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Tsang, S. S. K.

Publications and source records attributed to Tsang, S. S. K..

2 recordsLinked to original sources

Chromosomal-level genome of fish mint Houttuynia cordata Thunb. (Saururaceae)

Herbaceous flowering plants in the family Saururaceae, or commonly known as the lizards tail family, are native to Southeast Asia and North America. Fish mint Houttuynia cordata is native to Southeast Asia and widely cultivated as culinary herb and medicinal plant in traditional medicine. Here, using a combination of PacBio HiFi long-read sequencing and Omni-C data, we present the chromosomal-level genome assembly of H. cordata (genome size 499.6 Mb). The genome has high sequence contiguity (scaffold N50 = 64.3 Mb) and completeness (BUSCO score of 94.6 %). 40,451 protein coding genes were also predicted using two transcriptomes generated in this study. The fish mint genome provides a valuable resource for further understanding the bioactive compounds and evolution of plants in the Saururaceae more widely.

genomics↗

Response of protein coding genes and microRNAs to temperature changes in four insect species

Insects are the most abundant described living creatures in the world, and they play important roles in our global ecosystem. Climate change affects global biodiversity, and researchers in many fields are striving to better understand the impact of the climate crisis. One such endeavour is the study of temperature-dependent effects on insects. At present, we know little of how climate affects gene expression in insects of different sexes. Here, we took four species of fruit flies of the genus Drosophila (D. melanogaster, D. virilis, D. pseudoobscura, and D. erecta), and subjected the male and female flies of each species to three different temperatures to test their sex-specific gene expression responses. A total of 144 transcriptomic profiles of protein-coding genes and microRNAs were generated. We found that, at the same temperature, there were more male-biased than female-biased protein-coding genes and microRNAs in all four investigated drosophilid species. Interestingly, upon temperature changes, there were more differentially expressed protein-coding genes in females than in males in all four investigated species, while the microRNAs were highly species- and sex-specific. This study provides the first evidence that sex-biased protein-coding gene and microRNA expression responses to temperature change differ between insect species within the same genus, and demonstrates the complexity of sex-specific responses of insects to climate change. HighlightsO_LIAt the same temperature, protein coding gene and microRNA expression showed a greater bias towards males than towards females in all four tested insect species. C_LIO_LIIn response to increasing temperature, females of all 4 tested species exhibited more differentially expressed genes than did males, and enrichment analyses showed that they are species-specific. C_LIO_LIDifferentially expressed microRNAs did not show a conserved trend between insects upon temperature changes. C_LIO_LISex-specific gene and microRNA expression of insects in response to climate change evidently involves a complex adaptation mechanism. C_LI Graphical Abstract O_FIG O_LINKSMALLFIG WIDTH=200 HEIGHT=121 SRC="FIGDIR/small/591511v1_ufig1.gif" ALT="Figure 1"> View larger version (27K): org.highwire.dtl.DTLVardef@1037b18org.highwire.dtl.DTLVardef@18683f3org.highwire.dtl.DTLVardef@40dee5org.highwire.dtl.DTLVardef@e9a108_HPS_FORMAT_FIGEXP M_FIG C_FIG

molecular biology↗