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1.
云南呈贡梁王山现代花粉雨的研究 总被引:13,自引:1,他引:12
本文通过对云南呈贡梁王山5块表土分析,初步研究了主要植物花粉的百分含量与其植物覆盖率之间的数量关系,并用校正系数R值表示。按照R值的大小,分为两组:R>1属于超代表性,包括有松、桤木、马桑、蒿和部分蕨类植物;R<1属于低代表性,包括有油杉、栲和石栎、滇青冈、栎、铁仔。在分析松粉分布特征基础上,认为昆明地区西风急流对松粉的传播是主要因素。 相似文献
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Geneticdivergenceanalysiswasconductedbasedonperformanceof12quantitativetraitsin85sunflowerinbredlines,tostudyitseffectivenessinpredictingyieldheterosisofthe72hybridsfromthem.Resultsshowedthatlinearregressionmodelfittherelationshipbetweenheterosisofseedoilcontentandgeneticdistance,andquadraticregressionequationtherelationshipbetweengrainyieldheterosisandgeneticdistance,whichcanbeusedinpredictingheterosisfromtheparentperformances.Clusteranalysiswaseffectivetocertainextent,butitsutilizationshouldbelimited.Grainyieldandoilcontentcanbeimprovedsimutaneouslyaccordingtotherelationsbetweengeneticdivergenceandtheheterosisofthesetwotraits. 相似文献
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Recombinant antibodies, especially ScFv fragments, can be applied as detection reagents and even substitute for some reagents used in immunoassays such as antibody-enzyme conjugates. For ScFv fragments, there is no such universal system available up to now. A vector system was constructed based on pPIC9- Fc, in which the hinge, CH2 and CH3 domains (Fc fragment) of mouse IgG1 and His-tag were cloned into the Pichia expression vector pPIC9. A model ScFv was introduced into pPIC9-Fc, which can bind Glutathione-S-transferase (GST) from Schistosoma japonicum, to yield the expression cassette pPIC9-ScFv-Fc. Following fermentation in a 5-liter reactor, the fusion was expressed at high levels in the methylotrophic yeast Pichia Pastoris, secreted as a dimeric form in the culture, and purified by Ni2+-NTA column chromatography. The expression yield can reach 10-30 mg/liter of culture medium. The ScFv-Fc fusion retains the biological binding ability of the parent ScFv, and can be applied as anti-GST antibodies for the detection of GST and GST-fusion proteins. Furthermore, the successful expression and maintenance of the binding activity verify the efficacy of the vector system for use as detection reagents in vitro, by reacting with the specific antigens and being readily detected using general anti-mouse antibodies. 相似文献
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Cheng H Gao Q Jiang M Ma Y Ni X Guo L Jin W Cao G Ji C Ying K Xu W Gu S Ma Y Xie Y Mao Y 《The international journal of biochemistry & cell biology》2003,35(2):226-234
Reversible phosphorylation is recognized to be a major mechanism for the control of intracellular events in eukaryotic cells. From a human fetal brain cDNA library, we isolated a cDNA clone encoding a novel dual specificity protein phosphatase, which showed 88% identity with previously reported mouse LMW-DSP3 at the amino acid level. The deduced protein had a single dual-specificity phosphatase catalytic domain, and lacked a cdc25 homology domain. LMW-DSP3 was expressed in the heart, lung, liver, and pancreas, and the expression level in the pancreas was highest. The LMW-DSP3 gene was located in human chromosome 2q32, and consisted of five exons spanning 21kb of human genomic DNA. LMW-DSP3 fused to GST showed phosphatase activity towards p-nitrophenyl phosphate which was optimal at pH 7.0 and 40 degrees C, and the activity was enhanced by Ca(2+) and Mn(2+). The phosphatase activity of LMW-DSP3 was inhibited by orthovanate. LMW-DSP3 showed phosphatase activity toward oligopeptides containing pSer/Thr and pTyr, indicating that LMW-DSP3 is a protein phosphatase with dual substrate specificity. 相似文献
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Yushu TangLei Wang Jianwei JiaYanli Li Wenquan ZhangHongli Wang Ying Sun 《Ecological Engineering》2011,37(11):1638-1646
To clarify the effects of artifical disturbances on the soil microbial respiration (SMR) of existed tidal wetlands, the SMR of three typical areas in Chongming Dongtan and Jiuduansha of the Yangtze River Estuary, China, were evaluated. The causes of the differences in the SMR were also evaluated by analyzing the microbial activity factors and community structure, as well as the physical-chemical characteristics of the different wetland soils. The results showed that the SMR of the existed wetlands in the area of siltation promotion was significantly higher (P < 0.01) than that of the natural area. Different agricultural practices on the inner land also affected the SMR of the tidal wetlands. Overall, the results indicated that the difference in soil microbial characteristics between the artificially disturbed and natural tidal wetlands may be the primary cause of their different SMR. Path analysis indicated that the correlation between soil bacterial diversity and SMR were especially strong. Phylogenetic analysis showed that the bacterial microbial community structure in wetland soil that had been subject to artificial disturbance was changed due to the alteration of the soil physicochemical characteristics, and Pseudomonas sp., Bacillus sp., Uncultured Lactococcus sp. and Streptococcus sp., which have high heterotrophic metabolism or stress tolerance capability, became the dominant bacterial flora in the artificially disturbed wetland soil, ultimately strengthening the SMR. This may be the essential cause of the higher SMR in wetland soils that have been subjected to artificial disturbance, resulting in a low organic carbon accumulation capability. 相似文献
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研究了溶液培养条件下Cd、Zn及其复合对小麦幼苗吸收Ca、Fe、Mn的影响.结果表明,小麦幼苗对Zn、Cd的吸收随溶液中Cd2+、Zn2+浓度的升高而增加,Cd、Zn同时存在时与其单独作用时幼苗对它们的吸收不同,Zn影响幼苗对Cd的吸收,Cd对Zn的吸收起抑制作用.Ca、Mn的吸收随溶液中Cd2+、Zn2+浓度升高而呈下降趋势,在Cd单独处理组和Zn单独处理组中Fe的吸收随Cd2+、Zn2+浓度升高而增加,但在Zn+Cd处理组中,Fe的吸收则呈下降趋势,其效应方式还与作物具体部位有关. 相似文献