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Agrobiodiversity in Mesoamerica–from genes to landscapes starting points, strategies and stakeholders for making agrobiodiversity more relevant to the future of Mesoamerica.

mag(2010)

引用 23|浏览26
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livestock,photosynthesis,genetically modified organisms,identification,nucleus,flora,hybrids,leaves,biology,plant physiology,cytogenetics,explant,genetic code,genomes,carbon dioxide,gene,genetic variation,photosynthese,climatic change,molecular genetics,phenotypes,plant breeding,quantitative genetics,sensors,biotechnology,mutation,biochemical pathways,nucleotide sequence,progeny,defence mechanisms,evolution,genetic engineering,heritability,cell counting,preservation,degradation,crop yield,lethal genes,protein synthesis,recombination,immune response,nitrogen fixation,recombinant dna,mendelism,phenotype,ethics,genotype environment interaction,biochemistry,genome,life cycle,agroforestry,freezing,pigment,plant competition,transgenics,dominant genes,drug therapy,logging,selection,rna,plant ecology,varieties,race,dna,explants,natural selection,nature reserves,genotype,adaptation,endangered species,genetic markers,pigments,cuttings,virus,isolation,genetics,population dynamics,clones,crossbreeding,gene pools,molecular biology,molecular cloning,replication,seed,anthers,crops,genes,chromosome,gene transfer,genotypes,chromosomes,genetic transformation,technology,animal breeding,clone,growth,nitrogen metabolism,plant biotechnology
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