TY - JOUR A1 - Bousquet, J. A1 - Anto, J. M. A1 - Akdis, M. A1 - Auffray, C. A1 - Keil, T. A1 - Momas, I. A1 - Postma, D. S. A1 - Valenta, R. A1 - Wickman, M. A1 - Cambon-Thomsen, A. A1 - Haahtela, T. A1 - Lambrecht, B. N. A1 - Lodrup Carlsen, K. C. A1 - Koppelman, G. H. A1 - Sunyer, J. A1 - Zuberbier, T. A1 - Annesi-Maesano, I. A1 - Arno, A. A1 - Bindslev-Jensen, C. A1 - De Carlo, G. A1 - Forastiere, F. A1 - Heinrich, J. A1 - Kowalski, M. L. A1 - Maier, D. A1 - Melen, E. A1 - Palkonen, S. A1 - Smit, H. A. A1 - Standl, M. A1 - Wright, J. A1 - Asarnoj, A. A1 - Benet, M. A1 - Ballardini, N. A1 - Garcia-Aymerich, J. A1 - Gehring, U. A1 - Guerra, S. A1 - Hohman, C. A1 - Kull, I. A1 - Lupinek, C. A1 - Pinart, M. A1 - Skrindo, I. A1 - Westman, M. A1 - Smagghe, D. A1 - Akdis, C. A1 - Albang, R. A1 - Anastasova, V. A1 - Anderson, N. A1 - Bachert, C. A1 - Ballereau, S. A1 - Ballester, F. A1 - Basagana, X. A1 - Bedbrook, A. A1 - Bergstrom, A. A1 - von Berg, A. A1 - Brunekreef, B. A1 - Burte, E. A1 - Carlsen, K.H. A1 - Chatzi, L. A1 - Coquet, J.M. A1 - Curin, M. A1 - Demoly, P. A1 - Eller, E. A1 - Fantini, M.P. A1 - Gerhard, B. A1 - Hammad, H. A1 - von Hertzen, L. A1 - Hovland, V. A1 - Jacquemin, B. A1 - Just, J. A1 - Keller, T. A1 - Kerkhof, M. A1 - Kiss, R. A1 - Kogevinas, M. A1 - Koletzko, S. A1 - Lau, S. A1 - Lehmann, I. A1 - Lemonnier, N. A1 - McEachan, R. A1 - Makela, M. A1 - Mestres, J. A1 - Minina, E. A1 - Mowinckel, P. A1 - Nadif, R. A1 - Nawijn, M. A1 - Oddie, S. A1 - Pellet, J. A1 - Pin, I. A1 - Porta, D. A1 - Rancière, F. A1 - Rial-Sebbag, A. A1 - Schuijs, M.J. A1 - Siroux, V. A1 - Tischer, C.G. A1 - Torrent, M. A1 - Varraso, R. A1 - De Vocht, J. A1 - Wenger, K. A1 - Wieser, S. A1 - Xu, C. T1 - Paving the way of systems biology and precision medicine in allergic diseases: the MeDALL success story Mechanisms of the Development of ALLergy; EUFP7-CP-IP; Project No: 261357; 2010-2015 JF - Allergy N2 - MeDALL (Mechanisms of the Development of ALLergy; EU FP7-CP-IP; Project No: 261357; 2010-2015) has proposed an innovative approach to develop early indicators for the prediction, diagnosis, prevention and targets for therapy. MeDALL has linked epidemiological, clinical and basic research using a stepwise, large-scale and integrative approach: MeDALL data of precisely phenotyped children followed in 14 birth cohorts spread across Europe were combined with systems biology (omics, IgE measurement using microarrays) and environmental data. Multimorbidity in the same child is more common than expected by chance alone, suggesting that these diseases share causal mechanisms irrespective of IgE sensitization. IgE sensitization should be considered differently in monosensitized and polysensitized individuals. Allergic multimorbidities and IgE polysensitization are often associated with the persistence or severity of allergic diseases. Environmental exposures are relevant for the development of allergy-related diseases. To complement the population-based studies in children, MeDALL included mechanistic experimental animal studies and in vitro studies in humans. The integration of multimorbidities and polysensitization has resulted in a new classification framework of allergic diseases that could help to improve the understanding of genetic and epigenetic mechanisms of allergy as well as to better manage allergic diseases. Ethics and gender were considered. MeDALL has deployed translational activities within the EU agenda. KW - asthma KW - birth cohort KW - atopic-dermatitis KW - immune-responses KW - IgE KW - multimorbidity KW - polysensitization KW - rhinitis KW - chronic respiratory-diseases KW - childhood asthma KW - immunological reactivity KW - IgE sensitazion KW - immunoglobulin-e KW - integraed care Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-186858 VL - 71 IS - 11 ER - TY - JOUR A1 - Jiang, Fan A1 - Chen, Lin A1 - Belimov, Andrey A. A1 - Shaposhnikov, Alexander I. A1 - Gong, Fan A1 - Meng, Xu A1 - Hartung, Wolfram A1 - Jeschke, Dieter W. A1 - Davies, William J. A1 - Dodd, Ian C. T1 - Multiple impacts of the plant growth-promoting rhizobacterium Variovorax paradoxus 5C-2 on nutrient and ABA relations of Pisum sativum JF - Journal of Experimental Botany N2 - Resolving the physiological mechanisms by which rhizobacteria enhance plant growth is difficult, since many such bacteria contain multiple plant growth-promoting properties. To understand further how the 1-aminocyclopropane-1-carboxylate (ACC) deaminase (ACCd)-containing rhizobacterium Variovorax paradoxus 5C-2 affects plant growth, the flows and partitioning of mineral nutrients and abscisic acid (ABA) and ABA metabolism were studied in pea (Pisum sativum) plants following rhizosphere bacterial inoculation. Although root architecture was not affected, inoculation increased root and shoot biomass, and stomatal conductance, by 20, 15, and 24%, respectively, and increased N, P, K, Ca, and Mg uptake by 16, 81, 50, 46, and 58%, respectively. P deposition in inoculated plant roots was 4.9 times higher than that in uninoculated controls. Rhizobacterial inoculation increased root to shoot xylem flows and shoot to root phloem flows of K by 1.8- and 2.1-fold, respectively. In control plants, major sinks for K deposition were the roots and upper shoot (43% and 49% of total uptake, respectively), while rhizobacterial inoculation increased K distribution to the lower shoot at the expense of other compartments (xylem, phloem, and upper shoot). Despite being unable to metabolize ABA in vitro, V. paradoxus 5C-2 decreased root ABA concentrations and accumulation by 40–60%. Although inoculation decreased xylem ABA flows, phloem ABA flows increased. Whether bacterial ACCd attenuates root to shoot ABA signalling requires further investigation, since ABA is critical to maintain growth of droughted plants, and ACCd-containing organisms have been advocated as a means of minimizing growth inhibition of plants in drying soil. KW - Variovorax paradoxus KW - abscisic acid KW - ACC deaminase KW - hormone flow modelling KW - nutrient uptake KW - pea KW - plant–microbe interaction KW - rhizobacteria Y1 - 2012 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-127011 VL - 63 IS - 18 ER -