPAIR SYNTHESIS ASSOCIATED | 341 |
The Techniques of Molecular | 350 |
Construction and Screening of | 360 |
xvi | 366 |
Chapter 15 | 379 |
SOLVE IT What Can You Learn about DNa Sequences | 392 |
Genome Diversity and Evolution | 401 |
SOLVE IT What Do We Know about the Mitochondrial | 411 |
Extensions of Mendelism | 62 |
From Genotype to phenotype | 69 |
another Look at pedigrees | 76 |
ChaptER 5 | 88 |
xx | 89 |
xii | 94 |
ChaptER 6 | 109 |
aneuploidy | 118 |
Rearrangements of Chromosome | 124 |
heterozygotes | 127 |
ChaptER 7 | 133 |
Chromosome Mapping | 139 |
Cytogenetic Mapping | 146 |
and Their Viruses | 161 |
ChaptER 9 | 188 |
the Structures of DNa and RNa | 194 |
PrObLEmSOLVIng SkILLS Calculating base | 198 |
ONE LARGE DNA MOLECULE PER CHROMOSOME | 204 |
CENTROMERES | 211 |
Replication of DNA | 217 |
REPLICATION FORKS | 224 |
INITIATION OF DNA REPLICATION | 230 |
1 | 246 |
Transcription and | 252 |
PrObLEmSOLVIng SkILLS Distinguishing RNas | 258 |
SOLVE IT Formation of the 3terminus of an | 268 |
Chapter 12 | 280 |
the Components of polypeptide | 289 |
Chapter 13 | 313 |
Mutagenesis | 320 |
PrObLEmSOLVIng SkILLS predicting amino acid | 327 |
DNa Repair Mechanisms | 333 |
Chapter 16 | 417 |
human Gene therapy | 426 |
production of Eukaryotic proteins | 437 |
SOLVE IT how Might RNa Interference Be Used | 448 |
7 | 454 |
prokaryotes | 460 |
Induction | 466 |
Repression | 474 |
Expression in prokaryotes | 479 |
an Overview | 485 |
posttranscriptional Regulation of Gene | 494 |
xviii | 503 |
Inheritance of Complex | 511 |
Statistical analysis of Quantitative traits | 517 |
Molecular analysis of Complex traits | 523 |
Correlations between Relatives | 531 |
Population Genetics | 541 |
USING ALLELE FREQUENCIES IN GENETIC | 547 |
answers to OddNumbered Questions | 563 |
Glossary | 584 |
607 | |
616 | |
Elements WC1 | 1 |
Online | 28 |
Zygotic Gene activity in Development WC35 | 35 |
Online | 51 |
tumor Suppressor Genes WC60 | 60 |
Genetic pathways to Cancer WC70 | 70 |
Online | 76 |
appendices Online | 105 |
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Términos y frases comunes
amino acids analysis bacteria base pairs binding called catalyzes cells centromere chain Chapter chromatids chromo chromosome cloning coding codon coli color complementary complex contains cross crossovers cytoplasm diploid disease DNA molecules DNA replication DNA sequences dominant double-stranded Drosophila duplicated elements embryo encoded endonuclease enzyme eukaryotic eyes factor females Figure frequency function gametes gene expression gene product genetic geneticists genotype haploid heterozygotes heterozygous homologous homozygous human genome hybrid individuals induced inherited inserted introns located male markers mating meiosis meiotic membrane Mendel’s mitosis molecular mRNA mutant allele mutation nucleosomes nucleotide pairs nucleotide sequence nucleus occurs offspring operon organisms parental percent phage phenotype plants plasmid polypeptide population primer produce progeny prokaryotes protein recessive allele recombination region ribosomes RNA polymerase segment single-stranded species sperm STEP strains strand structure Student Companion subunit synthesis template tion trait transcription transposons tRNA types viruses wild-type X chromosome X-linked zygotes