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131.
Riboprinting was used to determine the relationships among strains belonging to 15 species of the genusKluyveromyces. The small subunit ribosomal RNA gene (SSU rDNA) was amplified using the Polymerase Chain Reaction (PCR) and subjected to a battery of nine restriction enzymes. Similarity coefficients between strains were calculated based on shared and unique restriction fragments. Cluster analysis revealed three major groups that generally correlated with previously reported relationships based on other molecular data. Variations in SSU rDNA restriction fragments may be used for differentiation of theKluyveromyces strains included in this study.The U.S. Government right to retain a non-exclusive, royalty free licence in and to any copyright is acknowledged. 相似文献
132.
木本植物木质部空穴和栓塞化研究(综述) 总被引:10,自引:0,他引:10
申卫军 《热带亚热带植物学报》1999,7(3):257-266
木本植物木质部空穴和栓塞化现象的发现至今已近80年历史,国外学者对此做了较多的研究,国内此方面的研究极少。木质部空穴和栓塞化研究是木本植物体内水分传输研究的前沿所在,不同学者在不同地区对不同材料的研究结果各异,争议颇多。本文对这一研究方向近年来的资料作了概括和总结,包括栓塞化现象的发现、检测方法、诱因及形成机理、木质部栓塞化同输水结构间的关系等方面。 相似文献
133.
Jessica Royles Jérôme Ogée Lisa Wingate Dominic A. Hodgson Peter Convey Howard Griffiths 《Global Change Biology》2012,18(10):3112-3124
Signy Island, maritime Antarctic, lies within the region of the Southern Hemisphere that is currently experiencing the most rapid rates of environmental change. In this study, peat cores up to 2 m in depth from four moss banks on Signy Island were used to reconstruct changes in moss growth and climatic characteristics over the late Holocene. Measurements included radiocarbon dating (to determine peat accumulation rates) and stable carbon isotope composition of moss cellulose (to estimate photosynthetic limitation by CO 2 supply and model CO 2 assimilation rate). For at least one intensively 14C‐dated Chorisodontium aciphyllum moss peat bank, the vertical accumulation rate of peat was 3.9 mm yr?1 over the last 30 years. Before the industrial revolution, rates of peat accumulation in all cores were much lower, at around 0.6–1 mm yr?1. Carbon‐13 discrimination (Δ), corrected for background and anthropogenic source inputs, was used to develop a predictive model for CO 2 assimilation. Between 1680 and 1900, there had been a gradual increase in Δ, and hence assimilation rate. Since 1800, assimilation has also been stimulated by the changes in atmospheric CO 2 concentration, but a recent decline in Δ (over the past 50–100 years) can perhaps be attributed to documented changes in temperature and/or precipitation. The overall increase in CO 2 assimilation rate (13C proxy) and enhanced C accumulation (14C proxy) are consistent with warmer and wetter conditions currently generating higher growth rates than at any time in the past three millennia, with the decline in Δ perhaps compensated by a longer growing season. 相似文献
134.
Precipitation is a key factor in the water cycle. At the same time, precipitation is the focus of study in meteorology and
climatology, ecological environmental assessment, non-point source pollution and so on. Understanding the temporal-spatial
variation and the corresponding factors of precipitation has become the object of hydrology and environmentology. Based on
the annual precipitation data, we analyzed the spatial distribution of precipitation in Sichuan Province in China as well
as the temporal-spatial variation and the corresponding influence factors involved. The results show that the amount of precipitation
was abundant, but the spatial distribution was not consistent with it and the amount of precipitation gradually declined from
the south-east to the north-west in Sichuan Province, China. Moreover, the spatial distribution was different throughout the
years. The result of correlation analysis indicated that elevation, temperature and air pressure were three key factors affecting
the amount and distribution of precipitation, and the correlation coefficients were −0.56, 0.38 and 0.45 respectively. Notably,
the relationship between the slope of topography and precipitation were significantly negative and the average correlation
coefficient was −0.28. 相似文献
135.
Proctor David N.; Shen Peter H.; Dietz Niki M.; Eickhoff Tamara J.; Lawler Lori A.; Ebersold Ethan J.; Loeffler Darrell L.; Joyner Michael J. 《Journal of applied physiology》1998,85(1):68-75
It is currentlyunclear whether aging alters the perfusion of active muscles duringlarge-muscle dynamic exercise in humans. To study this issue, directmeasurements of leg blood flow (femoral vein thermodilution) andsystemic arterial pressure during submaximal cycle ergometry (70, 140, and 210 W) were compared between six younger (Y; 22-30 yr) and sixolder (O; 55-68 yr) chronically endurance-trainedmen. Whole body O2uptake, ventilation, and arterial and femoral venous samples forblood-gas, catecholamine, and lactate determinations were alsoobtained. Training duration (min/day), estimated leg muscle mass(dual-energy X-ray absorptiometry; Y, 21.5 ± 1.2 vs. O, 19.9 ± 0.9 kg), and blood hemoglobin concentration (Y, 14.9 ± 0.4 vs. O, 14.7 ± 0.2 g/dl) did not significantly differ (P > 0.05) between groups. Leg bloodflow, leg vascular conductance, and femoral venousO2 saturation were ~20-30%lower in the older men at each work rate (allP < 0.05), despite similarlevels of whole body O2 uptake. At210 W, leg norepinephrine spillover rates and femoral venous lactateconcentrations were more than twofold higher in the older men.Pulmonary ventilation was also higher in the older men at 140 (+24%)and 210 (+39%) W. These results indicate that leg blood flow andvascular conductance during cycle ergometer exercise are significantlylower in older endurance-trained men in comparison to their youngercounterparts. The mechanisms responsible for this phenomenon and theextent to which they operate in other groups of older subjects deservefurther attention. 相似文献
136.
