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Rolf Frischknecht Christian Bauer Christof Bucher Linda Ager-Wick Ellingsen Lukas Gutzwiller Britta Heimbach René Itten Xun Liao Evangelos Panos Stephan Pfister Tobias Schmidt Valentin Stahel Philippe Stolz Peter Toggweiler Karin Treyer Jacques Villeneuve Andreas Wade Marcel Weil 《The International Journal of Life Cycle Assessment》2018,23(8):1716-1721
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Ioannis S. Minas Georgia Tanou Afroditi Krokida Evangelos Karagiannis Maya Belghazi Miltiadis Vasilakakis Kalliope K. Papadopoulou Athanassios Molassiotis 《BMC plant biology》2018,18(1):358
Background
Understanding the mechanisms involved in climacteric fruit ripening is key to improve fruit harvest quality and postharvest performance. Kiwifruit (Actinidia deliciosa cv. ‘Hayward’) ripening involves a series of metabolic changes regulated by ethylene. Although 1-methylcyclopropene (1-MCP, inhibitor of ethylene action) or ozone (O3) exposure suppresses ethylene-related kiwifruit ripening, how these molecules interact during ripening is unknown.Results
Harvested ‘Hayward’ kiwifruits were treated with 1-MCP and exposed to ethylene-free cold storage (0?°C, RH 95%) with ambient atmosphere (control) or atmosphere enriched with O3 (0.3?μL?L??1) for up to 6?months. Their subsequent ripening performance at 20?°C (90% RH) was characterized. Treatment with either 1-MCP or O3 inhibited endogenous ethylene biosynthesis and delayed fruit ripening at 20?°C. 1-MCP and O3 in combination severely inhibited kiwifruit ripening, significantly extending fruit storage potential. To characterize ethylene sensitivity of kiwifruit following 1-MCP and O3 treatments, fruit were exposed to exogenous ethylene (100?μL?L??1, 24?h) upon transfer to 20?°C following 4 and 6?months of cold storage. Exogenous ethylene treatment restored ethylene biosynthesis in fruit previously exposed in an O3-enriched atmosphere. Comparative proteomics analysis showed separate kiwifruit ripening responses, unraveled common 1-MCP- and O3-dependent metabolic pathways and identified specific proteins associated with these different ripening behaviors. Protein components that were differentially expressed following exogenous ethylene exposure after 1-MCP or O3 treatment were identified and their protein-protein interaction networks were determined. The expression of several kiwifruit ripening related genes, such as 1-aminocyclopropane-1-carboxylic acid oxidase (ACO1), ethylene receptor (ETR1), lipoxygenase (LOX1), geranylgeranyl diphosphate synthase (GGP1), and expansin (EXP2), was strongly affected by O3, 1-MCP, their combination, and exogenously applied ethylene.Conclusions
Our findings suggest that the combination of 1-MCP and O3 functions as a robust repressive modulator of kiwifruit ripening and provide new insight into the metabolic events underlying ethylene-induced and ethylene-independent ripening outcomes.65.
Xinshou Ouyang Sheng-Na Han Ji-Yuan Zhang Evangelos Dioletis Balazs Tamas Nemeth Pal Pacher Dechun Feng Ramon Bataller Joaquin Cabezas Peter Stärkel Joan Caballeria Rebecca LePine Pongratz Shi-Ying Cai Bernd Schnabl Rafaz Hoque Yonglin Chen Wei-hong Yang Irma Garcia-Martinez Wajahat Zafar Mehal 《Cell metabolism》2018,27(2):339-350.e3
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Unravelling the nocturnal appearance of bogue Boops boops shoals in the anthropogenically modified shallow littoral 下载免费PDF全文
N. Mavraki M. Georgiadis C. Koutsikopoulos E. Tzanatos 《Journal of fish biology》2016,88(5):2060-2066
In the present study the role of the nocturnal migration of bogue Boops boops shoals to anthropogenically modified shallow littoral locations was examined, evaluating four alternative hypotheses: (1) feeding, (2) reproduction, (3) attraction of B. boops to artificial light and (4) concealment in the darkness related to predation avoidance. All hypotheses apart from predation avoidance were rejected, as B. boops tended to concentrate in shaded locations of wider illuminated areas, a finding not only important concerning fish behaviour, but also with significant management implications. 相似文献
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Jessica K. Calland Ben Pascoe Sion C. Bayliss Evangelos Mourkas Elvire Berthenet Harry A. Thorpe Matthew D. Hitchings Edward J. Feil Jukka Corander Martin J. Blaser Daniel Falush Samuel K. Sheppard 《PLoS genetics》2021,17(9)
Measuring molecular evolution in bacteria typically requires estimation of the rate at which nucleotide changes accumulate in strains sampled at different times that share a common ancestor. This approach has been useful for dating ecological and evolutionary events that coincide with the emergence of important lineages, such as outbreak strains and obligate human pathogens. However, in multi-host (niche) transmission scenarios, where the pathogen is essentially an opportunistic environmental organism, sampling is often sporadic and rarely reflects the overall population, particularly when concentrated on clinical isolates. This means that approaches that assume recent common ancestry are not applicable. Here we present a new approach to estimate the molecular clock rate in Campylobacter that draws on the popular probability conundrum known as the ‘birthday problem’. Using large genomic datasets and comparative genomic approaches, we use isolate pairs that share recent common ancestry to estimate the rate of nucleotide change for the population. Identifying synonymous and non-synonymous nucleotide changes, both within and outside of recombined regions of the genome, we quantify clock-like diversification to estimate synonymous rates of nucleotide change for the common pathogenic bacteria Campylobacter coli (2.4 x 10−6 s/s/y) and Campylobacter jejuni (3.4 x 10−6 s/s/y). Finally, using estimated total rates of nucleotide change, we infer the number of effective lineages within the sample time frame–analogous to a shared birthday–and assess the rate of turnover of lineages in our sample set over short evolutionary timescales. This provides a generalizable approach to calibrating rates in populations of environmental bacteria and shows that multiple lineages are maintained, implying that large-scale clonal sweeps may take hundreds of years or more in these species. 相似文献
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Amanda Marchini Rafael Pereira Wellington Pedroso Evangelos Christou 《Somatosensory & motor research》2017,34(2):96-101
Older adults are more variable than young adults on tasks that demand the simultaneous control of more than one effector, and the difference between age groups may be related to their different capacity of coordinating the force output of the involved effectors. The goal of this study was to determine whether age-associated differences in motor output variability during tasks involving the simultaneous dorsiflexion of two feet can be partially explained by differences in coordination and possibly attenuated by physical training. Ten young and 22 old adults (10 trained and 12 untrained old adults) volunteered to participate in the study. Trained older adults had experience in a high-intensity mixed modality training (MMT) regime for a minimum of 1?year. Volunteers performed successive trials of a constant force task and a goal-directed task, with and without visual feedback. Within- and between-trial variability were calculated and coordination was quantified using the uncontrolled manifold (UCM) approach (i.e., co-variation of the force outputs of both feet were used to quantify a motor synergy index). Older adults exhibited greater variability and lower synergy (p?.05), independently of physical training status, than young adults. Removal of visual feedback caused greater variability and lower synergy for all groups (p?.05). Our results suggest that older adults exhibit greater motor output variability in tasks involving the simultaneous dorsiflexion of both feet possibly due to a lack of coordination between the feet. 相似文献