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21.
【背景】水中的重金属污染是一个严峻的环境问题,严重危害人体健康,利用微生物吸附剂修复重金属污染的水体是一种高效环保的方法。Sphingopyxis能够去除重金属,但是其去除水体中镉的研究很少,且其吸附镉的机理尚不清楚。【目的】以从水体中分离的Sphingopyxis sp. YF1为对象,探究该菌对镉的吸附特性和机制。【方法】分析在不同pH、接触时间及重金属初始浓度条件下YF1活菌和死菌对Cd2+的吸附效果,对其进行动力学模型和等温模型拟合,通过扫描电镜和能谱(scanning electron microscopy and energy dispersive X-ray spectroscopy, SEM-EDS)观察镉在活菌和死菌细胞表面的富集,并通过傅里叶变换红外光谱(Fourier transform infrared spectroscopy, FTIR)和X射线光电子能谱(X-ray photoelectron spectroscopy, XPS)分析确定YF1菌中参与吸附Cd2+的官能团,阐明YF1对镉的吸附机理。【结果】当pH值为3.0-5.0时,随着pH值的升高,活菌与死菌的镉吸附量都随着增加,pH值为5.0-7.0时,活菌与死菌的镉吸附量均无较大变化,吸附主要发生在前10 min,之后吸附速率逐渐降低,活菌和死菌吸附Cd2+的过程更符合准二级动力学模型,表明菌体对镉主要是以化学吸附的方式进行;活菌和死菌等温模型拟合都更符合Langmuir模型,说明YF1对Cd2+的吸附为均相吸附;活菌和死菌对Cd2+的吸附量分别达到36.20 mg/g和62.98 mg/g;吸附后的活菌和死菌的细胞表面均有Cd(II)沉积在菌体表面,活菌和死菌的-OH、C-(O,N)和-NO2等基团参与了镉的吸附。【结论】Sphingopyxis sp. YF1菌具有较强的Cd2+去除能力,该菌株在去除水体Cd2+方面具有良好的应用前景。 相似文献
22.
大叶杨(Populus lasiocarpa)是中国特有的杨属物种,干旱和水淹是影响大叶杨生长和分布范围的两个关键因子。AP2/ERF转录因子家族在植物响应非生物胁迫中发挥重要作用。本研究采用转录组测序、生物信息学分析手段并结合分子实验验证初步鉴定了参与大叶杨干旱和水淹胁迫响应的关键基因。研究结果显示:(1)在大叶杨中分别鉴定到3,986/385个响应干旱/水淹胁迫的差异表达基因,其中包括237个同时响应干旱和水淹胁迫的差异表达基因。(2)在大叶杨中共鉴定到205个AP2/ERF家族成员,系统发育分析表明其在大叶杨中主要分为5个亚家族,并显著富集于差异表达基因中。(3)筛选部分胁迫前后差异表达的PlAP2/ERF基因进行qRT-PCR实验,经证实这些基因在大叶杨受到干旱/水淹胁迫时均可被诱导表达。综上,大叶杨在水淹胁迫下的差异表达基因数量明显少于干旱胁迫,AP2/ERF基因家族的部分基因参与到大叶杨干旱/水淹胁迫的应激表达过程。 相似文献
23.
几种海洋动物药中氨基酸的测定 总被引:3,自引:0,他引:3
本文报道了中药瓦楞子、蛤壳、贝齿、鱼脑石、鹅管石中的氨基酸分析,结果表明分别含有13~16种氨基酸,为全面深入地研究和开发这几种海洋动物药提供参考依据。 相似文献
24.
为保护广西北部湾海岸带、海岛的植物多样性和生态系统多样性,通过样方、样带法野外实地调查并结合文献资料,对其外来入侵植物的物种组成、原产地、生活型、入侵途径和危害状况等进行了分析。结果表明,广西北部湾海岸带、海岛共有入侵植物64种,隶属28科55属,其中菊科(Asteraceae)最多(15种)。草本植物最多,有48种(75.00%)。原产地来自美洲的植物最多,有49种。入侵风险等级可划分为5个等级,其中Ⅰ级严重危害的有8种(12.50%)。与广西、广东、海南及华南地区的外来入侵植物在物种组成、生活型和原产地等方面呈现出较强的相似性;北部湾与广西中越边境内陆地区来自美洲的入侵植物都超过60%。因此推测广西外来入侵植物有两条可能的入侵线路:一是从海南登录,二是从中越边境跨入。广西北部湾海岸带、海岛的外来入侵植物总数(相对整个广西)虽较少,但其8种Ⅰ级严重危害植物的防治,仍需引起重视。 相似文献
25.
