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301.
孙成  江洪  周国模  杨爽  陈云飞 《生态学杂志》2013,24(10):2717-2724
2010年12月至2011年11月,利用涡度相关技术研究了我国亚热带(浙江)毛竹林生态系统的CO2通量,分析了毛竹林净生态系统交换量(NEE)、生态系统呼吸量(RE)和生态系统总交换量(GEE)的变化.结果表明: 研究期间,毛竹林各月的NEE均为负值,7月最大,为-99.33 g C·m-2,11月最小,仅-23.49 g C·m-2,其变化曲线呈双峰型.各月CO2通量平均日变化差异明显,9月最大,为-0.60 g CO2·m-2·s-1,1月最小,为-0.30 g CO2·m-2·s-1,且在NEE正负转换的时间点上呈明显的季节变化特征;全年RE呈单峰型变化,夏季最高、冬季最低,夜间RE与土壤温度呈极显著正相关.全年NEE、RE和GEE分别为-668.40、932.55和-1600.95 g C·m-2·a-1,NEE占GEE的41.8%.与其他生态系统相比,毛竹林的固碳能力极强.  相似文献   
302.
2012年雨季(4-9月),收集广州市城市区、近郊区和远郊区森林公园的PM2.5样品,测定PM2.5质量浓度,分析了其中SO42-、NO3-、NO2-、Cl-、F-、Na+、NH4+、Ca2+、K+、Mg2+ 共10种水溶性无机离子含量.结果表明:帽峰山(远郊)、大夫山(近郊)、火炉山(城区)PM2.5质量浓度的日变化分别为17.2~66.5、19.4~156.3、21.8~161.7 μg·m-3,平均值分别为44.4、49.8、55.9 μg·m-3.SO42-、Na+和NH4+为水溶性无机离子主要组分,其中,SO42-含量最大,并从城区至郊区呈递减趋势.固定源对3个森林公园空气中SO2和NOx的贡献大于移动源,从城区至远郊呈递减趋势,说明机动车对城区空气中SO2和NOx的贡献大于近郊和远郊森林公园.采样期间,海盐对大夫山空气PM2.5中水溶性组分的贡献最大,其中K+受海盐的影响超过其他元素.NH4+当量浓度远小于SO42-和NO3-的当量浓度,中和度远小于1,反映PM2.5酸性较强,且从远郊至城区PM2.5粒子酸性呈增强趋势.  相似文献   
303.
A monohalomethane-producing enzyme, S-adenosyl-L-methionine-dependent halide ion methyltransferase (EC 2.1.1.-) was purified from the marine microalga Pavlova pinguis by two anion exchange, hydroxyapatite and gel filtration chromatographies. The methyltransferase was a monomeric molecule having a molecular weight of 29,000. The enzyme had an isoelectric point at 5.3, and was optimally active at pH 8.0. The Km for iodide and SAM were 12 mM and 12 μM, respectively, which were measured using a partially purified enzyme. Various metal ions had no significant effect on methyl iodide production, suggesting that the enzyme does not require metal ions. The enzyme reaction strictly depended on SAM as a methyl donor, and the enzyme catalyzed methylation of the I-,Br-, and Cl- to corresponding monohalomethanes and of bisulfide to methyl mercaptan.  相似文献   
304.
Hen lysozyme modified with histamine (HML) and Japanese quail lysozyme (JQL) were treated with immobilized metal ion affinity chromatography to analyze the states of their imidazole groups. When Ni(II) was used as the metal ion immobilized, JQL was strongly retained in a Ni(II)-chelating Sepharose column, while hen lysozyme and HML were hardly retained in the same column. All of these lysozymes have a histidine imidazole group at the 15th position, while JQL has an additional histidine imidazole group at the 103rd position and HML has an additional imidazole group covalently attached to Asp101. Thus, I concluded that the imidazole group at the 103rd position of JQL is exposed to the solvent and recognized by the metal ion, but that the imidazole group attached to Asp101 in HML is localized to a hydrophobic region and not recognized by the metal ion.  相似文献   
305.
