128 research outputs found

    Pratiques agricoles et propriétés agro-écologiques des prairies dans un processus d’intensification écologique : le cas de l’élevage bovin dans le Vercors

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    National audienceL'élevage bovin pour la production laitière est la composante agricole majeure sur le territoire des Quatre Montagnes dans le massif du Vercors. Sur ce territoire, un enjeu fort soulevé par une grande partie des agriculteurs concerne la question de l'autonomie fourragère. Cet aspect de la production est d'autant plus central qu'il est fortement dépendant des caractéristiques des prairies qui permettent d'assurer la production de fourrage en dépit d'aléas de plus en plus contraignants (sécheresses, dégâts de campagnols…). Comprendre comment maintenir un niveau de production suffisant en s'appuyant sur les propriétés écosystémiques des prairies relève du contexte de l'intensification écologique en abordant les relations entre l'organisation des systèmes d'élevage (usages à l'échelle des parcelles, diversité des types de parcelles au sein des exploitations, distribution au sein du paysage) et les valeurs d'usage et services écosystémiques fournis par les prairies. Au sein du projet multi-sites ANR-SYSTERRA MOUVE (Les interactions Elevage et Territoire dans la mise en mouvement de l’intensification écologique), le territoire des Quatre Montagnes constitue l'un des terrains d'approfondissement pour analyser comment l'évolution des pratiques dans le sens de l'intensification écologique peut permettre d'augmenter le niveau des services écologiques et d'améliorer les capacités d'adaptation des élevages. En nous appuyant sur une typologie préétablie des prairies, basée le type d'usage (fauche, pâturage) et la composition simplifiée de la végétation nous avons mesuré un large panel de propriétés écosystémiques sur un échantillon de 50 parcelles représentant la diversité des types d'usage sur le territoire. Les propriétés mesurée couvrent notamment la structure spécifique (diversité, hétérogénéité) et fonctionnelle des communautés (traits foliaires, structuraux, phénologiques), les caractéristiques agronomiques (teneur en N, C, P…) et écologique (biomasse et diversité microbienne) du sol et du fourrage (production, qualité), autant de proxys pour les grands types de services reconnus : (i) services intrants, (ii) services de production fourragère et (iii) services en lien avec la valeur écologique des prairies. Les premiers résultats révèlent le rôle prépondérant de deux facteurs liés aux usages pour les propriétés agro-écologiques des prairies : la date de première fauche ou pâturage et le caractère temporaire ou permanent des prairies (date du dernier retournement). Les prairies temporaires offrent un bon niveau de services intrant (fertilité, matière organique) et de production et qualité fourragère mais une faible valeur écologique (faible diversité). Cette distinction sur la base des propriétés agro-écologiques est d'autant plus intéressante que les entretiens auprès des éleveurs ont souligné l'importance de la place des prairies temporaires comme une des clés pour l'autonomie fourragère. Ces prairies productives étant également les plus sensibles aux aléas et offrant une moindre souplesse d'utilisation. A terme, notre objectif est d'identifier les compromis, synergies et antagonismes entre les différents types de services rendus (agronomiques, écologiques) en fonction de différents scénarios d'intensification écologique à l'échelle du territoire

    Biodiversity assessment following a naturality gradient of riverbank protection structures in French prealps rivers

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    Erosion control of riverbank is frequently necessary to protect human investments situated along rivers. The technique chosen for such erosion control construction may have major impacts on biodiversity and on the functioning of river corridors. Even if there is agreement, that biodiversity should be one criterion for choosing embankments techniques little is known about whether such techniques can accommodate biodiversity. We aimed to determine coleopteran and plant taxonomic diversities along a naturality gradient of riverbank protection systems, ranking from entirely civil engineering structures, through combined constructions (mixing civil engineering and bioengineering), to purely bioengineering structures. Fifteen sites (five sites of each technique) were sampled in the Rhône-Alpes region (S.E. France). On each site, vegetation was sampled along three transects from the bottom to the top of the riverbank and flying beetles by trapping. In total, we recorded 148 plant species and 78 beetle genera. We found significantly lower animal and plant diversities within civil engineering constructions than in the other two techniques. Diversities of both techniques tended to be higher, although not significantly, in combined techniques than in purely bioengineering ones. Furthermore, civil engineering structures were more subject to invasion by exotic plant species than the two other techniques. These results quantify and highlight the interest of bioengineering techniques compared to civil engineering in enhancing biodiversity and limiting invasive species techniques