137.
Zhang K Zang TZ Yang W Sun Y Mu Y Liu JQ Shen JC Luo GM 《The Journal of biological chemistry》2006,281(18):12516-12520
Substrate binding and the subsequent reaction are the two principal phenomena that underlie the activity of enzymes, and many enzyme-like catalysts were generated based on the phenomena. The single chain variable region fragment of antibody 2F3 (scFv2F3) was elicited against hapten GSH-S-DN2phBu, a conjugate of glutathione (GSH), butyl alcohol, and 1-chloro-2,4-dinitrobenzene (CDNB); it can therefore bind both GSH and CDNB, the substrates of native glutathione S-transferases (GSTs). It was shown previously that there is a serine residue that is the catalytic group of GST in the CDR regions of scFv2F3 close to the sulfhydryl of GSH. Thus, we anticipated that scFv2F3 will display GST activity. The experimental results showed that scFv2F3 indeed displayed GST activity that is equivalent to the rat-class GST T-2-2 and exhibited pH- and temperature-dependent catalytic activity. Steady-state kinetic studies showed that the Km values for the substrates are close to those of native GSTs, indicating that scFv2F3 has strong affinities for the substrates. Compared with some other GSTs, its kcat value was found to be low, which could be caused by the similarity between the GSH-S-DN2phBu and the reaction product of GSH and CDNB. These results showed that our approach to imitating enzymes is correct, which is that an active site may catalyze a chemical reaction when a catalytic group locates beside a substrate-binding site of a receptor. It is important to consider product inhibition in hapten design in order to obtain a mimic with a high catalytic efficiency. 相似文献
138.
探讨缺氧环境下,白细胞介素8(Interleukin-8,IL-8)对人骨髓间充质干细胞(Human bone marrow mesenchymal stem cells,hBMSC)增殖和自噬能力的影响以及机制。在缺氧模型下,未进行刺激的hBMSC为缺氧对照组;以100μmol/L人IL-8蛋白刺激的MSC为IL-8组;若先添加50μmol/L MK2206(Akt蛋白抑制剂)培养30 min,然后再添加100μmol/L IL-8则为Akt抑制剂组,在正常条件下培养的MSC为正常对照组。利用Ed U细胞增殖实验、TUNEL细胞凋亡实验、Western blotting或ELISA等实验分别检测各组MSC细胞Ed U标记阳性细胞的数目、细胞凋亡、自噬蛋白(LC-3)和Akt/STAT3等蛋白的表达。相对于缺氧对照组和Akt抑制剂组,IL-8明显提高hBMSC增殖和细胞自噬,并降低hBMSC的凋亡率,IL-8组hBMSC的Akt、STAT3和VEGF等蛋白表达增高。结果表明,缺氧环境下,IL-8通过Akt-STAT3通路发挥对MSC的保护作用,对保护MSC抗缺血缺氧性损伤,促进MSC在再生医学中应用具有重要意义。 相似文献
139.
Qu Z Yang Z Cui N Zhu G Liu C Xu H Chanchevalap S Shen W Wu J Li Y Jiang C 《The Journal of biological chemistry》2000,275(41):31573-31580
Ion channels play an important role in cellular functions, and specific cellular activity can be produced by gating them. One important gating mechanism is produced by intra- or extracellular ligands. Although the ligand-mediated channel gating is an important cellular process, the relationship between ligand binding and channel gating is not well understood. It is possible that ligands are involved in the interactions of different protein domains of the channel leading to opening or closing. To test this hypothesis, we studied the gating of Kir2.3 (HIR) by intracellular protons. Our results showed that hypercapnia or intracellular acidification strongly inhibited these channels. This effect relied on both the N and C termini. The CO(2)/pH sensitivities were abolished or compromised when one of the intracellular termini was replaced. Using purified N- and C-terminal peptides, we found that the N and C termini bound to each other in vitro. Although their binding was weak at pH 7.4, stronger binding was seen at pH 6.6. Two short sequences in the N and C termini were found to be critical for the N/C-terminal interaction. Interestingly, there was no titratable residue in these motifs. To identify the potential protonation sites, we systematically mutated most histidine residues in the intracellular N and C termini. We found that mutations of several histidine residues in the C but not the N terminus had a major effect on channel sensitivities to CO(2) and pH(i). These results suggest that at acidic pH, protons appear to interact with the C-terminal histidine residues and present the C terminus to the N terminus. Consequentially, these two intracellular termini bound to each other through two short motifs and closed the channel. Thus, a novel mechanism for K(+) channel gating is demonstrated, which involves the N- and C-terminal interaction with protons as the mediator. 相似文献
140.