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Haryoso, E.

Publications and source records attributed to Haryoso, E..

2 recordsLinked to original sources

Caenorhabditis briggsae ancestral genomic hyper-diversity contrasts with globally distributed genome-wide haplotypes

Comparative genomics provides a powerful framework to uncover the molecular and evolutionary mechanisms that shape genetic diversity within and across species, revealing how shared and lineage-specific processes influence their evolutionary trajectories through time. The nematode Caenorhabditis briggsae is distributed world-wide and is a comparative model to Caenorhabditis elegans in the biology of development, cellular mechanisms, neurobiology, genetic mappings of complex traits, and genome evolution. Following massive collection efforts by the nematode research community, we present the isolation of over 2,000 wild strains and analyses of genome sequences that catalog over six million single-nucleotide and insertion-deletion variants. This genome and strain resource provide a powerful means to interrogate the causal genetic bases of phenotypic variation for diverse traits. Additionally, we describe its global population structure and discover new and genetically distinct groups within this primarily self-fertilizing species, including groups of highly related strains that were sampled across different continents. We leverage expansive genetic variation to decipher the effects of linkage and selection on the distribution of genetic diversity across the genome and across geographic regions. Within the species, we find genomic regions with extremely high levels of genetic variation similar to hyper-divergent regions found in C. elegans and other species. These regions harbor new genes and variation enriched for environmental sensing and pathogen responses. In comparison to the outbreeding sister species Caenorhabditis nigoni, we conclude that long-term balancing selection has maintained substantial functional variation since the divergence from their outbreeding ancestor, likely in response to differences in the ecological niche. Overall, this massive strain resource enables future comparative genetics and genomics studies, including genome-wide association studies between Caenorhabditis species.

genomics↗

Five new Caenorhabditis species from Indonesia provide exceptions to Haldane's rule and partial fertility of interspecific hybrids

Given the interest in the biogeography and diversity of the Caenorhabditis genus, we established a collection of these nematodes from field surveys on four Indonesian islands. We isolated over 60 Caenorhabditis strains belonging to ten species. Five species were previously known from other locations: C. briggsae, which was predominant, C. tropicalis, C. nigoni, C. brenneri and C. elegans. The five other species are new, and we describe them here as Caenorhabditis indonesiana, Caenorhabditis malino, Caenorhabditis ceno, Caenorhabditis brawijaya and Caenorhabditis ubi. RNA sequence analysis of 1,861 orthologous genes placed all species from Indonesia in the Elegans group of Caenorhabditis species. Four of the new species belong to a Sinica subclade of species so far only found in an East Asia-Indo-Pacific world region. The fifth new species, C. indonesiana, appears as the sister of the C. tropicalis-C. wallacei pair, both also found in Indonesia. The present findings are thus consistent with diversification in the Elegans group having occurred in this world region. Crosses between closely related species showed counterexamples to Haldanes "rule": for two pairs of species, in one cross direction we only found hybrid males. In addition, we found a pair of species that could partially interbreed: Caenorhabditis ubi (East Java) with C. sp. 41 (Solomon islands), with the hybrid males in one cross direction being fertile. Such closesly related species pairs are good models for genetic studies of incompatibilities arising during speciation. SummaryThis work addresses their biodiversity, phylogenetic relationships and genetic incompatibilities of Caenorhabditis nematodes, which are laboratory model organisms. Through field studies, the authors isolated 60 Caenorhabditis strains in Indonesia, representing ten species, including five new. From RNA sequencing and phylogenetic reconstruction, all ten species belong to the Elegans group of Caenorhabditis. In crosses between closely related species, the hybrid progeny can be all females, abiding by Haldanes rule, but in other cases all males. In one species pair, partially fertile hybrids are produced in one cross direction. These closely related species are good models for studying genetic incompatibilities.

genetics↗