Annexin A4 (Anx4) is a cytosolic calcium-binding protein with four repeat domains, each containing one calcium-binding site (CBS). The protein interacts with the phospholipid membrane through the CBS-coordinated calcium ion, although the role of each CBS in the calcium-dependent association is unclear. To determine the role of each CBS, 15 CBS-abolished variants were produced in various combinations by substitution of a calcium-liganding residue on each CBS by Ala. Various mutant combinations produced different influences on calcium-dependent membrane-binding behavior and on the sodium-dependent dissociation of membrane-bound Anx4. Our data suggest the interaction of Anx4 with the lipid membrane consists of strong and weak interactions. CBSs I and IV mediate formation of strong interactions, while CBSs II and III are important for weak interactions. We also suggest Anx4 binds the lipid membrane through CBSs I and IV in the cytoplasmic fluids.  相似文献   
306.
307.
槲皮素具有诱导细胞自噬、抑制肿瘤细胞增殖等抗癌功能,但其诱导细胞自噬的分子机制还不太清楚. 本文通过激光共聚焦显微镜观察槲皮素对Hep G2细胞自噬的影响; Fluo-3 AM和Cyto-IDTM Green Detection Reagent染色标记, 流式细胞术测定了槲皮素对Hep G2细胞内游离钙离子浓度[Ca2+]i 及Ca2+螯合剂BAPTA-AM对自噬水平的影响. 探讨了槲皮素诱导人肝癌细胞 Hep G2自噬过程中[Ca2+]i的变化. 结果表明, 在槲皮素较低浓度范围内(0 ~ 50 μg/mL), 可明显抑制Hep G2细胞增殖, 并以剂量依赖方式诱导细胞自噬. 同时发现,槲皮素刺激Hep G2细胞可使[Ca2+]i明显增加, 进而促进自噬. 而当胞内Ca2+螯合剂 BAPTA-AM存在时, 细胞的自噬水平受到一定的抑制. 这些结果表明,细胞内[Ca2+]i的升高可促进自噬, [Ca2+]i 的降低可能会抑制自噬. Hep G2细胞自噬与细胞内游离钙离子浓度的变化有关系.  相似文献   
308.
Extracellular acidification occurs not only in pathological conditions such as inflammation and brain ischemia, but also in normal physiological conditions such as synaptic transmission. Acid-sensing ion channels (ASICs) can detect a broad range of physiological pH changes during pathological and synaptic cellular activities. ASICs are voltage-independent, proton-gated cation channels widely expressed throughout the central and peripheral nervous system. Activation of ASICs is involved in pain perception, synaptic plasticity, learning and memory, fear, ischemic neuronal injury, seizure termination, neuronal degeneration, and mechanosensation. Therefore, ASICs emerge as potential therapeutic targets for manipulating pain and neurological diseases. The activity of these channels can be regulated by many factors such as lactate, Zn2+, and Phe-Met-Arg-Phe amide (FMRFamide)-like neuropeptides by interacting with the channel’s large extracellular loop. ASICs are also modulated by G protein-coupled receptors such as CB1 cannabinoid receptors and 5-HT2. This review focuses on the physiological roles of ASICs and the molecular mechanisms by which these channels are regulated. [BMB Reports 2013; 46(6): 295-304]  相似文献   
309.
A mathematical model based on a dynamic metabolic flux balance (DMFB) is developed for a process of fed‐batch fermentation of Bordetella pertussis. The model is based on the maximization of growth rate at each time interval subject to stoichiometric constraints. The model is calibrated and verified with experimental data obtained in two different bioreactor experimental systems. It was found that the model calibration was mostly sensitive to the consumption or production rates of tyrosine and, for high supplementation rates, to the consumption rate of glutamate. Following this calibration the model correctly predicts biomass and by‐products concentrations for different supplementation rates. Comparisons of model predictions to oxygen uptake and carbon emission rates measurements indicate that the TCA cycle is fully functional. © 2013 American Institute of Chemical Engineers Biotechnol. Prog., 29: 520–531, 2013  相似文献   
310.
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