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We consider a discrete time model of semelparous biennial population dynamics. Interactions between individuals are modelled
with the aid of an ``environmental' variable I. The impact on and the sensitivity to the environmental condition is age specific. The main result is that competitive exclusion
between the year classes is possible as is their coexistence. For moderate values of the basic reproduction ratio R
0
there is a strict dichotomy: depending on the other parameters we either find competitive exclusion or coexistence. We characterize
rather precisely the patterns of age specific impact and sensitivity that lead to either of these outcomes.
Received: 13 July 2001 / Revised version: 26 June 2002 / Published online: 19 November 2002
Key words or phrases: Competitive exclusion – Semelparous species – Periodical insects 相似文献
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Bethany Levick Anne Laudisoit Liesbeth Wilschut Elisabeth Addink Vladimir Ageyev Aidyn Yeszhanov Valerij Sapozhnikov Alexander Belayev Tania Davydova Sally Eagle Mike Begon 《PloS one》2015,10(9)
Introduction
The wildlife plague system in the Pre-Balkhash desert of Kazakhstan has been a subject of study for many years. Much progress has been made in generating a method of predicting outbreaks of the disease (infection by the gram negative bacterium Yersinia pestis) but existing methods are not yet accurate enough to inform public health planning. The present study aimed to identify characteristics of individual mammalian host (Rhombomys opimus) burrows related to and potentially predictive of the presence of R.opimus and the dominant flea vectors (Xenopsylla spp.).Methods
Over four seasons, burrow characteristics, their current occupancy status, and flea and tick burden of the occupants were recorded in the field. A second data set was generated of long term occupancy trends by recording the occupancy status of specific burrows over multiple occasions. Generalised linear mixed models were constructed to identify potential burrow properties predictive of either occupancy or flea burden.Results
At the burrow level, it was identified that a burrow being occupied by Rhombomys, and remaining occupied, were both related to the characteristics of the sediment in which the burrow was constructed. The flea burden of Rhombomys in a burrow was found to be related to the tick burden. Further larger scale properties were also identified as being related to both Rhombomys and flea presence, including latitudinal position and the season.Conclusions
Therefore, in advancing our current predictions of plague in Kazakhstan, we must consider the landscape at this local level to increase our accuracy in predicting the dynamics of gerbil and flea populations. Furthermore this demonstrates that in other zoonotic systems, it may be useful to consider the distribution and location of suitable habitat for both host and vector species at this fine scale to accurately predict future epizootics. 相似文献17.
D. A. Davydova 《Biology Bulletin》2010,37(5):437-445
Amniotic fluid (AF) contains a heterogeneous population of cells of fetal origin in which stem cells are present. These cells
are characterized by the expression of mesenchymal (CD73, CD90, CD105) and neural (Nestin, β3-tubulin, NEFH) markers, and
also some markers of pluripotency (Oct4, Nanog), and they are capable of differentiating into diverse derivatives in vitro.
We have shown that epithelial markers (Keratin 19, Keratin 18, and p63) are expressed in AF stem cells simultaneously with
mesenchymal ones. During cloning, colonies of cells with fibroblastoid and epithelioid cells are formed. The status and differentiation
potential of stem cells from AF have been discussed. 相似文献
18.
E. Yu. Nikonova S. A. Volchkov V. G. Kljashtorny S. V. Tishchenko O. S. Kostareva N. A. Nevskaya O. S. Nikonov A. G. Gabdoulkhakov A. D. Nikulin N. L. Davydova V. A. Streltsov M. B. Garber S. V. Nikonov 《Molecular Biology》2007,41(4):622-629
Nine mutant ribosomal proteins L1 from the bacterium Thermus thermophilus and archaeon Methanococcus jannaschii were obtained and their crystal structures were determined and analyzed. The structure of the S179C TthL1 mutant, determined earlier, was also analyzed. In half of the proteins studied, point mutations of the amino acid residues exposed on the protein surface essentially changed the spatial structure of the protein. This proves that a correct study of biological processes with the help of site-directed mutagenesis requires a preliminary determination or, at least, modeling of the structures of mutant proteins. A detailed comparison of the structures of the L1 mutants and the corresponding wild-type L1 proteins demonstrated that the side chain of a mutated amino acid residue tends to adopt a location similar to that of the side chain of the corresponding residue in the wild-type protein. This observation assists in modeling the structure of mutant proteins. 相似文献
19.
Nikonova EIu Volchkov SA Kliashtornyĭ VG Tishchenko SV Kostareva OS Nevskaia NA Nikonov OS Gabdulkhakov AG Nikulin AD Davydova NL Strel'tsov VA Garber MB Nikonov SV 《Molekuliarnaia biologiia》2007,41(4):688-696
Nine mutant forms of ribosomal proteins L1 from the bacterium Thermus thermophilus and the archaeon Methanococcus jannaschii were obtained. Their crystal structures were determined and analyzed. Earlier determined structure of S179C TthL1 was also thoroughly analyzed. Five from ten mutant proteins reveal essential changes of spatial structure caused by surface point mutation. It proves that for correct studies of biological processes by site-directed mutagenesis it is necessary to determine or at least to model spatial structures of mutant proteins. Detailed comparison of mutant L1 structures with that of corresponding wild type proteins reveals that side chain of a mutated amino acid residue tries to locate like the side chain of the original residue in the wild type protein. This observation helps to model the mutant structures. 相似文献
20.
Tishchenko S Nikonova E Kljashtorny V Kostareva O Nevskaya N Piendl W Davydova N Streltsov V Garber M Nikonov S 《Nucleic acids research》2007,35(21):7389-7395
Ribosomal protein L1 has a dual function as a ribosomal protein binding 23S rRNA and as a translational repressor binding its mRNA. L1 is a two-domain protein with N- and C-termini located in domain I. Earlier it was shown that L1 interacts with the same targets on both rRNA and mRNA mainly through domain I. We have suggested that domain I is necessary and sufficient for specific RNA-binding by L1. To test this hypothesis, a truncation mutant of L1 from Thermus thermophilus, representing domain I, was constructed by deletion of the central part of the L1 sequence, which corresponds to domain II. It was shown that the isolated domain I forms stable complexes with specific fragments of both rRNA and mRNA. The crystal structure of the isolated domain I was determined and compared with the structure of this domain within the intact protein L1. This comparison revealed a close similarity of both structures. Our results confirm our suggestion that in protein L1 its domain I alone is sufficient for specific RNA binding, whereas domain II stabilizes the L1-rRNA complex. 相似文献