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Brilli, L.; Ferrise, R.; Dibari, C.; Bindi, M.; Bellocchi, G. |
![find record details (via OpenURL) openurl](img/xref.gif)
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Title |
Needs on model improvement |
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Report |
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Year |
2017 |
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FACCE MACSUR Reports |
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10 |
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XC1.1-D |
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The need to answer new scientific questions can be satisfied by an increased knowledge of physiological mechanisms which, in turn, can be used for improving the accuracy of simulations of process-based models. In this context, this report highlights areas that need to be further improved to facilitate the operational use of simulation models. It describes missing approaches within simulation models which, if implemented, would likely improve the representation of the dynamics of processes underlying different compartments of crop and grassland systems (e.g. plant growth and development, yield production, GHG emissions), as well as of the livestock production systems. The following rationale has been used in the organization of this report. We first briefly introduced the need to improve the reliability of existing models. Then, we indicated climate change and its influence on the global carbon balance as the main issue to be addressed by existing crop and grassland (section 2), and livestock (section 3) models. In section 2, among the major aspects that if implemented may reduce the uncertainty inherent to model outputs, we suggested: i) quantifying the effects of climate extremes on biological systems; ii) modelling of multi-species sward; iii) coupling of pest and disease sub-models; iv) improvement of the carry-over effect. In section 3, as the most important aspects to consider in livestock models we indicated: i) impacts and dynamics of pathogens and disease; ii) heat stress effects on livestock; iii) effects on grassland productivity and nutritional values; iv) improvement of GHG emissions dynamics. In Section 4, remarks are made concerning the need to implement the suggested aspects into the existing models. |
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MA @ admin @ |
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4938 |
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Brylińska, M.; Sobkowiak, S.; Stefańczyk, E.; Śliwka, J. |
![goto web page (via DOI) doi](img/doi.gif)
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Title |
Potato cultivation system affects population structure of Phytophthora infestans |
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Journal Article |
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Year |
2016 |
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Fungal Ecology |
Abbreviated Journal |
Fungal Ecology |
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20 |
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132-143 |
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SSR; Population genetic structure; Late blight; Potato; late blight resistance; mating-type; microsatellite markers; phenotypic diversity; sexual reproduction; genotypic diversity; nordic countries; severe outbreaks; sarpo mira; pathogenicity |
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Phytophthora infestans is one of the most destructive potato pathogens. Many factors influence the population structure of P. infestans, including migration, climate and type of potato cultivation. Here, we analyse 365 P. infestans isolates collected from three regions of Poland over three years. We determined mating type, mitochondrial haplotype, resistance to metalaxyl, virulence and polymorphism at 14 simple sequence repeat (SSR) loci. Analysis of SSR markers showed high genetic diversity associated with this population. Model-based structure analysis grouped 299 unique genotypes into four main clusters. The P. infestans isolates collected from the Mlochow region, which has the most intensive level of potato cultivation, formed a distinct cluster, indicating a strong effect of the cultivation system on pathogen population structure. Three clusters contained isolates with frequent presence of three alleles at one locus, which may affect their capacity for sexual reproduction and preserve groups of fit genotypes that propagate asexually. (C) 2016 Elsevier Ltd and The British Mycological Society. |
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1754-5048 |
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CropM, ft_macsur |
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MA @ admin @ |
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4720 |
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Bulak, P.; Walkiewicz, A.; Brzezińska, M. |
![goto web page (via DOI) doi](img/doi.gif)
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Title |
Plant growth regulators-assisted phytoextraction |
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Journal Article |
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2014 |
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Biologia Plantarum |
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Biol. Plant. |
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58 |
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1 |
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1-8 |
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auxins; cytokinins; gibberelins; heavy metals; phytoremediation; pollutants; Zea-mays l.; heavy-metals; Pteris-vittata; organic-acids; molecular-mechanisms; contaminated soils; Sedum-alfredii; lead uptake; hyperaccumulation; phytoremediation |
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Plant growth regulators (PRG)-assisted phytoremediation is a technique that could enhance the yield of heavy metal accumulation in plant tissues. So far, a small number of experiments have helped identify three groups of plant hormones that may be useful for this purpose: auxins, cytokinins, and gibberellins. Studies have shown that these hormones positively affect the degree of accumulation of metallic impurities and improve the growth and stress resistance of plants. This review summarizes the present knowledge about PGRs’ impact on phytoextraction yield. |
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0006-3134 |
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Review |
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CropM, ft_macsur |
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MA @ admin @ |
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4515 |
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Calanca, P. |
![goto web page (via DOI) doi](img/doi.gif)
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Title |
Modelling the impacts of seasonal drought on herbage growth under climate change |
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Journal Article |
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2016 |
Publication |
Advances in Animal Biosciences |
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Advances in Animal Biosciences |
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7 |
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03 |
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231-232 |
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2040-4700 |
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LiveM, ft_macsur |
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MA @ admin @ |
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4874 |
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Author ![sorted by Author field, ascending order (up)](img/sort_asc.gif) |
Calanca, P. |
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Title |
Modelling the impacts of seasonal drought on herbage growth under climate change |
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2016 |
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FACCE MACSUR Reports |
Abbreviated Journal |
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8 |
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SP8-3 |
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LiveM2016: International livestock modelling conference – Modelling grassland-livestock systems under climate change |
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MA @ admin @ |
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4837 |
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