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551.
WILLIAM M. DA SILVA KENNEDY F. ROCHE FÁBIO S. DE VICENTE ÂNGELA A. S. T. DELBEN 《The Journal of eukaryotic microbiology》2009,56(4):385-385
ABSTRACT. The ciliate Trichodina was recorded on the calanoid Notodiaptomus deitersi in a shallow, eutrophic reservoir, located in the centre‐west of Brazil. The species was confirmed as Trichodina diaptomi, a species widely distributed in Europe, Africa, Asia and Australia. It was observed moving freely over the carapace of the copepod, and using its adhesive disc. This is the first record for the species in the Americas. 相似文献
552.
祁连山青海云杉林地土壤水分特征研究 总被引:19,自引:0,他引:19
通过对祁连山青海云杉林地土壤水分含量及主要影响因子的测定,结果表明,青海云杉林地土壤具有容重低、入渗率高、土壤水分含量垂向分布受降水影响明显等特征,灌木-青海云杉林、苔藓-青海云杉林和草地(对照)平均容重分别为0.522、0.641、0.874g·cm^-3.土壤初渗率分别为6.0、21.0、2.5mm·min^-1,稳渗率分别为3.98、11.2、0.5mm·min^-1.苔藓-青海云杉林地土壤可划分为4层:水分活跃层(0~30cm)、水分调节层(30~60cm)、水分传输层(60~80cm)和蓄水层(80ClTI以下),各层土壤贮水量分别为3.30、3.17、2.80和2.83mm·cm^-1.灌木-青海云杉林可分为3层:水分稳定层(0~30cm)、水分活跃层(30~60cm)和水分传输层(60cm以下),各层土壤贮水量分别为3.98、3.65、3.48mm·cm^-1.两种林地土壤水分含量的季节变化受降水影响较大,相比而言,苔藓.青海云杉林地入渗率更高,有较明显的蓄水层,水分传输能力更强,而灌木-青海云杉林地贮水能力更强. 相似文献
553.
【背景】芳樟醇具有特殊的香气和多种生物学活性,是食品、医药和化妆品行业的重要原料。随着合成生物学的高速发展,代谢改造微生物进行芳樟醇生物合成是当前研究的一大热点。然而在微生物的生物合成中,芳樟醇对底盘细胞的毒性是一大瓶颈问题,也是其他单萜物质生物合成的共性问题。【目的】建立合理的耐受性改造方法,以提高微生物宿主细胞对芳樟醇的耐受性。【方法】以酿酒酵母BY4741为研究对象,通过对ABC转运蛋白、活性氧调控相关酶及转录调控因子的过表达,考察它们对酿酒酵母芳樟醇耐受性的影响,并通过对酿酒酵母细胞进行定向驯化,筛选耐受性提高的酿酒酵母突变株。【结果】单独过表达ABC转运蛋白(Yor1、Snq2、Pdr5、Pdr15和Pdr18)、ROS调控相关酶(Gre2、Ctt1、Yhb1、Gpx2、Trr1、Trx2和Gsh2)及转录调控因子(Ino2、Yap1、Yap5和Stb5)并不能有效提高酿酒酵母的耐受性,但在传代适应性驯化过程中获得了两株耐受性提高的酿酒酵母突变株,将芳樟醇的致死浓度从430mg/L提高到了645mg/L以上。进一步通过基因组重测序分析揭示了驯化菌株突变位点。其中YBR074W... 相似文献
554.
B Jeansonne Q Lu D A Goodenough Y H Chen 《Cellular and molecular biology, including cyto-enzymology》2003,49(1):13-21
The claudin family is a set of integral membrane proteins found at cell-cell interactions in tight junctions. To identify proteins that interact with claudin-8, we used the yeast two-hybrid system to search for binding partners. Using the C-terminal 37 amino acids of claudin-8 as bait, we screened a human kidney cDNA library and identified multi-PDZ domain protein 1 (MUPP1) as a claudin-8 binding protein. MUPP1 contains 13 PDZ domains and binds to claudin-8 though its PDZ9 domain. When MDCK cells were transfected with epitope-tagged claudin-8 or MUPP1, both molecules were concentrated at cell-cell junctions. The interaction of claudin-8 and MUPP1 in vivo was confirmed by co-immunolocalization and co-immunoprecipitation in MDCK cells. Expression of claudin-8-myc increased transepithelial electrical resistance (TER) and reduced paracellular flux using FITC-dextran as a tracer. Over-expression of FLAG-MUPP1 in MDCK cells also reduced the epithelial paracelhular conductance. Our results indicate that claudin-8 and MUPP1 interact in tight junctions of epithelial cells and are involved in the tight junction barrier function. 相似文献
555.
Survey of Malassezia sp and dermatophytes in the cutaneous microbiome of free‐ranging golden‐headed lion tamarins (Leontopithecus chrysomelas ‐ Kuhl, 1820) 下载免费PDF全文
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559.
Investigations were made of the variation in copper toleranceamong homokaryons and dikaryons originating from one dikaryoticisolate of Polyporus palustris, as shown by their growth onnutrient agar containing copper sulphate, usually at 0.32 Mconcentration (c. 8 per cent of CuSO4.5H2O). Homokaryons obtainedby monobasidiospore isolation were crossed and further homokaryonsobtained in the same way. Selection for copper tolerance gavean increase in the second generation, but no further increasein the third; whilst selection for copper sensitivity gave substantialincreases in both second and third generations. It is concludedthat copper tolerance in this fungus is controlled by a numberof genes. It was found that, in this fungus, the copper toleranceof a dikaryon was substantially greater than that of eitherof its constituent homokaryons. It was also found that differentisolates of P. palustris varied very widely in copper tolerance. 相似文献
560.
Roberto Bruzzone Thomas W. White Daniel A. Goodenough 《BioEssays : news and reviews in molecular, cellular and developmental biology》1996,18(9):709-718
Most cells communicate with their immediate neighbors through the exchange of cytosolic molecules such as ions, second messengers and small metabolites. This activity is made possible by clusters of intercellular channels called gap junctions, which connect adjacent cells. In terms of molecular architecture, intercellular channels consist of two channels, called connexons, which interact to span the plasma membranes of two adjacent cells and directly join the cytoplasm of one cell to another. Connexons are made of structural proteins named connexins, which compose a multigene family. Connexin channels participate in the regulation of signaling between developing and differentiated cell types, and recently there have been some unexpected findings. First, unique ionic- and size-selectivities are determined by each connexin; second, the establishment of intercellular communication is defined by the expression of compatible connexins; third, the discovery of connexin mutations associated with human diseases and the study of knockout mice have illustrated the vital role of cell-cell communication in a diverse array of tissue functions. 相似文献