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Miyagi, I.

Publications and source records attributed to Miyagi, I..

2 recordsLinked to original sources

Convergent evolutionary loss of chemosensory and blood-feeding pathways in non-blood-feeding mosquitoes

Complex traits that span multiple tissues and systems often integrate large numbers of genes across development, physiology, and behavior, making it challenging to identify their essential components. Blood feeding in mosquitoes is one such trait. It is ancestral to the mosquito family, maintained in most species for ~200 million years, and was independently lost in three lineages. These convergent losses offer a natural experiment to discover the genetic, physiological, and neural features required for blood feeding. We assembled high-quality, chromosome-level genomes for seven mosquito species, along with whole-brain tomographic reconstructions. Our study spanned the three known non-blood-feeding lineages (Toxorhynchites rutilus, Topomyia yanbarensis, and Malaya genurostris), blood-feeding relatives, and the variable blood feeder Wyeomyia smithii. Comparing orthologous gene clades, we detected convergent gene loss specific to the three lineages that had lost blood feeding. The losses include the salivary platelet-aggregation inhibitor Aegyptin, blood-activated serine proteases such as Chymotrypsin-1 and 2, and a carboxylesterase expressed in the female fat body and brain glia. The loss of blood feeding also extended to chemosensation. Non-blood feeders lack two odorant-binding protein clades, two ionotropic receptor clades associated with blood-component taste detection, and odorant receptor clades expressed in a discrete, strongly female-biased population of antennal neurons. Female-biased head gene expression was reduced in non-blood feeders. Finally, examination of whole-brain tomographic reconstructions across the species revealed smaller antennal lobes in non-blood-feeding females, consistent with reduced olfactory input. Together, these findings identify a compact set of genes, expression patterns, and brain regions associated with blood feeding, offering an evolutionary entry point for functional dissection of how this complex and dangerous trait is built and dismantled.

genomics↗

Fucoidan from brown algae Laminaria japonica trigger apoptosis in colon cancer cells

In many cases, cancer cells develop resistance to chemotherapy and other cancer treatments. Therefore, there is a need for new therapeutic agents using naturally derived compounds that are expected to have low toxicity and fewer side effects. Fucoidan is a sulfated polysaccharide found in brown algae such as kelp and wakame seaweed. Many previous reports have shown that fucoidan exerts anti-bacterial, anti-viral, antioxidant, immunomodulatory effects, and anti-tumor effects. The antitumor and antiviral effects of fucoidan have been reported to vary depending on its origin, as they are influenced by sulfate content and molecular weight. Therefore, it is important to investigate the antitumor effects of various species of fucoidan, but there are few reports on the effects of fucoidan derived from Laminaria japonica on colorectal cancer. In this study, we evaluated the effects of fucoidan from Laminaria japonica on apoptosis in five human colon cancer cells. The apoptotic cell population was significantly increased in fucoidan-treated cells. In addition, the expressions of Bax, Bak, PARP, caspase-8, -9 and -3 were upregulated. The necroptosis-related molecule RIP and MLKL were degraded indicates that necroptosis was not involved in this fucoidan-treated cell death. These results suggest that fucoidan-treated cells showed induction of apoptosis via mitochondrial intrinsic pathway, but not necroptosis via caspase-8. Fucoidan-induced apoptosis may prove useful in the therapeutic protocol of colon cancer.

cancer biology↗