2,220 research outputs found

    Les marchés ruraux du travail : vers une spécialisation fonctionnelle des espaces ?

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    Les marchĂ©s du travail ruraux prĂ©sentent certaines spĂ©cificitĂ©s. En raison de leur faible taille, les offres et les demandes d'emploi y sont moins nombreuses et donc moins diversifiĂ©es, d'oĂč des difficultĂ©s d'appariement des unes aux autres plus fortes que sur les marchĂ©s du travail urbains. De plus, les relations d'emploi sont plus souvent " encastrĂ©es " dans d'autres relations sociales Ă  la campagne qu'en ville. Ces phĂ©nomĂšnes contribuent Ă  rendre les emplois plus stables et les salaires plus faibles dans les zones rurales et Ă  engendrer une spĂ©cialisation fonctionnelle des espaces.

    Why Family Farms Are Increasingly Using Wage Labour?

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    In many developed countries, the share of wage employment out of the total agricultural labour force has been increasing for the last ten years. Using data from French agricultural censuses, we present an analysis of the factors that influence households' decisions about whether to work on the family farm or to work outside, and about the use of wage labour. Studying how the effects of these factors have varied between 1988 and 2000 enables us to highlight the different mechanisms that have led to an increase in permanent wage employment during that period. In particular, we show that family labour and permanent wage labour have become nearly equivalent in 2000, whereas that was not the case in 1988.agricultural employees, farms, family labour, Labor and Human Capital, C34, C35, J22, J43,

    Thermophilic bacterial communities in hot composts as revealed by most probable number counts and molecular (16S rDNA) methods

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    Thermogenic composts are known to host a variety of thermophilic micro-organisms that were recently investigated by cultural means and identified as Thermus thermophilus, Bacillus spp., and Hydrogenobacter spp. In this paper, we present a classical, cultural enumeration of thermophilic populations on the one hand, and a molecular investigation of the bacterial community by restriction enzyme analyses of a clone library of bacterial 16S rRNA genes on the other hand. Bacterial diversity, revealed by the clone analyses of four samples, was shown to undergo a dramatic change between the young (13-18-day) and the old (39-41-day) samples, possibly linked to the general decrease in temperature and the physicochemical evolution of organic matter during the composting process. Among the 200 clones investigated, 69 clones could be identified as Thermus thermophilus and thermophilic Bacillus spp. These results proved both taxa to be among the dominant bacterial populations at the highest temperatures reached by thermogenic compost

    Circulating virus load determines the size of bottlenecks in viral populations progressing within a host

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    For any organism, population size, and fluctuations thereof, are of primary importance in determining the forces driving its evolution. This is particularly true for viruses—rapidly evolving entities that form populations with transient and explosive expansions alternating with phases of migration, resulting in strong population bottlenecks and associated founder effects that increase genetic drift. A typical illustration of this pattern is the progression of viral disease within a eukaryotic host, where such demographic fluctuations are a key factor in the emergence of new variants with altered virulence. Viruses initiate replication in one or only a few infection foci, then move through the vasculature to seed secondary infection sites and so invade distant organs and tissues. Founder effects during this within-host colonization might depend on the concentration of infectious units accumulating and circulating in the vasculature, as this represents the infection dose reaching new organs or “territories”. Surprisingly, whether or not the easily measurable circulating (plasma) virus load directly drives the size of population bottlenecks during host colonization has not been documented in animal viruses, while in plants the virus load within the sap has never been estimated. Here, we address this important question by monitoring both the virus concentration flowing in host plant sap, and the number of viral genomes founding the population in each successive new leaf. Our results clearly indicate that the concentration of circulating viruses directly determines the size of bottlenecks, which hence controls founder effects and effective population size during disease progression within a host

    Experimental phase-space-based optical amplification of scar modes

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    Waves billiard which are chaotic in the geometrical limit are known to support non-generic spatially localized modes called scar modes. The interaction of the scar modes with gain has been recently investigated in optics in micro-cavity lasers and vertically-cavity surface-emitting lasers. Exploiting the localization properties of scar modes in their wave analogous phase space representation, we report experimental results of scar modes selection by gain in a doped D-shaped optical fiber
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