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41.
Patricia M. Glibert J. Icarus Allen Yuri Artioli Arthur Beusen Lex Bouwman James Harle Robert Holmes Jason Holt 《Global Change Biology》2014,20(12):3845-3858
Harmful algal blooms (HABs), those proliferations of algae that can cause fish kills, contaminate seafood with toxins, form unsightly scums, or detrimentally alter ecosystem function have been increasing in frequency, magnitude, and duration worldwide. Here, using a global modeling approach, we show, for three regions of the globe, the potential effects of nutrient loading and climate change for two HAB genera, pelagic Prorocentrum and Karenia, each with differing physiological characteristics for growth. The projections (end of century, 2090–2100) are based on climate change resulting from the A1B scenario of the Intergovernmental Panel on Climate Change Institut Pierre Simon Laplace Climate Model (IPCC, IPSL‐CM4), applied in a coupled oceanographic‐biogeochemical model, combined with a suite of assumed physiological ‘rules’ for genera‐specific bloom development. Based on these models, an expansion in area and/or number of months annually conducive to development of these HABs along the NW European Shelf‐Baltic Sea system and NE Asia was projected for both HAB genera, but no expansion (Prorocentrum spp.), or actual contraction in area and months conducive for blooms (Karenia spp.), was projected in the SE Asian domain. The implications of these projections, especially for Northern Europe, are shifts in vulnerability of coastal systems to HAB events, increased regional HAB impacts to aquaculture, increased risks to human health and ecosystems, and economic consequences of these events due to losses to fisheries and ecosystem services. 相似文献
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Ecology and management of mahogany (Swietenia macrophylla King) in the Chimanes Forest, Bed, Bolivia
R.E. GULLISON S.N. PANFIL JJ. STROUSE S.P. HUBBELL 《Botanical journal of the Linnean Society. Linnean Society of London》1996,122(1):9-34
Mahogany ( Swietenia macrophylla King) regenerates in areas of erosion on high terraces and in forest killed by flooding and deposition of alluvial sediments in the Chimanes Forest, Bolivia. These hydrological disturbances are patchy, and only one of five stands of mahogany that we inventoried was regenerating. Mahogany survives these disturbances significantly better than the common tree species. The long time between disturbances appears to favour late maturation. Mahogany trees allocate little photosynthates to reproduction until they are very large emergents, at least 80 cm in diameter. The episodic nature of the regeneration sites means that mahogany stands are composed of one or a few cohorts, which are vulnerable to overharvesting, particularly with the current use of a minimum cutting diameter to regulate harvest. The delayed onset of fecundity means that the small trees that escape harvest are not very fecund, resulting in minimal seed input to logged forest. Only 7–9% of the gaps created by logging contain natural regeneration after 20 + yr. A successful management plan for mahogany would entail a monocyclic harvest, with a rotation age of 100 + years, the estimated time that it takes for trees to achieve commercial size in natural forest. Since the number of seed trees that will be left is small, they should be concentrated in sites that are likely to be conducive to natural regeneration, such as near rivers and flood damaged forest. Seed production will be maximized for a given basal area (opportunity cost to loggers) if trees c. 110 cm dbh are selected as seed trees. The mahogany stocks in the Chimanes Forest are nearly exhausted, but the findings of this study could be used to help rebuild the mahogany populations, or to design management plans for the commercial species that have similar ecologies to mahogany. 相似文献
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Clare B. O’Donovan Marianne C. Walsh Hannah Forster Clara Woolhead Carlos Celis-Morales Rosalind Fallaize Anna L. Macready Cyril F. M. Marsaux Santiago Navas-Carretero Rodrigo San-Cristobal Silvia Kolossa Christina Mavrogianni Christina P. Lambrinou George Moschonis Magdalena Godlewska Agnieszka Surwillo Jildau Bouwman Keith Grimaldi Iwona Traczyk Christian A. Drevon Hannelore Daniel Yannis Manios J. Alfredo Martinez Wim H. M. Saris Julie A. Lovegrove John C. Mathers Michael J. Gibney Lorraine Brennan Eileen R. Gibney 《Genes & nutrition》2016,11(1):25
Background
