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Research on Plant Genomics and Breeding

Research on Plant Genomics and Breeding

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In recent decades, crop breeding has greatly benefited from the knowledge of plant genomics and genetics, as well as the development of modern biotechnologies. Exploring the genetic basis and molecular mechanisms underlying various plant developmental and growth processes is imperative, as they underpin crop yield, grain quality, and stress adaptations. The goal of this Special Issue in IJMS, “Research on Plant Genomics and Breeding”, is to present an overview of the latest fundamental discoveries in the field of plant genomics, as well as the potential utilization of biotechnologies in crop genetic improvement. We welcome all readers to this Reprint that covers several fields: the genetic and functional characterization of genes regulating important plant development processes or agronomic traits; the genetic improvement in crops using gene editing and other modern biotechnologies; and the discovery, characterization, and application of germplasm resources with elite traits.

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Keywords

  • abiotic stress
  • Abscisic Acid
  • agronomic traits
  • analytic hierarchy process (AHP)
  • aquaporin
  • Areca catechu
  • Biology, Life Sciences
  • Brassica oleracea
  • Brassicaceae
  • Breeding
  • bulliform cells
  • candidate gene
  • cis-acting element
  • CRISPR
  • Cytokinin
  • cytoplasmic male sterility
  • DFR
  • DNA Methylation
  • domestication
  • evolutionary relationship
  • Fe and Zn deficiency
  • ferroxidase
  • fine mapping
  • flavonoid
  • fresh corn
  • Functional analysis
  • gene duplication events
  • Gene expression
  • gene family
  • genetic validation
  • Genetics (non-medical)
  • Genome
  • genome-wide association analysis
  • genomic region
  • genomic variation
  • germplasm
  • germplasm resources
  • GhMKK9
  • Gibberellins
  • Global warming
  • grain length
  • Growth
  • GWAS
  • H2O2
  • herbaceous peony
  • histone methylation
  • kompetitive allele-specific PCR
  • leaf shape
  • Life sciences: general issues
  • lotus
  • low latitudes
  • MAS
  • Mathematics & science
  • multi-criteria decision-making (MCDM)
  • MYBL2
  • n/a
  • NAC transcription factor
  • NaCl
  • NF-YCs
  • nitrogen stress
  • NRAMP
  • okra
  • omics
  • Oryza longistaminata
  • Oryza sativa L.
  • OsLPR5
  • P450 protein
  • parental imprinting
  • paternal inheritance
  • Photosynthesis
  • Physiology and biochemistry
  • pollen abortion
  • protein arginine methyltransferase
  • rapeseed
  • re-sequencing
  • Reference, information & interdisciplinary subjects
  • Research & information: general
  • rhizome
  • Rice
  • Rice (Oryza sativa L.)
  • RNA
  • RNA sequencing
  • RNA-Seq
  • root and biomass traits
  • Salinity
  • salt stress
  • selective sweep
  • senescence
  • single nucleotide polymorphisms
  • SNP
  • soybean (Glycine max (L.) Merr.)
  • stalk sugar content
  • Stress
  • stress response
  • sucrose
  • synonymous codon usage bias
  • TaCKX expression
  • Tartary buckwheat
  • transcriptome
  • transgenerational epigenetics
  • upland cotton
  • variant
  • water deficit
  • wheat
  • yield
  • Zea mays L.

Links

DOI: 10.3390/books978-3-0365-9378-4

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