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81.
82.
Atmospheric nitrogen (N) deposition is an important component that affects the structure and function of different terrestrial ecosystem worldwide. However, much uncertainty still remains concerning the magnitude of N deposition on grassland ecosystem in China. To study the spatial and temporal patterns of bulk N deposition, the levels of N (NH4 +-N and NO3 --N) concentration in rainfall were measured at 12 sites across a 1200 km grassland transect in Inner Mongolia, China, and the respective N deposition rates were estimated. The inorganic N deposition rates ranged from 4.53 kg N ha-1 to 12.21 kg N ha-1 with a mean value of 8.07 kg N ha-1 during the entire growing season, decreasing steadily from the eastern to the western regions. Inorganic N deposition occurred mainly in July and August across meadow steppe, typical steppe, and desert steppe, which corresponded to the seasonal distribution of mean annual precipitation. A positive relationship was found between inorganic N deposition and mean annual precipitation (R2 = 0.54 ~ 0.72, P < 0.0001) across the grassland transect. Annual estimation of inorganic N deposition was 0.67 Pg yr-1 in Inner Mongolia, China based on the correlation between N deposition rates and precipitation. N deposition was an important factor controlling aboveground biomass and ecosystem respiration, but has no effect on root biomass and soil respiration. We must clarify that we used the bulk deposition samplers during the entire sampling process and estimated the dissolved NH4 +-N and NO3 --N deposition rates during the entire growing season. Long-term N deposition monitoring networks should be constructed to study the patterns of N deposition and its potential effect on grassland ecosystem, considering various N species, i.e., gaseous N, particle N, and wet N deposition.  相似文献   
83.
本文报道了九连小蘖细胞悬浮培养过程中,细胞生长与培养液的电导率、pH值、可溶性糖含量及过氨化物酶活性的变化。实验表明细胞生长曲线与培养液的电导率、可溶性糖含量变化的曲线恰成镜像关系。而细胞生长曲线与培养液的过氨化物酶活性变化的曲线相互平行。从而,可以通过监测培养液的电导率和过氧化物酶活性的变化来了解细胞生长状况,并可作为植物细胞培养过程中生物量增长的参考指标。  相似文献   
84.
Many proteins are composed of several domains that pack together into a complex tertiary structure. Multidomain proteins can be challenging for protein structure modeling, particularly those for which templates can be found for individual domains but not for the entire sequence. In such cases, homology modeling can generate high quality models of the domains but not for the orientations between domains. Small-angle X-ray scattering (SAXS) reports the structural properties of entire proteins and has the potential for guiding homology modeling of multidomain proteins. In this article, we describe a novel multidomain protein assembly modeling method, SAXSDom that integrates experimental knowledge from SAXS with probabilistic Input-Output Hidden Markov model to assemble the structures of individual domains together. Four SAXS-based scoring functions were developed and tested, and the method was evaluated on multidomain proteins from two public datasets. Incorporation of SAXS information improved the accuracy of domain assembly for 40 out of 46 critical assessment of protein structure prediction multidomain protein targets and 45 out of 73 multidomain protein targets from the ab initio domain assembly dataset. The results demonstrate that SAXS data can provide useful information to improve the accuracy of domain-domain assembly. The source code and tool packages are available at https://github.com/jianlin-cheng/SAXSDom .  相似文献   
85.
86.
Chemical synapses are asymmetric intercellular junctions through which neurons send nerve impulses to communicate with other neurons or excitable cells. The appropriate formation of synapses, both spatially and temporally, is essential for brain function and depends on the intercellular protein-protein interactions of cell adhesion molecules (CAMs) at synaptic clefts. The CAM proteins link pre- and post-synaptic sites, and play essential roles in promoting synapse formation and maturation, maintaining synapse number and type, accumulating neurotransmitter receptors and ion channels, controlling neuronal differentiation, and even regulating synaptic plasticity directly. Alteration of the interactions of CAMs leads to structural and functional impairments, which results in many neurological disorders, such as autism, Alzheimer’s disease and schizophrenia. Therefore, it is crucial to understand the functions of CAMs during development and in the mature neural system, as well as in the pathogenesis of some neurological disorders. Here, we review the function of the major classes of CAMs, and how dysfunction of CAMs relates to several neurological disorders.  相似文献   
87.
