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61.
PLANT GROWTH RESPONSES TO VESICULAR-ARBUSCULAR MYCORRHIZA 总被引:4,自引:4,他引:0
CONWAY LL. POWELL 《The New phytologist》1975,75(3):563-566
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One glycyl-tRNA synthetase from rat liver does not form glycylhydroxamates in the absence of tRNA. Glycyl-hydroxamate accumulated during the incubation of enzyme preparation with glycine, ATP, tRNA and NH(2)OH is formed by non-enzymatic hydroxylaminolysis of glycyl-tRNA. 相似文献
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Leaf Development in Lolium temulentum L.: Progressive Changes in Soluble Polypeptide Complement and Isoenzymes 总被引:3,自引:0,他引:3
OUGHAM HELEN J.; JONES THOMAS W. A.; EVANS MAIR LL. 《Journal of experimental botany》1987,38(10):1689-1696
Ougham, Helen J., Jones, Thomas W. A. and Evans, Mair LL. 1987.Leaf development in Lolium temulentum L.: progressive changesin soluble polypeptide complement and isoenzymes.J. exp.Bot. 38: 16891696. The spectrum of soluble polypeptides extracted from segmentsof the developing 4th leaf of Lolium temulentum simplified withincreasing distance from the leaf base. Most of the metabolicallyimportant isoenzymes analysed also exhibited gradients of activitywith respect to distance from the base, and in some cases twoor more contrasting gradients were observed for a given enzyme. Key words: Gradients, isoenzymes, leaves, Lolium temulentum,, soluble polypeptides 相似文献
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We predicted future plague and black-tailed prairie dog dynamics in the North American prairies under different scenarios of climate change. A climate-driven model for the joint dynamic of the host–parasite system was used. Projections for the regional climate were obtained through empirical–statistical downscaling of global climate scenarios generated by an ensemble of global climate models for the recent Fourth Assessment Report by the IPCC. The study shows the uncertainties involved in predicting future regional climate and climate-driven population dynamics, but reveals that unchanged or lower levels of plague, leading to increased black-tailed prairie dog colonies, can be expected. Less plague is particularly expected for scenarios that assume the highest emission of greenhouse gases associated with the greatest projected future warming. Moreover, under high-emission scenarios, decreased probabilities of extremely high numbers of infected colonies are expected, along with decreased probabilities of extremely low total numbers of colonies. The assumed main underlying mechanism is an inhibiting effect of high temperatures on fleas (dispersal vector) and on flea-mediated transmission of the disease-causing bacterium. Our study highlights the importance of using dynamic ecological (here host–parasite) models together with ensembles of climate projections to investigate the responses of populations and parasites to a changed climate. 相似文献
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