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1.
This opinion piece offers a commentary on the four papers that address the theme of the development of self and other understanding with a view to highlighting the important contribution of developmental research to understanding of mechanisms of social cognition. We discuss potential mechanisms linking self–other distinction and empathy, implications for grouping motor, affective and cognitive domains under a single mechanism, applications of these accounts for joint action and finally consider self–other distinction in group versus dyadic settings.  相似文献   
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Zusammenfassung Die gewonnenen Ergebnisse zeigen mit völliger Klarheit, daß die Schlunddrüse ein stark ausgesprochenes Invertierungsvermögen besitzt, das sich jedoch in hohem Grade, je nach dem Alter der Bienen ändert. Im Gegensatz zum Mitteldarm, der Invertase auszuscheiden beginnt von dem Augenblicke des Ausschlüpfens der jungen Biene, bedarf die Schlunddrüse eines gewissen Zeitraumes zu ihrer Entwicklung. Die von uns angestellten Versuche können indessen die Frage noch nicht endgültig entscheiden, in welchem Moment die Schlunddrüse zu funktionieren beginnt. Wir haben die Sekretionstätigkeit der Drüse an verhältnismäßig alten Bienen — von 10 Tagen an — beobachtet und die maximalen Ziffern der Zuckerinversion bei 30tägigen Bienen ermittelt. Hieraus lassen sich noch keine verallgemeinernden Schlüsse ziehen. Unsere Versuche begannen im August und dauerten bis Mitte September, fanden also am Ende der Saison statt. Das Versuchsvolk war schwach und die Zahl der jungen Bienen und der Brut gering (auf einem Rahmen). Als Beleg dazu genügt der Hinweis, daß die Bienen ihre Orientierungsausflüge im Alter von 18 Tagen unternahmen. Alle diese Faktoren könnten zweifellos das Tempo der Entwicklung des Organismus der Biene — und der Sehlunddrüse im besonderen — beeinflussen. Es ist sehr wahrscheinlich, daß eine Untersuchung über die Veränderung des Invertierungsvermögens der Schiunddrüsen von Bienen, die zu verschiedenen Zeiten der Frühlings- und Sommersaison ausgeschlüpft waren, auch eine verschiedene Schnelligkeit der Entwicklung der Drüse ergeben würde.Was die Brustdrüse anbetrifft, so geben unsere Versuche kein genügendes Material zur Beurteilung, welche Rolle sie im Kohlehydratstoffwechsel der Biene spielt. Nur eines steht fest, daß sie an der Invertierung des Zuckers in keinem Falle beteiligt ist.Der Mitteldarm scheint auch mit dem Alter der Biene sein Invertierungsvermögen zu steigern, wenn auch nicht in solchem Umfange als die Schlunddrüse.Die von uns gewonnenen Resultate erlauben, einige Schlüsse über mehrere Fragen der Bienenbiologie zu ziehen, wie z. B. die Frage über den Anteil der Schlunddrüse an der Futtersaftbereitung usw. Doch müssen solche spezielle Fragen an einer anderen Stelle ausführlich besprochen werden.Zum Schlusse sprechen wir Dr. Resnitschenko sowie Dr. Alpatov für die freundliche Hilfe bei der Ausführung der Arbeit unseren Dank aus.  相似文献   
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During the long term noradrenaline injection (0.56 microgram/kg/min-2 hours during six days) the number of connective tissue mast cells decreases in dogs. Mature cells disappears and the percentage of young forms increases. Marked degranulation develops. 5-10 cell groups and chains are formed. The increase of free heparin level and the activation of anticoagulant unit hemostasis correspond to these changes. It is due to mast cells discharge of biologically active heparin which is an unspecific adaptogen.  相似文献   
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The proteins of submitochondrial particles solubilized with 0.1% Triton X-100 were separated by polyacrylamide gel electrophoresis. Hydrolysis of several proteinase substrates was registered directly in the gel after completion of electrophoresis. According to the data obtained the inner mitochondrial membrane contains one or two enzymes which catalyze hydrolysis of cytochrome c as well as one or two enzymes splitting synthetic substrate of trypsin-like proteinases, e. g. N-alpha-benzoyl-L-arginine-p-nitroanilide (BAPA) and N-alpha-benzoyl-L-arginine-beta-naphthylamide (BANA). Submitochondrial particles were shown to catalyze hydrolysis of 3H-labelled cytochrome c. This activity is suppressed by the same inhibitors as the hydrolysis of mitochondrial translation products, i. e. phenyl-methylsulfonylfluoride, p-chloromercuribenzosulfonate, leupeptin and antipain. Presumably these two processes are catalyzed by the same enzyme localized in the inner mitochondrial membrane. Physiological functions of BAPA- and BANA-hydrolyzing enzyme(s) are still unclear.  相似文献   
6.