It is hypothesised that individuals with knowledge of their genetic risk are more likely to make health-promoting dietary and lifestyle changes. The present study aims to test this hypothesis using data from the Food4Me study. This was a 6-month Internet-based randomised controlled trial conducted across seven centres in Europe where individuals received either general healthy eating advice or varying levels of personalised nutrition advice. Participants who received genotype-based personalised advice were informed whether they had the risk (CT/TT) (n?=?178) or non-risk (CC) (n?=?141) alleles of the methylenetetrahydrofolate reductase (MTHFR) gene in relation to cardiovascular health and the importance of a sufficient intake of folate. General linear model analysis was used to assess changes in folate intake between the MTHFR risk, MTHFR non-risk and control groups from baseline to month 6 of the intervention.Results
There were no differences between the groups for age, gender or BMI. However, there was a significant difference in country distribution between the groups (p?=?0.010). Baseline folate intakes were 412?±?172, 391?±?190 and 410?±?186 μg per 10 MJ for the risk, non-risk and control groups, respectively. There were no significant differences between the three groups in terms of changes in folate intakes from baseline to month 6. Similarly, there were no changes in reported intake of food groups high in folate.Conclusions
These results suggest that knowledge of MTHFR 677C?→?T genotype did not improve folate intake in participants with the risk variant compared with those with the non-risk variant.Trial registration
ClinicalTrials.gov NCT0153013946.
Physical activity attenuates the effect of the FTO genotype on obesity traits in European adults: The Food4Me study
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Carlos Celis‐Morales Cyril F.M. Marsaux Katherine M. Livingstone Santiago Navas‐Carretero Rodrigo San‐Cristobal Clare B. O'donovan Hannah Forster Clara Woolhead Rosalind Fallaize Anna L. Macready Silvia Kolossa Jacqueline Hallmann Lydia Tsirigoti Christina P. Lambrinou George Moschonis Magdalena Godlewska Agnieszka Surwio Keith Grimaldi Jildau Bouwman Yannis Manios Iwona Traczyk Christian A. Drevon Laurence D. Parnell Hannelore Daniel Eileen R. Gibney Lorraine Brennan Marianne C. Walsh Mike Gibney Julie A. Lovegrove J. Alfredo Martinez Wim H.M. Saris John C. Mathers 《Obesity (Silver Spring, Md.)》2016,24(4):962-969
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Heterogeneous binding of high mobility group chromosomal proteins to nuclei 总被引:7,自引:5,他引:2
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A dramatic difference is observed in the intracellular distribution of the high mobility group (HMG) proteins when chicken embryo fibroblasts are fractionated into nucleus and cytoplasm by either mass enucleation of cytochalasin-B-treated cells or by differential centrifugation of mechanically disrupted cells. Nuclei (karyoplasts) obtained by cytochalasin B treatment of cells contain more than 90 percent of the HMG 1, while enucleated cytoplasts contain the remainder. A similar distribution between karyoplasts and cytoplasts is observed for the H1 histones and the nucleosomal core histones as anticipated. The presence of these proteins, in low amounts, in the cytoplast preparation can be accounted for by the small percentage of unenucleated cells present. In contrast, the nuclei isolated from mechanically disrupted cells contain only 30-40 percent of the total HMGs 1 and 2, the remainder being recovered in the cytosol fraction. No histone is observed in the cytosol fraction. Unike the higher molecular weight HMGs, most of the HMGs 14 and 17 sediment with the nuclei after cell lysis by mechanical disruption. The distribution of HMGs is unaffected by incubating cells with cytochalasin B and mechanically fractionating rather than enucleating them. Therefore, the dramatic difference in HMG 1 distribution observed using the two fractionation techniques cannot be explained by a cytochalasin-B-induced redistribution. On reextraction and sedimentation of isolated nuclei obtained by mechanical cell disruption, only 8 percent of the HMG 1 is released to the supernate. Thus, the majority of the HMG 1 originally isolated with these nuclei, representing 35 percent of the total HMG 1, is stably bound, as is all the HMGs 14 and 17. The remaining 65 percent of the HMGs 1 and 2 is unstably bound and leaks to the cytosol fraction under the conditions of mechanical disruption. It is suggested that the unstably bound HMGs form a protein pool capable of equilibrating between cytoplasm and stably bound HMGs. 相似文献
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