7 resultados para Parasitoid-host-interactions

em Chinese Academy of Sciences Institutional Repositories Grid Portal


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硫化叶菌病毒表现出了极为独特、多样的形态学和基因组学特征,它们为研究硫化叶菌提供了很好的模型,同时也为构建可在硫化叶菌中进行分子操作的分子工具提供了有用的材料。 本研究从西藏热泉中分离出一株嗜酸热菌S3-3,S3-3的16S rDNA序列和腾冲硫化叶菌同源性最高,为96%,而和其它硫化叶菌同源性相对较低。基于16S rDNA序列进行的系统发育学分析同样证实了,S3-3和腾冲硫化叶菌亲缘关系最近,推测S3-3是硫化叶菌属的一新种。 从S3-3a中分离出一株硫化叶菌病毒,命名为西藏硫化叶菌丝状病毒(Sulfolobus Tibet Filamentous Virus, STFV)。STFV呈丝状,外面有一层脂膜包裹,病毒长约1.4 μm,病毒直径约20 nm,两端各有一约60 nm长的小尾巴。病毒的复制抑制宿主细胞生长,但并不引起宿主细胞的裂解。STFV的DNA为线性双链DNA,推测其DNA末端含共价闭合的发夹结构。已经完成了除病毒末端以外的基因组序列的测定,共测得序列29 568 bp。病毒基因组DNA的GC含量为32.70%,编码49个阅读框,其中包括四个解旋酶基因,四个糖基转移酶基因,一个核苷酸转移酶基因和一个磷酸转移酶基因。其中35个阅读框在已知硫化叶菌病毒中有同源基因。病毒含有两个主要的结构蛋白,分别由ORF162 和 ORF219所编码,这两个结构蛋白在Betalipothrixvirus中非常保守。基因组比对发现,STFV和Betalipothrixvirus的同源性很高。所有的证据表明,STFV为一新的病毒,属于硫化叶菌病毒Lipothrixviridae病毒科,Betalipothrixvirus病毒属。 腾冲硫化叶菌纺锤型病毒STSV1由向小宇博士分离。该病毒编码一个整合酶基因。但通过Southern杂交分析,未检测到病毒基因组整合至宿主基因组中。STSV1病毒颗粒的蛋白由5个阅读框所编码,而其主要的结构蛋白由ORF40编码。

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We report on the preparation of luminescent silica mesoporous molecular sieves (MCM-48) activated by the europium complex Eu(DBM)(3) . 2H(2)O (where DBM = dibenzoylmethane), using a simple wet impregnation method. Different concentrations of Eu(DBM)(3) . 2H(2)O were introduced into the MCM-48 cubic structure, and the resulting samples were washed with ethanol for different times. UV-Vis absorption measurements and thermogravimetric analysis were used to estimate the amount of Eu complex that has been incorporated within the pores of the MCM-48 host. The various samples were characterized by X-ray powder diffraction (XRD), infrared spectroscopy, diffuse reflectance (DR) and fluorescence measurements. The results reveal that Eu complexes have been successfully introduced into the pores of MCM-48 without disrupting the structure. All the impregnated MCM-48 materials show the typical red luminescence of Eu3+ when excited with a UV lamp. Shifts of the absorption maxima were observed in the DR and fluorescence excitation spectra and will be discussed in relation with guest-host interactions between the organic complex and the silica matrix. The decay profiles of the europium luminescence in the different samples were also measured and discussed.

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The crystal structure of thiamine iodide sesquihydrate has been determined by X-ray diffraction methods as a host-guest model for coenzyme-substrate interactions. The asymmetric unit contains two chemical units. Both the thiamine molecules A and B, which are crystallographically independent, assume the usual F conformation and have a disordered hydroxyethyl side chain. An iodide anion (or a water molecule) bridges the pyrimidine and thiazolium rings of molecule A (or B) by forming a hydrogen bond with the amino group and an electrostatic contact with the thiazolium ring to stabilize the molecular conformation. In the crystal the thiamine molecules self-associate to form a pipe-like polymeric structure, in which four thiamine hosts surround an iodide guest and hold it through C(2)-H...I hydrogen bonds and thiazolium...I electrostatic interactions. Crystal data: C12H17N4OS+.I- . 1.5 H2O, monoclinic, P2(1)/c, a = 12.585(2), b = 25.303(5), c = 12.030(2) angstrom, beta = 115.15(1)degrees, V = 3468(1) angtrom3, Z = 8, D(c) = 1.606 g cm-3, R = 0.045 for 3328 observed reflections.

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The polyetherketone (PEK-c) guest-host system thin films doped with 3-(1,1-dicyanothenyl)-1-phenyl-4,5-dihydro-1H-pryazole (DCNP) were prepared. Their second-order nonlinear optical (NLO) coefficients chi(33)((2)) were measured by using Maker fringe method for the polymer films doped with different weight percents of DCNP. Experimental results indicate that the second-order NLO properties of the poled polymer films could decrease with the chromophore loading increasing when the chromophore loading reaches a fairly high level. In this paper, the relationship between the macroscopic second-order NLO coefficient and the chromophore number density was modified under considering the role of the electrostatic interactions of chromophores in the polymer film. According to the modified relationship, the macroscopic second-order NLO coefficient is no longer in direct proportion with the chromophore number density in the polymer film. The effect of the electrostatic interactions of chromophores on second-order NLO properties was discussed. The attenuation of the macroscopic second-order NLO activity can be demonstrated by the role of the chromophore electrostatic interactions at high loading of chromophore in the polymer systems.

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A series of novel red-emitting iridium dendrimers functionalized with oligocarbazole host dendrons up to the third generation (red-G3) have been synthesized by a convergent method, and their photophysical, electrochemical, and electroluminescent properties have been investigated. In addition to controlling the intermolecular interactions, oligocarbazole-based dendrons could also participate in the electrochemical and charge-transporting process. As a result, highly efficient electrophosphorescent devices can be fabricated by spin-coating from chlorobenzene solution in different device configurations.

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An investigation into the interactions between thiamine monophosphate (TMP) and anions has resulted in the preparation and X-ray characterization of the compounds (TMP)(Hg2Br5).0.5H(2)O (1) and (TMP)(2)(Hg3I8) (2). In each compound the TMP molecule exists as a monovalent cation in the usual F conformation. The halogenomercurate anions occur in two-dimensional (2-D) network in 1 or one-dimensional (1-D) chain in 2. In both 1 and 2, the structures consist of alternating cationic sheets of the hydrogen-bonded TMP molecules and anionic sheets of the polymeric halogenomercurate anions. The TMP molecule binds to the polymeric anions through the characteristic 'anion bridge I', C(2)-H..X...pyrimidinium (X = Br in 1 and 1 in 2), and electrostatic interactions between electropositive S(1) and halogen atoms. The 'anion bridge II' of the type N(4'1)-H...X...thiazolium (X = phosphate group) plays a role in stabilizing the molecular conformation. The biological implication of the host-guest-like complexation between TMP and polymeric anions is discussed.

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In the title compound, 3-[(4-amino-2-methyl-5-pyrimidin-1-io)methyl]-5-(2-hydroxyethyl)-4-methylthiazolium(2+) bis(tetrafluoroborate), C12H18N4OS2+. 2BF(4)(-), the divalent thiamine cation (in the F conformation) is associated with BF4- anions via two characteristic bridging interactions between the thiazolium and pyrimidinium rings, i.e. C-H . . . BF4- . . . pyrimidinium and N-H . . . BF4- . . . thiazolium interactions. Thiamine molecules are linked by N-H . . .O hydrogen bonds to form a helical chain structure.