Understanding the response of any species to climate change can be challenging. However, in short-lived species the faster turnover of generations may facilitate the examination of responses associated with longer-term environmental change. Octopus tetricus, a commercially important species, has undergone a recent polewards range shift in the coastal waters of south-eastern Australia, thought to be associated with the southerly extension of the warm East Australian Current. At the cooler temperatures of a polewards distribution limit, growth of a species could be slower, potentially leading to a bigger body size and resulting in a slower population turnover, affecting population viability at the extreme of the distribution. Growth rates, body size, and life span of O. tetricus were examined at the leading edge of a polewards range shift in Tasmanian waters (40°S and 147°E) throughout 2011. Octopus tetricus had a relatively small body size and short lifespan of approximately 11 months that, despite cooler temperatures, would allow a high rate of population turnover and may facilitate the population increase necessary for successful establishment in the new extended area of the range. Temperature, food availability and gender appear to influence growth rate. Individuals that hatched during cooler and more productive conditions, but grew during warming conditions, exhibited faster growth rates and reached smaller body sizes than individuals that hatched into warmer waters but grew during cooling conditions. This study suggests that fast growth, small body size and associated rapid population turnover may facilitate the range shift of O. tetricus into Tasmanian waters.  相似文献   
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Helminths express various carbohydrate-containing glycoconjugates on their surface, and they release glycan-rich excretion/secretion products that can be very important in their life cycles, infection and pathology. Recent evidence suggests that parasite glycoconjugates could play a role in the evasion of the immune response, leading to a modified Th2-polarized immune response that favors parasite survival in the host. Nevertheless, there is limited information about the nature or function of glycans produced by the trematode Fasciola hepatica, the causative agent of fasciolosis. In this paper, we investigate whether glycosylated molecules from F. hepatica participate in the modulation of host immunity. We also focus on dendritic cells, since they are an important target of immune-modulation by helminths, affecting their activity or function. Our results indicate that glycans from F. hepatica promote the production of IL-4 and IL-10, suppressing IFNγ production. During infection, this parasite is able to induce a semi-mature phenotype of DCs expressing low levels of MHCII and secrete IL-10. Furthermore, we show that parasite glycoconjugates mediate the modulation of LPS-induced maturation of DCs since their oxidation restores the capacity of LPS-treated DCs to secrete high levels of the pro-inflammatory cytokines IL-6 and IL-12/23p40 and low levels of the anti-inflammatory cytokine IL-10. Inhibition assays using carbohydrates suggest that the immune-modulation is mediated, at least in part, by the recognition of a mannose specific-CLR that signals by recruiting the phosphatase Php2. The results presented here contribute to the understanding of the role of parasite glycosylated molecules in the modulation of the host immunity and might be useful in the design of vaccines against fasciolosis.  相似文献   
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Studies on compactization and decompactization of the genome are of great importance for elucidation of structural mechanisms taking part in the regulation of gene activity. Kinetoplast DNA (kpDNA) is a convenient model for studies of compactization processes. KpDNA represents unique structure ("network"), consisting of catenated circular molecules of two types: minicircles (900 b.p.) and maxicircles (40 000 b.p.). The compactization process of kpDNA in vitro caused by interaction with synthetic peptide-dansylhydraside trivaline was studied. It was shown that at the initial stages the hairpins are observed on minicircles as if triple rings are being organized. The formation of hairpin is probably favoured by the presence in the minicircles of bent DNA, a specific nucleotide sequence causing rigid bending of the DNA helix. The hairpin does not make contact with the neighbouring DNA segment to form a triple ring, because the sizes of minicircles are too small. The minicircles compactization is finished with a complete collapse of the minicircles with the formation of rod-like structures. The catenation causes branching of rod-like structures. As a result of their intermolecular interaction, the branched rod-like structures become thicker. The process is completed with formation of the compact network, its diameter being 3-6 times smaller compared to the initial one.  相似文献   
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