Madore E  Lipman RS  Hou YM  Lapointe J 《Biochemistry》2000,39(23):6791-6798
The conformation of a tRNA in its initial contact with its cognate aminoacyl-tRNA synthetase was investigated with the Escherichia coli glutamyl-tRNA synthetase-tRNA(Glu) complex. Covalent complexes between the periodate-oxidized tRNA(Glu) and its synthetase were obtained. These complexes are specific since none were formed with any other oxidized E. coli tRNA. The three major residues cross-linked to the 3'-terminal adenosine of oxidized tRNA(Glu) are Lys115, Arg209, and Arg48. Modeling of the tRNA(Glu)-glutamyl-tRNA synthetase based on the known crystal structures of Thermus thermophilus GluRS and of the E. coli tRNA(Gln)-glutaminyl-tRNA synthetase complex shows that these three residues are located in the pocket that binds the acceptor stem, and that Lys115, located in a 26 residue loop closed by coordination to a zinc atom in the tRNA acceptor stem-binding domain, is the first contact point of the 3'-terminal adenosine of tRNA(Glu). In our model, we assume that the 3'-terminal GCCA single-stranded segment of tRNA(Glu) is helical and extends the stacking of the acceptor stem. This assumption is supported by the fact that the 3' CCA sequence of tRNA(Glu) is not readily circularized in the presence of T4 RNA ligase under conditions where several other tRNAs are circularized. The two other cross-linked sites are interpreted as the contact sites of the 3'-terminal ribose on the enzyme during the unfolding and movement of the 3'-terminal GCCA segment to position the acceptor ribose in the catalytic site for aminoacylation.  相似文献   
88.
福建柏开花与结实物候期的研究   总被引:4,自引:0,他引:4  
福建柏1年2次花期,春花期4—5月,果期当年10月,种子无生活力;秋花期9~10月,果期翌年10月,种子有生活力,有效花期在秋季。开花结实的生物学及物候学特性与适生区的地点、地类、海拔、温度等地理气候因子紧密相关,总体变异规律:秋花期、球果成熟期、种子散落期山区比半山区早,半山区比丘陵区早,高海拔地区比低海拔地区早.发芽率山区〉半山区〉丘陵区。  相似文献   
89.
借助基因芯片获取慢性酒精中毒大鼠海马相关基因的表达数据集,通过生物信息学的分析方法对差异表达基因进行筛选与分析。从分子水平揭示慢性酒精中毒对大鼠大脑海马体的影响,为慢性酒精中毒的损伤机制以及相关疾病发病机制的基础研究与临床治疗提供新的方向。同时,还通过Y迷宫实验对实验大鼠的学习记忆功能进行了检测,借助电镜拍摄其线粒体。结果显示,我们一共筛选出208个差异表达基因,其中51个表达上调,157个表达下调。其中涉及的主要信号通路有氧化磷酸化通路、D-谷氨酰胺和谷氨酸代谢通路、阿尔茨海默病信号通路、帕金森病信号通路、膀胱癌信号通路、B细胞受体信号通路和亨廷顿病信号通路等。由此我们得出结论,慢性酒精中毒可能影响了海马多个基因的表达,其中包括Rpsa、Wdr31、Rps11、Rps9、Ndufa2、Mrto4、Rpl6、Dap3、Ndufb8、Ndufb6、Ephb2、Cox6c、Prkcd、Rela、Raf1、Ubd、Mrps28、Mrpl35等关键基因,进而损伤了电子传递链复合体Ⅰ,最终损伤线粒体,导致大鼠学习记忆能力的损伤。  相似文献   
90.
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