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聚落的形成与整合——洪江古商城聚落空间形态研究 被引量:1
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作者 黄筱蔚 蒋学志 《华中建筑》 2006年第11期154-158,共5页
该文通过实地考察、测绘结果,以洪江古商城的格局为出发点,从古商城的自然生态空间、人工物质空间和精神文化空间三方面,全面研究了古商城聚落空间形态。以期对洪江这样的历史文化名镇的开发与保护提供依据。
关键词 古商城聚落格局 聚落空间形态 自然生态空间 人工物质空间 精神文化空间
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Spatial heterogeneity in a deep artificial lake plankton community revealed by PCR-DGGE fingerprinting 被引量:8
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作者 李强 赵越 +4 位作者 张旭 魏雨泉 邱琳琳 魏自民 李富恒 《Chinese Journal of Oceanology and Limnology》 SCIE CAS CSCD 2015年第3期624-635,共12页
To explore the spatial heterogeneity of plankton communities in a deep artificial lake (Songhua Lake, China), samples were collected at seven sites. Samples were investigated by denaturing gradient gel electrophores... To explore the spatial heterogeneity of plankton communities in a deep artificial lake (Songhua Lake, China), samples were collected at seven sites. Samples were investigated by denaturing gradient gel electrophoresis (DGGE) analysis of the PCR-amplified 16S and 18S rRNA genes and specific bands were sequenced. Cluster analysis of the DGGE profiles revealed that all of the samples grouped into two distinct clusters, in accordance with sampling site; while in each cluster, the divergence of sub-clusters correlated with sampling depth. Sequence analysis of selected dominant DGGE bands revealed that most sequenced phylotypes (84%) exhibited 〉97% similarity to the closest sequences in GenBank, and were affiliated with ten common freshwater plankton phyla (Proteobacteria, Actinobacteria, Bacteroidetes, Cyanobacteria, Bacillariophyta, Pyrrophyta, Cryptophyta, Ciliophora, Stramenopiles, and Rotifera). Several of these groups are also found worldwide, indicating the cosmopolitan distribution of the phylotypes. The relationships between DGGE patterns and environmental factors were analyzed by redundancy analysis (RDA). The results suggested that, total nitrogen, nitrate, nitrite, temperature were strongly correlated with the variation ammonia, and CODMn concentrations, and water in plankton composition. 展开更多
关键词 Songhua Lake plankton community composition denaturing gradient gel electrophorcsis (DGGE) artificial lake redundancy analysis
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