It is well known that β-BBO is a new type nonlinear optical crystal discovered in our institute and now β-BBO is widely used in the fields of laser and nonlinear optics. However, there are still some inclusions in ...It is well known that β-BBO is a new type nonlinear optical crystal discovered in our institute and now β-BBO is widely used in the fields of laser and nonlinear optics. However, there are still some inclusions in β-BBO crystal grown by flux method. Using AEM technique, we have studied the shape, composition and structure of inclusions which is very helpful to the explanation of the formation of inclusions.展开更多
为探究湖北襄阳地区不同颜色高温大曲中葡萄球菌(Staphylococcus)多样性,该研究通过下载并筛选葡萄球菌属相对含量>10%的样品序列,采用Illumina Mi Seq高通量测序技术和传统纯培养技术相结合的方法对大曲中葡萄球菌多样性进行解析。...为探究湖北襄阳地区不同颜色高温大曲中葡萄球菌(Staphylococcus)多样性,该研究通过下载并筛选葡萄球菌属相对含量>10%的样品序列,采用Illumina Mi Seq高通量测序技术和传统纯培养技术相结合的方法对大曲中葡萄球菌多样性进行解析。结果表明,高温大曲中葡萄球菌相对含量>10%的样品共有13份,包括7份黑色大曲、4份黄色大曲和2份白色大曲,葡萄球菌基因序列相对丰度占所有原核生物的14.33%~74.19%。多样性分析表明,黑色大曲中葡萄球菌丰富度和多样性均显著偏高(P<0.05),且不同颜色高温大曲中葡萄球菌群落结构差异显著(P<0.05)。操作分类单元(OTU)分析表明,高温大曲中共有OTU 5个,累积平均相对含量达到91.38%。传统纯培养技术表明,腐生葡萄球菌(Staphylococcus saprophyticus)是黑色、黄色和白色大曲中共有的可培养菌种,亦是高温大曲中葡萄球菌的主要可培养菌种。由此表明,黑色大曲中葡萄球菌丰富度和多样性更高,且腐生葡萄球菌为高温大曲中葡萄球菌的主要可培养菌种。展开更多
文摘It is well known that β-BBO is a new type nonlinear optical crystal discovered in our institute and now β-BBO is widely used in the fields of laser and nonlinear optics. However, there are still some inclusions in β-BBO crystal grown by flux method. Using AEM technique, we have studied the shape, composition and structure of inclusions which is very helpful to the explanation of the formation of inclusions.
文摘为探究湖北襄阳地区不同颜色高温大曲中葡萄球菌(Staphylococcus)多样性,该研究通过下载并筛选葡萄球菌属相对含量>10%的样品序列,采用Illumina Mi Seq高通量测序技术和传统纯培养技术相结合的方法对大曲中葡萄球菌多样性进行解析。结果表明,高温大曲中葡萄球菌相对含量>10%的样品共有13份,包括7份黑色大曲、4份黄色大曲和2份白色大曲,葡萄球菌基因序列相对丰度占所有原核生物的14.33%~74.19%。多样性分析表明,黑色大曲中葡萄球菌丰富度和多样性均显著偏高(P<0.05),且不同颜色高温大曲中葡萄球菌群落结构差异显著(P<0.05)。操作分类单元(OTU)分析表明,高温大曲中共有OTU 5个,累积平均相对含量达到91.38%。传统纯培养技术表明,腐生葡萄球菌(Staphylococcus saprophyticus)是黑色、黄色和白色大曲中共有的可培养菌种,亦是高温大曲中葡萄球菌的主要可培养菌种。由此表明,黑色大曲中葡萄球菌丰富度和多样性更高,且腐生葡萄球菌为高温大曲中葡萄球菌的主要可培养菌种。