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991.
We have examined the effects of herbivore diversity on parasitoid community persistence and stability, mediated by nonspecific information from herbivore‐infested plants. First, we investigated host location and patch time allocation in the parasitoid Cotesia glomerata in environments where host and/or nonhost herbivores were present on Brassica oleracea leaves. Parasitoids were attracted by infochemicals from leaves containing nonhost herbivores. They spent considerable amounts of time on such leaves. Thus, when information from the plant is indistinct, herbivore diversity is likely to weaken interaction strengths between parasitoids and hosts. In four B. oleracea fields, all plants contained herbivores, often two or more species. We modelled parasitoid–herbivore communities increasing in complexity, based on our experiments and field data. Increasing herbivore diversity promoted the persistence of parasitoid communities. However, at a higher threshold of herbivore diversity, parasitoids became extinct due to insufficient parasitism rates. Thus, diversity can potentially drive both persistence and extinctions. 相似文献
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With the sequencing of the human genome and the genomes of most major model organisms completed, the systematic characterisation of gene functions remains a key challenge. During the past few years, RNA interference (RNAi) has become a powerful tool to silence the expression of genes and analyse their loss-of-function phenotype when mutant alleles are not available. Genome-wide RNAi screens against all predicted genes have been successfully used to dissect a variety of biological processes in Caenorhabditis elegans. Recently, a genome-wide library of double-stranded RNAs, that target every gene in the Drosophila genome and that is suitable for high throughput cell-based assays, was published. In this paper, recent advances will be summarised. Screening strategies and applications as a route to comprehensively characterising gene function will be discussed. 相似文献
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Klein, W., Böhme, W. and Perry, S. F. 2000. The mesopneumonia and the post‐hepatic septum of the Teiioidea (Reptilia: Squamata). —Acta Zoologica (Stockholm) 81 : 109–119 This study investigates the structure of the pleuroperitoneal cavity of Teiioidea. Seven of nine genera of Teiidae and eight of 35 genera of Gymnophthalmidae were dissected and the results are presented in a highly schematic two‐dimensional representation. The main anatomical differences between the two families are (1) the presence of a hepatic ligament which fuses with the pericardiaco‐peritoneal septum in the Gymnophthalmidae but not in the Teiidae; (2) the presence of a ventral mesopneumonium on the right side in the Gymnophthalmidae, while this structure is secondarily lacking in the Teiidae; (3) that the post‐hepatic septum of Teiidae consists of a bipartite hepatic ligament and the ventral mesentery, while in gymnophthalmids the hepatic ligament remains undivided. Neusticurus and Echinosaura completely lack a post‐hepatic septum. The results are consistent with the hypothesis that the Gymnophthalmidae are primitive within the Teiioidea and that the Tupinambinae are the most highly derived teiids. We propose that the post‐hepatic septum may restrict passive visceral movement during breathing, thereby increasing the efficiency of respiratory effort; a modification that could benefit the fitness of active, predatory teiids. 相似文献
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A revision of the monoraphid pennate diatom genus Campyloneis Grunow was carried out based on LM and EM observations. The material examined originated from various herbarium collections and from extant epiphytic diatom communities on leaves of Posidonia spp. We also examined the generitype C. grevillei (Smith) Grunow and the fossil material of C. gheyselinchi Reinhold from which the author extracted the type. Our results clarified the fine structure of C. grevillei and C. gheyselinchi. Of the various varieties of C. grevillei, only the variety argus (Grunow) Cleve was retained. This differs from the nominate variety in the arrangement and shape of the areolae adjacent to the sternum of the araphid valve. The newly described taxon Campyloneis juliae De Stefano differs from all Campyloneis species in areolae ultrastructure and morphology of the valvocopulae. As for the fossil species C. gheyselinchi, the sternum valve areolae are similar to those of C. grevillei, but scarcity of frustules in the type material prohibited evaluation of its variability. For this reason we provisionally maintained its rank of species. The elaborate linking systems among the valvocopulae and valves in Campyloneis species appear to provide structural reinforcement against pressure from neighboring epiphytic diatoms and scouring of seagrass leaves. 相似文献
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Jennifer I Semple Christopher M Sanderson R Duncan Campbell 《Briefings in Functional Genomics and Prot》2002,1(1):40-52
The availability of comprehensive protein-protein interaction maps will significantly enhance medical research and aid the functional characterisation of novel genes. To date, the largest scale studies of protein-protein interactions have used the yeast two hybrid method. In this review we take a closer look at the different approaches used in these studies and discuss some key considerations that should be taken into account when designing high throughput interaction mapping projects. 相似文献
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