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Molecular biology --- Molecular evolution --- Evolution (Biology) --- Evolution --- Molecular Biology --- Periodicals --- Periodicals. --- Molecular biology. --- Molecular evolution. --- Evolution, Molecular --- Biochemical evolution --- Chemical evolution --- Biological Evolution. --- Molecular Biology. --- Life --- Molecular biochemistry --- Molecular biophysics --- Biochemistry --- Biophysics --- Biomolecules --- Systems biology --- Biochemical Genetics --- Biology, Molecular --- Genetics, Biochemical --- Genetics, Molecular --- Molecular Genetics --- Biochemical Genetic --- Genetic, Biochemical --- Genetic, Molecular --- Molecular Genetic --- Genetic Phenomena --- Evolution, Biological --- Sociobiology --- Origin --- Genetic Evolution --- Molecular Evolution --- Evolution, Genetic --- Directed Molecular Evolution --- evolution. --- molecular biology. --- Biological Sciences --- bioinformatics --- molecular dynamics --- molecular epidemiology --- molecular genetics --- molecular models --- molecular systematics --- evolutionary biology --- biological speciation --- center of diversity --- center of origin --- coevolution --- concerted evolution --- convergent evolution --- divergent evolution --- evolutionarily stable strategy --- evolutionary adaptation --- exaptation --- extinction --- mutation rate --- natural selection --- neoteny --- niche conservatism --- ontogeny --- parallel evolution --- phylogeny --- regressive evolution --- selection pressure --- biogenesis --- ecological traps --- genome expansion --- paleontology --- Biologie moléculaire --- Évolution moléculaire --- Évolution moléculaire. --- Science --- Evolution, Molecular.
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Allohexaploid bread wheat and diploid barley are two of the most cultivated crops in the world. This book reports novel research and reviews concerning the use of modern technologies to understand the molecular bases for wheat and barley improvement. The contributions published in this book illustrate research advances in wheat and barley knowledge using modern molecular techniques. These molecular approaches cover genomic, transcriptomic, proteomic, and phenomic levels, together with new tools for gene identification and the development of novel molecular markers. Overall, the contributions for this book lead to a further understanding of regulatory systems in order to improve wheat and barley performance.
n/a --- biotechnology --- transgene --- Aegilops tauschii --- antioxidant enzymes --- aquaporin --- molecular marker --- Kompetitive Allele Specific PCR (KASP) --- transgenic wheat --- purple acid phosphatase phytase --- genome editing --- genes --- resistance --- genome assembly --- germination --- protein two-dimensional electrophoresis --- 1 --- disease resistance --- Thinopyrum --- plant --- oligo probe --- optical mapping --- genetic biofortification --- breeding --- population structure --- marker-assisted selection --- crops --- hybrid necrosis --- PAPhy --- Triticeae --- wheat --- Barley --- genome stability --- CRISPR --- powdery mildew --- RNA editing --- bread wheat --- allohexaploid --- nucleus --- chromatin --- introgression --- favorable alleles --- genetic engineering --- Tunisian landraces --- barely --- Pm40 --- Blumeria graminis f. sp. tritici --- Transcriptional dynamics --- Lr42 --- Triticum durum --- histochemical analysis --- molecular mapping --- ribosomal DNA --- 12-oxophytodienoate reductase --- small segment translocation --- HIGS --- Powdery mildew --- abiotic stress --- phytase --- RNA-seq --- Bulked segregant analysis-RNA-Seq (BSR-Seq) --- grain --- DArTseq technology --- center of diversity --- mature grain phytase activity (MGPA) --- cereals --- Grain development --- hybrid --- homoeolog --- 3D-FISH --- jasmonates --- Single nucleotide polymorphism (SNP) --- genetic diversity --- ND-FISH --- durum wheat --- protease --- transpiration --- TdPIP2 --- cereal cyst nematodes --- mass spectrometry --- 6R --- Landrace --- marker-trait associations --- BAC --- chromosome --- barley --- freezing tolerance --- KASP markers --- Triticum aestivum --- rye
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