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The wintering mixed flocks of tits (Paridae) and associated birds, are good objects for studying ecological niche division. In this respect the mixed species flocks on the Asian continent are poorly studied in comparison to European and North American ones. In this report we describe spatial distribution of foraging sites of eight bird species in 39 winter flocks near Seoul, Korea: Varied tit – Parus varius Temminck & Schlegel, Great tit – P. major Temminck & Schlegel, Marsh tit – P. palustris Bianchi, Coal tit – P. ater Buturlin, Long-tailed tit – Aegithalos caudatus Clark, Nuthatch – Sitta europaea Swinhoe, Japanese Pygmy Woodpecker – Dendrocopos kizuki Taka-Tsukasa, and Goldcrest – Regulus regulus Blakiston. Foraging sites (in coniferous and mixed forests) were classified into five height layers: on the ground, <1.5 m above the ground, 1.5–4 m, 4–7m, and > 7m. Trees were divided into three horizontal zones depending on the distance from trunk: crown interior, intermediate zone, and external twigs. Species differed significantly in the use of height layers: P. major foraged mostly on the ground, P. ater and A. caudatus foraged mostly in the highest forest layer, P. palustris was often seen in bushes, and P. varius occurred in the middle tree layer. There was no clear correlation between height of foraging and species body size. However, body size played an important role for segregation in horizontal zones, and two species, the larger P.major and the smaller P. ater differed significantly in the mean distance from trunk. Species of large body size like P. varius and P. major, foraged mostly in the interior of the tree crown, while the smaller species, P.ater and A. caudatus, foraged mostly in the external zone; the intermediate in size, P. palustris, foraged equally often in each of the three zones. The sites used most often by Korean populations of three tit species, P. major, P. palustris and P. ater, were similar to the sites used by European populations of the respective species. These results represent one of a few quantitative studies on mixed species flocks in continental Asia.
Natural selection will favor parents who adjust their effort in relation to the fitness costs and benefits from the current brood. In this study, we investigated how magpie parents adjust provisioning effort based on the number of nestlings in the brood, by analyzing video recordings of begging and feeding behaviors of birds. The number of visits per hour increased with brood size, but the number of feeding events per visit did not. Because of the latter, parental provisioning that a nestling is receiving on average decreased in larger broods. This may be viewed either as an evidence for the limitation of parental provisioning in larger broods, or as an evidence of parental strategy optimizing the brood-size-specific provisioning effort for the current reproductive event as a tradeoff between current and future reproduction. With other aspects of parental provisioning behavior, we did not find clear indication that parent confronts upper limitation in provisioning large broods. Pervisit number of feeding and nestlings’ body condition around the time of fledging did not depend on brood size, which implies that parental effort is not at its limit in larger broods. Based on the results, we suggest that the provisioning effort of black-billed magpie parents is better explained by the life-history trade-off model for provisioning.
The Visible Korean research team used Mimics software (Materialise, Leuven, Belgium) for the segmentation and subsequent surface reconstruction of heart structures using information obtained from sectioned images of a cadaver. Twenty-six heart components were outlined in advance on Photoshop (Adobe Systems, San Jose, CA, USA). By use of the Mimics, the outlined images were then browsed along with the vertical planes as well as the 3-dimensional surface models, which were immediately built by piling the images. Erroneous delineation was readily detected and revised until satisfactory heart models were acquired. The surface models and the selected sectioned images in horizontal, coronal, and sagittal planes were inputted into a PDF file, where any combinations of reconstructed constituents could be displayed and rotated by the user. Mimics software accelerated the segmentation and surface reconstruction of heart anatomical structures. Similar benefits hopefully result from various serial images of other organs. The PDF file, and plane and stereoscopic image data are being distributed to others, and should prove valuable for medical students and clinicians. (Folia Morphol 2015; 74, 3: 372–377)
Tumor establishment and penetration consists of a series of complex processes involving multiple changes in gene expression and protein modification. Proteome changes of tumor tissue were investigated after intraperitoneal administration of a high concentration of ascorbic acid in BALB/C mice implanted with CT-26 cancer cells using two-dimensional gel electrophoresis and mass spectrometry. Eighteen protein spots were identified whose expression was different between control and ascorbic acid treatment groups. In particular, eukaryotic translation initiation factor 3 subunit 1, nucleophosmin, latexin, actin-related protein 2/3 complex subunit 5, M2-type pyruvate kinase, vimentin, tumor protein translationally-controlled 1, RAS oncogene family Ran, plastin 3 precursor, ATPase, Rho GDT dissociation inhibitor β, and proteasome activator subunit 2 expression were quantitatively up-regulated. The increase in the level of these proteins was accompanied by an increase in mRNA level. The cytoskeleton protein actin, vimentin, and tumor protein translationally-controlled 1 showed quantitative expression profile differences. A change in actin cytoskeleton distribution, functionally relevant to the proteome result, was observed after treatment with ascorbic acid. These results suggest a previously undefined role of ascorbic acid in the regulation of cytoskeleton remodeling in tumor tissues.
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