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71.
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Fieldfares (Turdus pilaris), which nest solitarily as well as in colonies, offer an opportunity to assess within one species the relative advantages of clumping versus spacing out. An experiment with artificial, egg-baited nests showed that predation in the absence of fieldfares was higher on clumped than on scattered nests. In another experiment, we tested whether artificial nests run a higher risk of predation near solitary fieldfare pairs than near fieldfare colonies. Nest predation was higher near solitary fieldfare pairs than outside and inside fieldfare colonies. The risk probably was higher outside than inside colonies. Communal antipredator attacks is the likely cause of reduced predation near colonies. Even solitary fieldfare pairs confer some degree of protection, because predation was lower at artificial nests near solitary fieldfare pairs than at nests without neighbouring fieldfares. 相似文献
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Malte Andersson 《Ethology : formerly Zeitschrift fur Tierpsychologie》2005,111(1):1-23
Abstract In classical polyandry, sex roles are reversed and a female reproduces with several males, each of whom raises his offspring with little or no help from her. This mating system occurs in some fishes and birds, and it is of great interest in relation to parental investment, sex role and sexual selection theory. The evolution of classical polyandry, however, is debated and not well understood. It is here suggested to generally take place in three main steps. (1) First evolves male care for eggs, for reasons that differ between fishes and birds. (2) Second, a female becomes able to lay more eggs than a male can accommodate. This can happen, for example, by evolution of male pregnancy or smaller body size, or by female production of more or larger eggs, made possible by larger female body size or more food. Polyandry in several taxa is associated with shift to a habitat rich in food during the breeding season, to novel specialised foraging methods, or to both. A favourable food situation may be crucial for evolution of classical polyandry. (3) In step three, females compete to lay two or more clutches in sequence for different males. Successful polyandrous females obtain more offspring, spreading traits that enhance success in competition over males. Step three may be most likely in species with small body size, for reasons of reproductive constraints and seasonality. Evolution of classical polyandry appears to have followed these steps in shorebirds, coucals and pipefishes, but the reasons why certain species differ from their close phylogenetic relatives in being polyandrous are far from clear. Behavioural and ecological studies of additional species, and detailed phylogenies of taxa with diverse mating systems including polyandry, are needed for testing these ideas. 相似文献
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The identification of areas of endemism is essential in building an area classification, but plays little role in how natural areas are discovered. Rather area monophyly, derived from cladistics, is essential in the discovery of natural area classifications or area taxonomy. We propose Area Taxonomy to be a new sub-discipline of historical biogeography, one that can be revised and debated, and which has its own area nomenclature. Separately to area taxonomy, we outline how natural areas may be discovered by transcribing the concepts of homology and monophyly from biological systematics to historical biogeography, in the form of area homologues, area homologies and area monophyly. 相似文献
78.
Our understanding of the plasma membrane, once viewed simply as a static barrier, has been revolutionized to encompass a complex, dynamic organelle that integrates the cell with its extracellular environment. Here, we discuss how bidirectional signaling across the plasma membrane is achieved by striking a delicate balance between restriction and propagation of information over different scales of time and space and how underlying dynamic mechanisms give rise to rich, context-dependent signaling responses. In this Review, we show how computer simulations can generate counterintuitive predictions about the spatial organization of these complex processes. 相似文献
79.
Gastropod nacre: structure, properties and growth--biological, chemical and physical basics 总被引:1,自引:0,他引:1
The biogenic polymer/mineral composite nacre is a non-brittle biological ceramic, which self-organizes in aqueous environment and under ambient conditions. It is therefore an important model for new sustainable materials. Its highly controlled structural organization of mineral and organic components at all scales down to the nano- and molecular scales is guided by organic molecules. These molecules then get incorporated into the material to be responsible for properties like fracture mechanics, beauty and corrosion resistance. We report here on structure, properties and growth of columnar (gastropod) nacre with emphasis on the genus Haliotis in contrast to sheet nacre of many bivalves. 相似文献
80.
Quantification of cytosolic interactions identifies Ede1 oligomers as key organizers
of endocytosis 下载免费PDF全文
Dominik Boeke Susanne Trautmann Matthias Meurer Malte Wachsmuth Camilla Godlee Michael Knop Marko Kaksonen 《Molecular systems biology》2014,10(11)
Clathrin-mediated endocytosis is a highly conserved intracellular trafficking pathway that
depends on dynamic protein–protein interactions between up to 60 different proteins. However,
little is known about the spatio-temporal regulation of these interactions. Using fluorescence
(cross)-correlation spectroscopy in yeast, we tested 41 previously reported interactions in
vivo and found 16 to exist in the cytoplasm. These detected cytoplasmic interactions
included the self-interaction of Ede1, homolog of mammalian Eps15. Ede1 is the crucial scaffold for
the organization of the early stages of endocytosis. We show that oligomerization of Ede1 through
its central coiled coil domain is necessary for its localization to the endocytic site and we link
the oligomerization of Ede1 to its function in locally concentrating endocytic adaptors and
organizing the endocytic machinery. Our study sheds light on the importance of the regulation of
protein–protein interactions in the cytoplasm for the assembly of the endocytic machinery
in vivo. 相似文献