998 resultados para interaction protéine-ARN


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本论文对榧属(TorreyI)的研究历史作了回顾.以形态性状为依据,结合叶片的解剖,花粉表面的电镜观察,以及种子蛋白的电泳等,对榧属的系统分类进行了研究。结果表明: l、支持根据种子胚乳深皱与微皱分榧属为两个组的观点. 2、从叶片气孔带乳突的特征及种子蛋白电泳带的类型,似可支持榧属两组的建立. 3、根据各种榧树叶肉组织中石细胞的观察,不支持将石细胞的有无作为分组的特征。 4、云南榧与巴山榧叶的解剖特征有较多相似性,但在石细胞的含量、栅栏组织细胞层数及结晶大小等方面存在差别.考虑到其他性状及地理分布,认为将云南榧改为巴山榧的变种较为自然。 5、本属植物花粉形态较为一致,种问无明显的差别.对组和种的划分无重要参考价值. 6、经研究订正,榧属共6种2变种和11个栽培变种。其中1新变种(九龙山榧),1改级新组合(云南榧),6个新载培变种。 7、结合前人的研究,作者归纳出红豆杉科植物的进化趋势,支持榧属为进化类群的观点。

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EXTRACT (SEE PDF FOR FULL ABSTRACT): The suppression of primary productivity observed in eastern boundary ecosystems of the Pacific during El Nino episodes does not occur throughout the Gulf of California. On the contrary, analysis of the modern siliceous phytoplankton record from annually layered sediments and compilation of available primary productivity measurements indicate that production is significantly increased in the central Gulf during El Nino years compared to anti-El Nino years. Integrated observations of biological and physical variability during the spring of 1983, under the influence of the strong El Nino, show that very high primary productivity occurred along the eastern margin of the central Gulf. This resulted from the upwelling of a nutrient rich source provided by the locally formed Gulf water mass originating in the northern Gulf. Lower productivity and phytoplankton biomass were associated with the anomalous penetration of Tropical Surface Water along the western side of the Gulf.

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The study of pair-wise interactions between swimming microorganisms is fundamental to the understanding of the rheological and transport properties of semi-dilute suspensions. In this paper, the hydrodynamic interaction of two ciliated microorganisms is investigated numerically using a boundary-element method, and the microorganisms are modeled as spherical squirmers that swim by time-dependent surface deformations. The results show that the inclusion of the unsteady terms in the ciliary propulsion model has a large impact on the trajectories of the interacting cells, and causes a significant change in scattering angles with potential important consequences on the diffusion properties of semi-dilute suspensions. Furthermore, the analysis of the shear stress acting on the surface of the microorganisms revealed that the duration and the intensity of the near-field interaction are significantly modified by the presence of unsteadiness. This observation may account for the hydrodynamic nature of randomness in some biological reactions, and supersedes the distinction between intrinsic randomness and hydrodynamic interactions, adding a further element to the understanding and modeling of interacting microorganisms.