    Compared to conventional, ecological intensive management promotes beneficial proteolytic soil microbial communities for agro-ecosystem functioning under climate change-induced rain regimes

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    Projected climate change and rainfall variability will affect soil microbial communities, biogeochemical cycling and agriculture. Nitrogen (N) is the most limiting nutrient in agroecosystems and its cycling and availability is highly dependent on microbial driven processes. In agroecosystems, hydrolysis of organic nitrogen (N) is an important step in controlling soil N availability. We analyzed the effect of management (ecological intensive vs. conventional intensive) on N-cycling processes and involved microbial communities under climate change-induced rain regimes. Terrestrial model ecosystems originating from agroecosystems across Europe were subjected to four different rain regimes for 263 days. Using structural equation modelling we identified direct impacts of rain regimes on N-cycling processes, whereas N-related microbial communities were more resistant. In addition to rain regimes, management indirectly affected N-cycling processes via modifications of N-related microbial community composition. Ecological intensive management promoted a beneficial N-related microbial community composition involved in N-cycling processes under climate change-induced rain regimes. Exploratory analyses identified phosphorus-associated litter properties as possible drivers for the observed management effects on N-related microbial community composition. This work provides novel insights into mechanisms controlling agro-ecosystem functioning under climate change

    Biological flora of Central europe: Baldellia ranunculoides (Alismataceae)

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    Baldellia ranunculoides (L.) Parl. (Alismataceae) is a taxonomically problematic aquatic plant with an historically ill-defined distribution and global conservation status. This paper finds morphological, ecological and molecular evidence for two distinct taxa, probably best described as subspecies: (1) B. ranunculoides subsp. ranunculoides and (2) B. ranunculoides subsp. repens and provides detailed distribution data on their overlapping range, in different habitats, across the cool, high rainfall areas of western Europe and west Mediterranean. The two subspecies are amongst the relatively large number of threatened European and north Africa aquatic plants and this paper provides a systematic review of their relative conservation pressures and management needs, with particular emphasis on the status of both taxa in central Europe. Other observations indicate probable evolutionary relationships within B. ranunculoides s.l. and its associated taxa and the review points out where these and other research topics could potentially be pursued

    Change in dominance determines herbivore effects on plant biodiversity

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    Herbivores alter plant biodiversity (species richness) in many of the world’s ecosystems, but the magnitude and the direction of herbivore effects on biodiversity vary widely within and among ecosystems. One current theory predicts that herbivores enhance plant biodiversity at high productivity but have the opposite effect at low productivity. Yet, empirical support for the importance of site productivity as a mediator of these herbivore impacts is equivocal. Here, we synthesize data from 252 large-herbivore exclusion studies, spanning a 20-fold range in site productivity, to test an alternative hypothesis—that herbivore-induced changes in the competitive environment determine the response of plant biodiversity to herbivory irrespective of productivity. Under this hypothesis, when herbivores reduce the abundance (biomass, cover) of dominant species (for example, because the dominant plant is palatable), additional resources become available to support new species, thereby increasing biodiversity. By contrast, if herbivores promote high dominance by increasing the abundance of herbivory-resistant, unpalatable species, then resource availability for other species decreases reducing biodiversity. We show that herbivore-induced change in dominance, independent of site productivity or precipitation (a proxy for productivity), is the best predictor of herbivore effects on biodiversity in grassland and savannah sites. Given that most herbaceous ecosystems are dominated by one or a few species, altering the competitive environment via herbivores or by other means may be an effective strategy for conserving biodiversity in grasslands and savannahs globally

    Phytodiversity of temperate permanent grasslands: ecosystem services for agriculture and livestock management for diversity conservation

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    Pratiques agricoles, biodiversité et production en prairies de montagne : vers une intensification écologique ?

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    Conférence association Gentiana Museum d'Histoire Naturelle de Grenobl

    Les prairies d’altitude face au changement climatique

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