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  1. Plant genetics is similar in many ways to animal genetics but differs in a few key areas. The discoverer of genetics was Gregor Mendel, a late 19th-century scientist and Augustinian friar. Mendel studied "trait inheritance", patterns in the way traits are handed down from parents to offspring.

  2. 20 lip 2020 · Here we review the growth of pan-genomics in plants, explore the origins of gene presence and absence variation, and show how pan-genomes can support plant breeding and evolution studies.

  3. 10 paź 2008 · We identified the unique genes within both A. thaliana and O. sativa genomes and classified them according to the number of homologs in the alternative species: none (U {1:0}), one (U {1:1}) or several (U {1:m}).

  4. 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.

  5. 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.

  6. 20 mar 2024 · A database named N3: plants, genomes, technologies was developed to accommodate the metadata associated with the sequenced genomes.

  7. 30 kwi 2018 · A duplicated gene is either retained or one of the two genes is deleted (fractionated), and each co-retained, cis-acting site is either fractionated or not.

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