TY - JOUR A1 - Guerrero-Ramirez, Nathaly Rokssana A1 - Craven, Dylan A1 - Reich, Peter B. A1 - Ewel, John J. A1 - Isbell, Forest A1 - Koricheva, Julia A1 - Parrotta, John A. A1 - Auge, Harald A1 - Erickson, Heather E. A1 - Forrester, David I. A1 - Hector, Andy A1 - Joshi, Jasmin Radha A1 - Montagnini, Florencia A1 - Palmborg, Cecilia A1 - Piotto, Daniel A1 - Potvin, Catherine A1 - Roscher, Christiane A1 - van Ruijven, Jasper A1 - Tilman, David A1 - Wilsey, Brian A1 - Eisenhauer, Nico T1 - Diversity-dependent temporal divergence of ecosystem functioning in experimental ecosystems JF - Nature ecology & evolution N2 - The effects of biodiversity on ecosystem functioning generally increase over time, but the underlying processes remain unclear. Using 26 long-term grassland and forest experimental ecosystems, we demonstrate that biodiversity-ecosystem functioning relationships strengthen mainly by greater increases in functioning in high-diversity communities in grasslands and forests. In grasslands, biodiversity effects also strengthen due to decreases in functioning in low-diversity communities. Contrasting trends across grasslands are associated with differences in soil characteristics. Y1 - 2017 U6 - https://doi.org/10.1038/s41559-017-0325-1 SN - 2397-334X VL - 1 IS - 11 SP - 1639 EP - 1642 PB - Nature Publ. Group CY - London ER - TY - JOUR A1 - Rothwell, Joseph A. A1 - Murphy, Neil A1 - Aleksandrova, Krasimira A1 - Schulze, Matthias Bernd A1 - Bešević, Jelena A1 - Kliemann, Nathalie A1 - Jenab, Mazda A1 - Ferrari, Pietro A1 - Achaintre, David A1 - Gicquiau, Audrey A1 - Vozar, Béatrice A1 - Scalbert, Augustin A1 - Huybrechts, Inge A1 - Freisling, Heinz A1 - Prehn, Cornelia A1 - Adamski, Jerzy A1 - Cross, Amanda J. A1 - Pala, Valeria Maria A1 - Boutron-Ruault, Marie-Christine A1 - Dahm, Christina C. A1 - Overvad, Kim A1 - Gram, Inger Torhild A1 - Sandanger, Torkjel M. A1 - Skeie, Guri A1 - Jakszyn, Paula A1 - Tsilidis, Kostas K. A1 - Hughes, David J. A1 - van Guelpen, Bethany A1 - Bodén, Stina A1 - Sánchez, Maria-José A1 - Schmidt, Julie A. A1 - Katzke, Verena A1 - Kühn, Tilman A1 - Colorado-Yohar, Sandra A1 - Tumino, Rosario A1 - Bueno-de-Mesquita, Bas A1 - Vineis, Paolo A1 - Masala, Giovanna A1 - Panico, Salvatore A1 - Eriksen, Anne Kirstine A1 - Tjønneland, Anne A1 - Aune, Dagfinn A1 - Weiderpass, Elisabete A1 - Severi, Gianluca A1 - Chajès, Véronique A1 - Gunter, Marc J. T1 - Metabolic signatures of healthy lifestyle patterns and colorectal cancer risk in a European cohort JF - Clinical gastroenterology and hepatology N2 - BACKGROUND & AIMS: Colorectal cancer risk can be lowered by adherence to the World Cancer Research Fund/American Institute for Cancer Research (WCRF/AICR) guidelines. We derived metabolic signatures of adherence to these guidelines and tested their associations with colorectal cancer risk in the European Prospective Investigation into Cancer and Nutrition cohort. METHODS: Scores reflecting adherence to the WCRF/AICR recommendations (scale, 1-5) were calculated from participant data on weight maintenance, physical activity, diet, and alcohol among a discovery set of 5738 cancer-free European Prospective Investigation into Cancer and Nutrition participants with metabolomics data. Partial least-squares regression was used to derive fatty acid and endogenous metabolite signatures of the WCRF/AICR score in this group. In an independent set of 1608 colorectal cancer cases and matched controls, odds ratios (ORs) and 95% CIs were calculated for colorectal cancer risk per unit increase in WCRF/AICR score and per the corresponding change in metabolic signatures using multivariable conditional logistic