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  1. Plants, like all other known living organisms, pass on their traits using DNA. Plants however are unique from other living organisms in the fact that they have chloroplasts. Like mitochondria, chloroplasts have their own DNA.

  2. 20 lut 2024 · In this section, we describe three applications of pangenomes in crop plant genetics: mapping or selecting for beneficial alleles, the generation of inventories of resistance genes (also known...

  3. 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.

  4. 1 maj 2022 · Plant aging can be caused by many factors, such as telomere depletion, genomic instability, loss of proteostasis, changes in intercellular interaction, desynchronosis, autophagy misregulation, epigenetic changes and others. Plants have developed a number of mechanisms to increase lifespan.

  5. 3 cze 2024 · Here, we present activities to introduce some of the basic concepts of plant DNA and sequencing data to explore the curriculum topics of evolution, inheritance and variation, and bioinformatics. Students extract genetic material and explore the process of assembling genome sequences.

  6. 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.

  7. 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.

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