6 resultados para Luffa cylindrica

em Chinese Academy of Sciences Institutional Repositories Grid Portal


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通过DEAE-纤维素柱层析分级分离可将柱孢鱼腥藻(Anabaena cylindrica)固氮酶铁蛋白组分纯化21倍,比话性达142.46nmolC_2H_4/mg蛋白·分。纯化的铁蛋白质用聚丙烯酰胺凝胶电泳鉴定呈均一状态,分子量约为61,000。氨基酸组分分析的结果不含色氨酸,而酸性氨基酸中天门冬氨酸和谷氨酸的含量占氨基酸总数的22%,约为碱性氨基酸中精氨酸和赖氨酸的2.6倍。用原子吸收分光光度计测定不含钼,每个铁蛋白分子中平均含有3.36原子的铁。柱孢鱼腥藻固氮酶钼铁蛋白与铁蛋白的滴定试验表明,钼铁蛋

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改进了蓝藻固氮酶的分离、提纯方法。首次用小型厌氧聚丙烯酰胺凝胶制备电泳法,代替常用的层析法,获取了电泳纯的蓝藻固氮酶钼铁蛋白,简化了程序,缩短了实验周期。SDS凝胶电泳和分子筛凝胶过滤测定分子量结果表明,钼铁蛋白分子量为360,000,由4个分子量为90,000的同一类型亚单位构成。每个钼铁蛋白分子含1个钼,18个铁和3290个氨基酸残基。其中酸性氨基酸占优势。研究了柱孢鱼腥藻(Anabaena cylindrica)固氮酶粗提物和钼铁蛋白的某些特性,其结果是:米氏常数为3.33×10~(-3)大气压乙炔

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<正> 柱孢鱼腥藻(Anabaena cylindrica)和鱼腥藻7120(Anabaena 7120)(均为蓝藻植物)在空气中均能固定分子态氮.我们用紫外线和亚硝基胍分别对它们进行诱变、筛选,获得二株具异形胞而不能在空气中固定分子态氮的突变种.鱼腥藻-1(Anabaena-1)是鱼腥藻7120经紫外线诱变后得到的突变种,而鱼腥藻-2(Anabaena-2)是柱孢鱼腥藻经NTG诱变后获得的突变种.它们的异形胞频率(10~17.5%)高于野生种(5~9%).经二年多的连续传代培养表明突变表型是稳定的,自发

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Although Anabaena is one of the most prevalent planktonic freshwater genus in China, there are few taxonomic reports of Anabaena strains by morphology and genetics. In this study, morphological characteristics and phylogenetic relationships of seven Anabaena strains isolated from two plateau lakes, Lakes Dianchi and Erhai, were investigated. Morphological characteristics such as morphology of filament, cellular shapes and sizes, relative position of heterocytes and akinetes, and presence or absence of aerotopes, were described for these seven strains. Phylogenetic relationships were determined by constructing 16S rRNA gene tree using the neighbor-joining algorithm. The seven strains were morphologically identified as three groups, and phylogenetic analysis based on 16S rRNA gene sequences also showed that these seven strains were in three groups. Strains EH-2, EH-3, and EH-4 were in group A belonging to the Anabaena circinalis and A. crassa group, and strains DC-1, DC-2, and EH-1 were in group B and identified as A. flos-aquae. Strain DC-3 without aerotopes was significantly different from the other isolated strains and was determined as A. cylindrica.

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文章对采自贵州从低海拔的东部到高海拔的西部且大致平行的石灰岩和砂岩两地带均生长的3种C4草本植物,即巴茅(Miscanthus floridulus)、白茅(Imperata cylindrica)和类芦(Neyraudia reynaudiana),以及相对应的土壤表层样品,进行了营养元素和C同位素组成分析;研究营养元素含量随着海拔的不同而出现的变化趋势,以及这些元素之间的相互协变作用,尤其是Ca和N之间的相互协变作用对植物的N含量、C/N比值和δ^13C值的影响,以了解植物的C/N比值(指示植物残留物质量的一种标志)与土壤有机C积累的关系。研究结果表明,植物的N含量和δ^13C值具有随海拔的上升而显著增大趋势,而植物的C/N比值在砂岩地区虽有减小的趋势,在石灰岩地带则没有。对所研究的C4草本植物来说,在土壤pH值为5.8的中性条件下显示出Ca的最大吸收,因此,Ca与其他营养元素之间的协变模式在两种土壤类型中表现出相反的倾向,并存在土壤交换性Ca的边界浓度:当土壤可交换性Ca的含量为2.24mg/g,相应土壤的pH值在5.8以下时,随着土壤可交换性Ca浓度的增大,植物的N含量上升,而植物的C/N比值会显著降低;当Ca在边界浓度以上时,随着土壤可交换性Ca浓度的增大,植物的N含量下降,而植物的C/N比值有增加的趋势。由此可见,植物残留物的N含量和C/N比值受Ca元素含量的相互协变作用的影响。在砂岩地区,随着植物C/N比值的增高,土壤有机质的含量却随之下降,而在石灰岩地区则没有这种倾向。因此得出结论:植物的C/N比值的增大对土壤有机碳积累的影响主要取决于土壤的性质,尤其是取决于土壤可交换性Ca的含量。