regression. RESULTS: Higher WCRF/AICR scores were characterized by metabolic signatures of increased odd-chain fatty acids, serine, glycine, and specific phosphatidylcholines. Signatures were inversely associated more strongly with colorectal cancer risk (fatty acids: OR, 0.51 per unit increase; 95% CI, 0.29-0.90; endogenous metabolites: OR, 0.62 per unit change; 95% CI, 0.50-0.78) than the WCRF/AICR score (OR, 0.93 per unit change; 95% CI, 0.86-1.00) overall. Signature associations were stronger in male compared with female participants. CONCLUSIONS: Metabolite profiles reflecting adherence to WCRF/AICR guidelines and additional lifestyle or biological risk factors were associated with colorectal cancer. Measuring a specific panel of metabolites representative of a healthy or unhealthy lifestyle may identify strata of the population at higher risk of colorectal cancer. KW - colorectal neoplasm KW - risk factors KW - World Cancer Research Fund/American Institute for Cancer Research Recommendations KW - targeted metabolomics Y1 - 2020 U6 - https://doi.org/10.1016/j.cgh.2020.11.045 SN - 1542-3565 SN - 1542-7714 VL - 20 SP - E1061 EP - E1082 PB - Elsevier CY - New York, NY ER - TY - JOUR A1 - Venail, Patrick A1 - Gross, Kevin A1 - Oakley, Todd H. A1 - Narwani, Anita A1 - Allan, Eric A1 - Flombaum, Pedro A1 - Isbell, Forest A1 - Joshi, Jasmin Radha A1 - Reich, Peter B. A1 - Tilman, David A1 - van Ruijven, Jasper A1 - Cardinale, Bradley J. T1 - Species richness, but not phylogenetic diversity, influences community biomass production and temporal stability in a re-examination of 16 grassland biodiversity studies JF - Functional ecology : an official journal of the British Ecological Society N2 - Hundreds of experiments have now manipulated species richness (SR) of various groups of organisms and examined how this aspect of biological diversity influences ecosystem functioning. Ecologists have recently expanded this field to look at whether phylogenetic diversity (PD) among species, often quantified as the sum of branch lengths on a molecular phylogeny leading to all species in a community, also predicts ecological function. Some have hypothesized that phylogenetic divergence should be a superior predictor of ecological function than SR because evolutionary relatedness represents the degree of ecological and functional differentiation among species. But studies to date have provided mixed support for this hypothesis. Here, we reanalyse data from 16 experiments that have manipulated plant SR in grassland ecosystems and examined the impact on above-ground biomass production over multiple time points. Using a new molecular phylogeny of the plant species used in these experiments, we quantified how the PD of plants impacts average community biomass production as well as the stability of community biomass production through time. Using four complementary analyses, we show that, after statistically controlling for variation in SR, PD (the sum of branches in a molecular phylogenetic tree connecting all species in a community) is neither related to mean community biomass nor to the temporal stability of biomass. These results run counter to past claims. However, after controlling for SR, PD was positively related to variation in community biomass over time due to an increase in the variances of individual species, but this relationship was not strong enough to influence community stability. In contrast to the non-significant relationships between PD, biomass and stability, our analyses show that SR per se tends to increase the mean biomass production of plant communities, after controlling for PD. The relationship between