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Potapenko, E. V.

Publications and source records attributed to Potapenko, E. V..

2 recordsLinked to original sources

Transposable elements are entangled in rapid adaptation to climate change

Biodiversity conservation is urged at biodiversity hotspots that are under constant threat from anthropogenic development, yet a careful examination of the adaptive potential is a prerequisite for action. The Levant is considered a biodiversity hotspot and the distribution edge for many species, including important crop wild relatives. This region is under accelerated desertification and constantly disturbed by human activities, thus urging intervenient action. We collected and sequenced 300 wild barley plants along an eco-geographic gradient following a unique ecological-genetic sampling design. This scheme enabled to overcome the tight correlation between environmental and geographic distances. Phenotypic data was collected from 3600 progeny plants over three years and enabled to identify adaptive haplotype blocks comprised of phenological regulating genes tightly linked to drought and heat responsive genes. These haplotype blocks were highly enriched for transposable elements insertions, likely regulating genetic variation around adaptive genes, especially in stressed populations. Ecological and evolutionary models using over 2600 observations were combined to predict maladaptive risk, indicating that populations will be funneled into higher water availability refugia habitats while increasing isolation. Our findings highlight the main factors affecting rapid local adaptation and provide important recommendations for biodiversity management and conservation.

plant biology↗

Newly obtained genome of fungi-related amoeba is enriched with genes shared with animals-related protists

Nuclearariids are a group of Opisthokonta, forming the deepest branch in Holomycota - one of the two major Opisthokonta clades, containing Fungi as a crawn group. They are the only members of Holomycota retaining the filose amoeboid state ancestral for Opisthokonta. The newly assembled genome of Nuclearia thermophila (Holomycota, Rotosphaerida) had a total length of 49 Mb, 15 321 protein-coding genes and a GC percentage of 44%. This is the first sequenced genome for this genus and the the third for Rotosphaerida as a whole. It was shown that N. thermophila shares more protein domains with Holozoa, than with the rest of Holomycota. Protein domains that were presumably acquired or lost by the common ancestors of the Holomycota and Holozoa groups were identified. The Holomycota ancestor had probably more gains and losses of protein domains compared to the Holozoa ancestor, which is particularly true for metabolism-related domains. However, this trend should be confirmed by studying the genomes of free-living organisms of the Teretosporea group.

genomics↗