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Biology subjects

Takenaka, M.

Publications and source records attributed to Takenaka, M..

4 recordsLinked to original sources

Development of novel PCR primer sets for DNA metabarcoding of aquatic insects, and the discovery of some cryptic species

DNA barcoding is a powerful tool that provides rapid, accurate, and automatable species identification by using standardized genetic region(s). It can be a powerful tool in various fields of biology such as for revealing the existence of cryptic species and/or rare species and in environmental science such as when monitoring river biota. Biodiversity reduction in recent times has become one of the most serious environmental issues on a worldwide scale. DNA barcoding techniques require the development of sets of universal PCR primers for DNA metabarcoding. We tried to develop universal primer sets for the DNA barcoding of all insect groups. In this study, we succeeded in designing not only universal primer sets for DNA barcoding regions of almost all insects, which were designed to include a hypervariable site between highly conserved sites, but also primer sets for longer fragment sequences for registration in a database. We confirmed successful amplification for 14 orders, 43 families, and 68 species with DNA barcoding in the mtDNA 16S rRNA region, and for 13 orders, 42 families, and 66 species with DNA barcoding in the mtDNA 12S rRNA region. A key feature is that the DNA fragments of the DNA barcoding regions amplified by these primer sets are both short at about 200-bp, and longer fragment sequences will increase the level of data registration in the DNA database. Such resulting database enhancements will serve as a powerful tool for increasingly accurate assessment of biodiversity and genetic diversity.

ecology↗

Ancient genomes from the last three millennia support multiple human dispersals into Wallacea

Previous research indicates that the human genetic diversity found in Wallacea - islands in present-day Eastern Indonesia and Timor-Leste that were never part of the Sunda or Sahul continental shelves - has been shaped by complex interactions between migrating Austronesian farmers and indigenous hunter-gatherer communities. Here, we provide new insights into this regions demographic history based on genome-wide data from 16 ancient individuals (2600-250 yrs BP) from islands of the North Moluccas, Sulawesi, and East Nusa Tenggara. While the ancestry of individuals from the northern islands fit earlier views of contact between groups related to the Austronesian expansion and the first colonization of Sahul, the ancestry of individuals from the southern islands revealed additional contributions from Mainland Southeast Asia, which seems to predate the Austronesian admixture in the region. Admixture time estimates for the oldest individuals of Wallacea are closer to archaeological estimates for the Austronesian arrival into the region than are admixture time estimates for present-day groups. The decreasing trend in admixture times exhibited by younger individuals supports a scenario of multiple or continuous admixture involving Papuan- and Asian-related groups. Our results clarify previously debated times of admixture and suggest that the Neolithic dispersals into Island Southeast Asia are associated with the spread of multiple genetic ancestries.

genomics↗

Complete loss of mitochondrial complex I genes in mistletoes (Viscaceae) and evidence of polyadenylated mitochondrial transcripts shown by whole transcriptome sequencing

The profound absence of mitochondrial complex I (NADH-ubiquinone oxidoreductase) genes from the mitogenome of Viscum spp. and the rapid rates of molecular evolution characterizing most of their remaining mitochondrial genes raise questions regarding the possible transfer of the entire nad gene set to the nucleus, as well as for the functionality of the remaining highly divergent genes. Using whole transcriptome sequencing in three species of Viscaceae: V. album, V. crassulae, and Phoradendron leucarpum we were able to confirm transcription of all previously identified genes. However, we did not detect any nad gene transcripts, thus, providing further evidence of the complete loss of complex I in Viscaceae. The results from transcriptome sequencing also revealed that levels and patterns of RNA editing were not different from those found in autotrophic plant species. Hence, RNA editing is not a means of restoring conserved domains or folding sites of the proteins coded for by the divergent mitochondrial genes. Since we were able to recover mitochondrial genes transcripts following a sequencing protocol targeted towards polyadenylated mRNA molecules, it is suggested that mitochondrial genes undergo post-transcriptional polyadenylation in Viscaceae.

evolutionary biology↗

Development of microsatellite markers for a giant water bug, Appasus japonicus, distributed in East Asia

We developed microsatellite markers for Appasus japonicus (Hemiptera: Belostomatidae). This belostomatid bug is distributed in East Asia (Japanese Archipelago, Korean Peninsula, and Mainland China), and often listed as endangered species in the Red List or the Red Data Book at the national and local level in Japan. Here we describe twenty novel polymorphic microsatellite loci developed for A. japonicus, and marker suitability was evaluated on 56 individuals from four A. japonicus populations (Nagano, Hiroshima, and Yamaguchi prefecture, Japan, and Chungcheongnam-do, Korea). The number of alleles per locus ranged 1-12 (mean = 2.5), and average observed and expected heterozygosity, and fixation index per locus were 0.270, 0.323, and 0.153, respectively. The 20 markers described here will be useful for investigating the genetic structure of A. japonicus populations, which can contribute in population genetics studies of this species.

molecular biology↗