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  1. 25 paź 2022 · The combination of multiple omics data types enables the characterization of different levels of gene regulation for a biological process of interest. Studies targeting a specific biological process, as well as untargeted multi-omics approaches, shed light on novel gene functions in plant biology.

  2. 20 mar 2024 · A database named N3: plants, genomes, technologies was developed to accommodate the metadata associated with the sequenced genomes.

  3. 2 lut 2021 · This review discusses the features of cis-regulatory sequences in plants, technologies enabling their identification, characterization, and validation, their organization into functional cis-regulatory modules, their genomic distributions with respect to target genes, and the role of transposable elements in their evolution.

  4. 19 paź 2020 · Here, we describe how plant genomes have been harnessed for studies of plant phylogeny and diversification, with examples spanning all green plants, a clade of nearly half a million species spanning nearly a billion years of evolutionary time.

  5. 28 sie 2019 · The majority of experiments aiming to identify gene function or structure and the dynamics of gene regulatory networks have been conducted on a few model objects, such as Arabidopsis thaliana or Drosophila melanogaster. Then, the obtained data are applied to other organisms.

  6. 13 mar 2015 · A high quality draft consensus sequence of the genome of a heterozygous grapevine variety. Summary Like all living organisms, plants use deoxyribonucleic acid (DNA) as their genetic material. The DNA in plant cells is found in the nucleus, the mitochondria and the chloroplasts.

  7. 13 lis 2013 · The great recent progress made in identifying the molecular parts lists of organisms revealed the paucity of our understanding of what most of the parts do. In this review, we introduce computational and statistical approaches and omics data used for inferring gene function in plants, with an emphasis on network-based inference.

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