Qiuping Ran Mengtian Huang Huanan Li Bixin Chen Lili He Xinxin Cui Jiashu Liu Zhengbing Jiang 《Global Change Biology Bioenergy》2023,15(6):821-833
In the process of bioethanol production, more stable and active cellulase in high temperature condition is required. In this study, syringic acid was applied in cellulase hydrolysis system. At 70°C, TvEG3 activity increased 201.36%, CtBglA activity decreased 72.79% by syringic acid. With syringic acid assisting, TvEG3 thermostability was improved, CtBglA thermostability was reduced. Syringic acid scarcely affected CtCBH. In hydrolysis system with the cellulases containing TvEG3, CtCBH, and CtBglA, the reducing sugar yield improved by 28.37% with syringic acid assisting. With the molecular dynamic simulation in syringic acid system, the backbone root-mean-square deviation (RMSD) and the residue root-mean-square fluctuation (RMSF) of TvEG3, CtCBH reduced, while the RMSD and RMSF of CtBglA increased. The reduction in the number of secondary structures, especially α-helix, caused the structure of CtBglA in the presence of syringic acid to collapse at high temperature. More secondary structures in TvEG3 and more α-helix in CtCBH in the presence of syringic acid make them more stable at high temperatures. These means syringic acid can stabilize TvEG3 and CtCBH structure, destabilize CtBglA structure at high temperature. In summary, this study not only provides insight into cellulase hydrolysis at high temperature with syringic acid assisting but also demonstrates the promoting mechanism of syringic acid. 相似文献
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27.
人β-珠蛋白基因主要在成年期的骨髓中表达,在胎儿肝,成年肝和K 562细胞中则处于关闭状态。凝胶电泳阻抑法分析发现,在人胎儿肝,成年肝及K 562细胞的核蛋白抽提物中存在着不同的与β-珠蛋白基因5'旁侧调控元件(-372到-194 bp)相结合的红系组织特异性的调控因子。竟争试验的结果表明,成年肝和K 562细胞中的调控因子与β-珠蛋白基因5'旁侧调控元件相互作用的方式具有一定的相似性,这两种细胞的调控因子既结合于负调控区(NCR 2)也结合于正调控区,说明两种细胞中β-珠蛋白基因的关闭机制可能是相似的。胎儿肝的核蛋白因子只结合于负调控区,推测在胎儿期存在独特的关闭机制。 相似文献
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29.
Physical map of the genome of Treponema pallidum subsp. pallidum (Nichols). 总被引:3,自引:2,他引:1 下载免费PDF全文
E M Walker J K Howell Y You A R Hoffmaster J D Heath G M Weinstock S J Norris 《Journal of bacteriology》1995,177(7):1797-1804
A physical map of the chromosome of Treponema pallidum subsp. pallidum (Nichols), the causative agent of syphilis, was constructed from restriction fragments produced by NotI, SfiI, and SrfI. These rare-cutting restriction endonucleases cleaved the T. pallidum genome into 16, 8, and 15 fragments, respectively. Summation of the physical lengths of the fragments indicates that the chromosome of T. pallidum subsp. pallidum is approximately 1,030 to 1,080 kbp in size. The physical map was constructed by hybridizing a variety of probes to Southern blots of single and double digests of T. pallidum genomic DNA separated by contour-clamped homogeneous electric field electrophoresis. Probes included cosmid clones constructed from T. pallidum subsp. pallidum genomic DNA, restriction fragments excised from gels, and selected genes. Physical mapping confirmed that the chromosome of T. pallidum subsp. pallidum is circular, as the SfiI and SrfI maps formed complete circles. A total of 13 genes, including those encoding five membrane lipoproteins (tpn47, tpn41, tpn29-35, tpn17, and tpn15), a putative outer membrane porin (tpn50), the flagellar sheath and hook proteins (flaA and flgE), the cytoplasmic filament protein (cfpA), 16S rRNA (rrnA), a major sigma factor (rpoD), and a homolog of cysteinyl-tRNA synthetase (cysS), have been localized in the physical map as a first step toward studying the genetic organization of this noncultivable pathogen. 相似文献
30.
Trypsin and forskolin decrease the sensitivity of L-type calcium current to inhibition by cytoplasmic free calcium in guinea pig heart muscle cells. 下载免费PDF全文
A key feature of trypsin action on ionic membrane currents including L-type Ca2+ current (ICa) is the removal of inactivation upon intracellular application. Here we report that trypsin also occludes the resting cytoplasmic free Ca2+ ([Ca2+]i)-induced inhibition of peak ICa in isolated guinea pig ventricular cardiomyocytes, using the whole-cell patch clamp in combination with the Fura-2 ratio-fluorescence technique. The effectiveness of trypsin to guard ICa against [Ca2+]i-induced inhibition was compared with that of forskolin, as cAMP-dependent phosphorylation had been suggested to confer protection against [Ca2+]i-induced inactivation. Intracellular dialysis of trypsin (1 mg/ml) augmented ICa by 7.2-fold, significantly larger than the threefold increase induced by forskolin (3 microM). Forskolin application after trypsin dialysis did not further enhance ICa. An increase in [Ca2+]i from resting levels (varied by 0.2, 10, and 40 mM EGTA dialysis) to submicromolar concentrations after replacement of external Na+ (Na(o)+) with tetraethylammonium (TEA+) resulted in monotonic inhibition of control ICa, elicited from a holding potential of -40 mV at 22 degrees C. AFter trypsin dialysis, however, ICa became less sensitive to submicromolar [Ca2+]i; the [Ca2+]i of half-maximal inhibition (K0.5, normally around 60 nM) increased by approximately 20-fold. Forskolin also increased the K0.5 by approximately threefold. These and accompanying kinetic data on ICa decay are compatible with a model in which it is assumed that Ca2+ channels can exist in two modes (a high open probability "willing" and a low open probability "reluctant" mode) that are in equilibrium with one another. An increase in [Ca2+]i places a larger fraction of channels in the reluctant mode. This interconversion is hindered by cAMP-dependent phosphorylation and becomes nearly impossible after tryptic digestion. 相似文献