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81.
Panagiota Koskinioti Erica Ras Antonios A. Augustinos George Tsiamis Leo W. Beukeboom Carlos Caceres Kostas Bourtzis 《Entomologia Experimentalis et Applicata》2019,167(3):197-208
The olive fruit fly, Bactrocera oleae (Rossi) (Diptera: Tephritidae), is the major insect pest of olive orchards (Olea europaea L.), causing extensive damages on cultivated olive crops worldwide. Due to its economic importance, it has been the target species for a variety of population control approaches including the sterile insect technique (SIT). However, the inefficiency of the current mass‐rearing techniques impedes the successful application of area‐wide integrated pest management programs with an SIT component. It has been shown that insect mass rearing and quality of sterile insects can be improved by the manipulation of the insect gut microbiota and probiotic applications. In order to exploit the gut bacteria, it is important to investigate the structure of the gut microbial community. In the current study, we characterized the gut bacterial profile of two wild olive fruit fly populations introduced in laboratory conditions using next generation sequencing of two regions of the 16S rRNA gene. We compared the microbiota profiles regarding the geographic origin of the samples. Additionally, we investigated potential changes in the gut bacteria community before and after the first exposure of the wild adult flies to artificial adult diet with and without antibiotics. Various genera – such as Erwinia, Providencia, Enterobacter, and Klebsiella – were detected for the first time in B. oleae. The most dominant species was Candidatus Erwinia dacicola Capuzzo et al. and it was not affected by the antibiotics in the artificial adult diet used in the first generation of laboratory rearing. Geographic origin affected the overall structure of the gut community of the olive fruit fly, but antibiotic treatment in the first generation did not significantly alter the gut microbiota community. 相似文献
82.
Reza Zolfaghari Emameh Harlan R. Barker Leo Syrjänen Linda Urbański Claudiu T. Supuran Seppo Parkkila 《Journal of enzyme inhibition and medicinal chemistry》2016,31(6):176-184
AbstractCarbonic anhydrases (CAs) are metalloenzymes, and classified into the evolutionarily distinct α, β, γ, δ, ζ, and η classes. α-CAs are present in many living organisms. β- and γ-CAs are expressed in most prokaryotes and eukaryotes, except for vertebrates. δ- and ζ-CAs are present in phytoplanktons, and η-CAs have been found in Plasmodium spp. Since the identification of α- and β-CAs in Caenorhabditis elegans, the nematode CAs have been considered as an emerging target in research focused on antiparasitic CA inhibitors. Despite the presence of α-CAs in both helminths and vertebrates, structural studies have revealed different kinetic and inhibition results. Moreover, lack of β-CAs in vertebrates makes this enzyme as an attractive target for inhibitory studies against helminthic infection. Some CA inhibitors, such as sulfonamides, have been evaluated against nematode CAs. This review article aims to present comprehensive information about the nematode CAs and their inhibitors as potential anthelminthic drugs. 相似文献
83.
Xerostomia (dry mouth) is an uncomfortable and potentially harmful oral symptom which is usually caused by a decrease in the secretion rate of saliva (salivary gland hypofunction, or SGH). It is more prevalent in the elderly population, primarily due to their increased use of drugs and their susceptibility to disease. Many drugs and drug classes have been linked to xerostomia; the xerogenic effect increases when many drugs are taken concurrently. This Reference Guide to Drugs and Dry Mouth is designed to allow the reader to rapidly identify those pharmacologic agents which have the capacity to induce xerostomia and SGH. Xerogenic drugs can be found in 42 drug categories and 56 sub-categories. A guide to the management of drug-induced SGH and xerostomia is also provided. 相似文献
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85.
Matthieu Gilson Anthony N. Burkitt David B. Grayden Doreen A. Thomas J. Leo van Hemmen 《Biological cybernetics》2009,101(2):81-102
Spike-timing-dependent plasticity (STDP) determines the evolution of the synaptic weights according to their pre- and post-synaptic
activity, which in turn changes the neuronal activity. In this paper, we extend previous studies of input selectivity induced
by (STDP) for single neurons to the biologically interesting case of a neuronal network with fixed recurrent connections and
plastic connections from external pools of input neurons. We use a theoretical framework based on the Poisson neuron model
to analytically describe the network dynamics (firing rates and spike-time correlations) and thus the evolution of the synaptic
weights. This framework incorporates the time course of the post-synaptic potentials and synaptic delays. Our analysis focuses
on the asymptotic states of a network stimulated by two homogeneous pools of “steady” inputs, namely Poisson spike trains
which have fixed firing rates and spike-time correlations. The (STDP) model extends rate-based learning in that it can implement,
at the same time, both a stabilization of the individual neuron firing rates and a slower weight specialization depending
on the input spike-time correlations. When one input pathway has stronger within-pool correlations, the resulting synaptic
dynamics induced by (STDP) are shown to be similar to those arising in the case of a purely feed-forward network: the weights
from the more correlated inputs are potentiated at the expense of the remaining input connections. 相似文献
86.
87.
FOXM1 Transcription Factor: A New Component of Chronic Myeloid Leukemia Stem Cell Proliferation Advantage 下载免费PDF全文
Manuela Mancini Fausto Castagnetti Simona Soverini Elisa Leo Caterina De Benedittis Gabriele Gugliotta Gianantonio Rosti Luana Bavaro Sara De Santis Cecilia Monaldi Margherita Martelli Maria Alessandra Santucci Michele Cavo Giovanni Martinelli 《Journal of cellular biochemistry》2017,118(11):3968-3975
88.
89.
Jansen R van Embden JD Gaastra W Schouls LM 《Omics : a journal of integrative biology》2002,6(1):23-33
The rapid increase in genomic sequences provides new opportunities for comparative genomics. In this report, we describe a novel family of repeat sequences that is present in Bacteria and Archaea but not in Eukarya. The repeat loci typically consisted of repetitive stretches of nucleotides with a length of 25 to 37 bp alternated by nonrepetitive DNA spacers of approximately equal size as the repeats. The nucleotide sequences and the size of the repeats were highly conserved within a species, but between species the sequences showed no similarity. Due to their characteristic structure, we have designated this family of repeat loci as SPacers Interspersed Direct Repeats (SPIDR). The SPIDR loci were identified in more than forty different prokaryotic species. Individual species such as Mycobacterium tuberculosis contain one SPIDR locus, while other species such as Methanococcus jannaschii contained up to 20 different loci. The number of repeats in a locus varies greatly from two repeats to several dozens of repeats. The SPIDR loci were flanked by a common 300-500-bp leader sequence, which appeared to be conserved within a species but not between species. The SPIDR locus of M. tuberculosis is extensively used for strain typing. The finding of SPIDR loci in other prokaryotes, including the pathogens Salmonella, Campylobacter, and Pasteurella may extend this surveillance to other species. 相似文献
90.