SR and temporal variation in community biomass was either positive, non-significant or negative depending on which analysis was used. However, the increases in community biomass with SR, independently of PD, always led to increased stability. These results suggest that PD is no better as a predictor of ecosystem functioning than SR.Synthesis. Our study on grasslands offers a cautionary tale when trying to relate PD to ecosystem functioning suggesting that there may be ecologically important trait and functional variation among species that is not explained by phylogenetic relatedness. Our results fail to support the hypothesis that the conservation of evolutionarily distinct species would be more effective than the conservation of SR as a way to maintain productive and stable communities under changing environmental conditions. KW - biodiversity KW - community biomass KW - data synthesis KW - ecosystem functioning KW - grasslands KW - phylogenetic diversity KW - relatedness KW - stability Y1 - 2015 U6 - https://doi.org/10.1111/1365-2435.12432 SN - 0269-8463 SN - 1365-2435 VL - 29 IS - 5 SP - 615 EP - 626 PB - Wiley-Blackwell CY - Hoboken ER - TY - BOOK A1 - Amend-Traut, Anja A1 - Bayerle, Katrin A1 - Duncker, Arne Dirk A1 - Dusil, Stephan A1 - Forster, Wolfgang A1 - Frassek, Ralf A1 - Hermann, Hans-Georg A1 - Koch, Elisabeth A1 - Lettmaier, Saskia A1 - Löhning, Martin A1 - Ludyga, Hannes A1 - Maetschke, Matthias A1 - Mayenburg, David von A1 - Meder, Stephan A1 - Repgen, Tilman A1 - Roth, Andreas A1 - Saar, Stefan Christoph A1 - Schlinker, Steffen A1 - Schmoeckel, Matthias A1 - Schumann, Eva A1 - Thier, Andreas T1 - Familienrecht §§ 1297-1921 T3 - Historisch-kritischer Kommentar zum BGB ; 4 Y1 - 2018 SN - 978-3-16-156399-7 PB - Mohr Siebeck CY - Tübingen ER - TY - JOUR A1 - Schröter, David A1 - Neugart, Susanne A1 - Schreiner, Monika A1 - Grune, Tilman A1 - Rohn, Sascha A1 - Ott, Christiane T1 - Amaranth’s 2-Caffeoylisocitric Acid—An Anti-Inflammatory Caffeic Acid Derivative That Impairs NF-κB Signaling in LPS-Challenged RAW 264.7 Macrophages JF - Nutrients N2 - For centuries, Amaranthus sp. were used as food, ornamentals, and medication. Molecular mechanisms, explaining the health beneficial properties of amaranth, are not yet understood, but have been attributed to secondary metabolites, such as phenolic compounds. One of the most abundant phenolic compounds in amaranth leaves is 2-caffeoylisocitric acid (C-IA) and regarding food occurrence, C-IA is exclusively found in various amaranth species. In the present study, the anti-inflammatory activity of C-IA, chlorogenic acid, and caffeic acid in LPS-challenged macrophages (RAW 264.7) has been investigated and cellular contents of the caffeic acid derivatives (CADs) were quantified in the cells and media. The CADs were quantified in the cell lysates in nanomolar concentrations, indicating a cellular uptake. Treatment of LPS-challenged RAW 264.7 cells with 10 µM of CADs counteracted the LPS effects and led to significantly lower mRNA and protein levels of inducible nitric oxide synthase, tumor necrosis factor alpha, and interleukin 6, by directly decreasing the translocation of the nuclear factor κB/Rel-like containing protein 65 into the nucleus. This work provides new insights into the molecular mechanisms that attribute to amaranth’s anti-inflammatory properties and highlights C-IA’s potential as a health-beneficial compound for future research. KW - inflammation KW - caffeic acid derivatives KW - RAW 264 KW - 7 macrophages KW - NF-kappa B KW - amaranth Y1 - 2019 U6 - https://doi.org/10.3390/nu11030571 SN - 2072-6643 VL - 11 IS - 3 PB - MDPI CY - Basel ER -