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Yao, I.

Publications and source records attributed to Yao, I..

2 recordsLinked to original sources

The detection of brood parasitism and quasi-parasitism in the burying beetle Nicrophorus quadripunctatus under natural conditions

Intraspecific brood parasitism (IBP), where a parasitic female lays eggs in the nest of another female of the same species, occurs in insects and birds. Also, quasi-parasitism (QP), where a parasitic female copulates with a host male at his nest and lays eggs that are fertilized by the male, has been documented in a few monogamous birds, but QP has not been observed in any insects. Burying beetles, genus Nicrophorus, use small vertebrate carcasses for reproducing and providing biparental care for their offspring. IBP has been observed in one burying beetle by laboratory experiments, but has not been well reported under natural conditions. IBP and QP may occur under natural conditions in burying beetles. Here we focused on a burying beetle, Nicrophorus quadripunctatus. Ten broods, consisting of larvae and their parental female and male, were collected from a deciduous forest. To investigate the kin relationship between parents and larvae, eight microsatellite DNA loci were used. We detected three types of parasitic larvae: 1) larva not related to either its parental female or male, 2) larva not related to its parental female, but unknown regarding its parental male, and 3) larva not related to its parental female, but related to its parental male. These results suggested that IBP and QP can occur with certain frequencies in the reproduction of N. quadripunctatus under natural conditions. QP is thought to have a benefit for a parental male to enhance his paternity within one brood in this species.

animal behavior and cognition↗

Proteomic profile of nuclei containing p62-positive inclusions in neuronal intranuclear inclusion disease

Neuronal intranuclear inclusion disease (NIID) is a neurodegenerative disease characterized by eosinophilic hyaline intranuclear inclusions in the neurons, glial cells, and other somatic cells. Although CGG repeat expansions in NOTCH2NLC have been identified in most East Asian patients with NIID, the pathophysiology of NIID remains unclear. Intranuclear inclusions are the pathological hallmark of NIID. Previously, immunohistochemistry has revealed that intranuclear inclusions are ubiquitin-, p62-, and SUMO-1-positive, suggesting the possible alteration of the ubiquitin-proteasomal protein degradation system in the nuclei with inclusions. However, the molecular mechanisms within these nuclei remain unclear. Herein, we analyzed the proteomic profile of nuclei with p62-positive inclusions in NIID with CGG repeat expansion in NOTCH2NLC to discover the proteins involved in the NIID pathophysiology. We used fluorescence-activated cell sorting and liquid chromatography-tandem mass spectrometry (LC-MS/MS) to quantify each protein identified in the nuclei with p62-positive inclusions. The distribution of increased proteins in the autopsy brain samples from three NIID patients was confirmed via immunofluorescence. Overall, 526 proteins were identified, of which 243 were consistently quantified using MS. A 1.4-fold increase was consistently observed for 20 proteins in nuclei with p62-positive inclusions compared to those without. Fifteen proteins identified with medium or high confidence in the LC-MS/MS analysis were further evaluated. Gene ontology enrichment analysis showed enrichment of several terms, including poly(A) RNA binding, nucleosomal DNA binding, and protein binding. Immunofluorescence studies confirmed that the fluorescent intensities of increased RNA-binding proteins identified by proteomic analysis, namely hnRNP A3, hnRNP A2/B1, and hnRNP C1/C2, were higher in the nuclei with p62-positive inclusions than those without; however, they were not confined to the intranuclear inclusions. We identified several increased proteins in nuclei with p62-positive inclusions. These data can form the basis for understanding the pathophysiology of NIID.

biochemistry↗