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12篇 您的检索式:作者名="Utevsky"
    题名 作者 年代 出处 被引量
1Diverse molecular data demonstrate that commercially available medicinal leeches are not Hirudo medicinalis显示文摘Siddall M E Trontelj P Utevsky S Y 0,,:1
2Flame retardant polypropylene fibers with good dyeability显示文摘Muskatell M Utevski L Shenker M 1997Journal of Applied Polymer Sciene1997,64,3:1
3Preeuneus is a functional core of the default-mode network显示文摘Utevsky AV Smith DV Huettel SA 2014J Neurosei2014,34,3:1
4Re- productive biology and ecological strategies of three species of medicinal leeches (genus Hirudo ) 显示文摘PETRAUSKIENE L UTEVSKA O UTEVSKY S 2011Journal of Natural History2011,45,1112:1
5Precuneus is a functional core of the default-mode network显示文摘Utevsky AV Smith DV Huettel SA 2014J Neurosci2014,34,3:1
6Flame Retar- danl Polypropylene Fibe~ with Good Dyeability显示文摘Muskatell M Utevski L Shenker M 1997Jour- nal of Applied Polymer Sciene1997,64,3:1
7Molecular phylogeny of pontobdelline leeches and their place in the descent of fish leeches (Hirudinea, Piscicolidae)显示文摘Utevsky S Y Utevsky A Y Schiaparelli S 2007Zoologica Scripta2007,36,3:1
8Flame retardancy in UL-94 V-0 and in UL-94 5VA high impact polystyrene显示文摘UTEVSKI L SCHEINKER M I GEORLETTE P 1997Journal of Fire Sciences1997,15,5:1
9Precuneus is a func- tional core of the default-mode network 显示文摘Utevsky AV Smith DV Huettel SA 2014J Neurosci2014,34,3:1
10Precuneus is a functional core of the default-mode network显示文摘Utevsky A V Smith DV Huettel SA 2014J Neurosci2014,34,3:1
11Phylogeny and phylogeography of medicinal leeches ( genus Hirudo) : Fast dispersal and shal- low genetic structure 显示文摘Trontelj P Utevsky SY 2012Mol Phylogenet Evol2012,63,2:1
12Biochemical and Physiological Responses of Arabidopsis thaliana Leaves to Moderate Mechanical Stimulation显示文摘Mechanical stimulation of plants can be caused by various abiotic and biotic environmental factors.Apart from the negative consequences,it can also cause positive changes,such as acclimatization of plants to stress conditions.Therefore,it is necessary to study the physiological and biochemical mechanisms underlying the response of plants to mechanical stimulation.Our aim was to evaluate the response of model plant Arabidopsis thaliana to a moderate force of 5 N(newton)for 20 s,which could be compared with the pressure caused by animal movement and weather conditions such as heavy rain.Mechanically stimulated leaves were sampled 1 h after exposure and after a recovery period of 20 h.To study a possible systemic response,unstimulated leaves of treated plants were collected 20 h after exposure alongside the stimulated leaves from the same plants.The effect of stimulation was assessed by measuring oxidative stress parameters,antioxidant enzymes activity,total phenolics,and photosynthetic performance.Stimulated leaves showed increased lipid peroxidation 1 h after treatment and increased superoxide dismutase activity and phenolic oxidation rate after a 20-h recovery period.Considering photosynthetic performance after the 20-h recovery period,the effective quantum yield of the photosystem II was lower in the stimulated leaves,whereas photochemical quenching was lower in the unstimulated leaves of the treated plants.Nonphotochemical quenching was lower in the stimulated leaves 1 h after treatment.Our study suggested that plants sensed moderate force,but it did not induce pronounced change in metabolism or photosynthetic performance.Principal component analysis distinguished three groups–leaves of untreated plants,leaves analysed 1 h after stimulation,while stimulated and unstimulated leaves of treated plants analysed 20 h after treatment formed together the third group.Observed grouping of stimulated and unstimulated leaves of treated plants could indicate signal transduction from the stimulated to distant leaves,that is,a systemic response to a local application of mechanical stimuli.Iva Šutevski Klara Krmpotić Sandra Vitko Nataša Bauer Eva Fancev Mario Cifrek Željka Vidaković-Cifrek 2023Phyton-International Journal of Experimental Botany2023,92,3:0
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