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101.
Short rotation plantations are often considered as holding vast potentials for future global bioenergy supply. In contrast to raising biomass harvests in forests, purpose‐grown biomass does not interfere with forest carbon (C) stocks. Provided that agricultural land can be diverted from food and feed production without impairing food security, energy plantations on current agricultural land appear as a beneficial option in terms of renewable, climate‐friendly energy supply. However, instead of supporting energy plantations, land could also be devoted to natural succession. It then acts as a long‐term C sink which also results in C benefits. We here compare the sink strength of natural succession on arable land with the C saving effects of bioenergy from plantations. Using geographically explicit data on global cropland distribution among climate and ecological zones, regionally specific C accumulation rates are calculated with IPCC default methods and values. C savings from bioenergy are given for a range of displacement factors (DFs), acknowledging the varying efficiency of bioenergy routes and technologies in fossil fuel displacement. A uniform spatial pattern is assumed for succession and bioenergy plantations, and the considered timeframes range from 20 to 100 years. For many parameter settings—in particular, longer timeframes and high DFs—bioenergy yields higher cumulative C savings than natural succession. Still, if woody biomass displaces liquid transport fuels or natural gas‐based electricity generation, natural succession is competitive or even superior for timeframes of 20–50 years. This finding has strong implications with climate and environmental policies: Freeing land for natural succession is a worthwhile low‐cost natural climate solution that has many co‐benefits for biodiversity and other ecosystem services. A considerable risk, however, is C stock losses (i.e., emissions) due to disturbances or land conversion at a later time.  相似文献   
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来源于胸腺双能祖细胞的胸腺髓质上皮细胞干细胞(medullary thymic epithelial cell stem cells, mTECSCs),在胸腺发育过程中的胚胎早期阶段既可能发生分化,又可能在胎儿出生后维持胸腺髓质上皮细胞(medullary thymic epithelial cells, mTECs)的再生,充分发挥组织干细胞的功能,确保终身外周血中央型记忆T细胞自身耐受。mTECSCs对胸腺的发育起着重要的作用和影响,得到很多学者的关注。现就mTECSCs对胸腺功能、生理性退化及胸腺衰老和免疫稳态等发育过程中的作用和影响作一概述,并探讨其在胸腺相关疾病治疗方面的潜在价值。  相似文献   
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Affinity precipitation is a bioseparation technique where the affinity ligand is coupled to a stimuliresponsive polymer. Stimuli-responsive polymers show abrupt, yet reversible, phase transition (precipitation) in response to a small change in an environmental parameter. The corresponding ligand conjugates can be used to co-precipitate and thereby capture and isolate target molecules from complex solutions such as culture supernatants and cell lysates. The approach is compatible with a 'discardibles only' type of downstream process and can be scaled over several orders of magnitude. This report discusses the set-up and development of affinity precipitation procedures, the related instrumentation and scale up, as well as applications for the isolation of proteins and polynucleotides.  相似文献   
105.
3种荒漠盐生植物根系及根毛形态特征的比较研究   总被引:3,自引:0,他引:3  
弋良朋  马健  李彦 《植物研究》2007,27(2):204-211
在水培条件下,针对梭梭、囊果碱蓬和钠猪毛菜3种荒漠盐生植物,研究它们苗期在不同盐浓度条件下根系和根毛形态的差异。结果表明:一定浓度的盐分可以促进3种盐生植物生长,但较高浓度的盐抑制其生长,特别是对根系生长的抑制作用更大。在同样盐浓度下,钠猪毛菜的生长最快,生物量也最大。在盐分浓度较低时,3种盐生植物的主根长和总根长都有所增加,与对照相比,囊果碱蓬增加的幅度较大,但高浓度的盐会抑制根系总长度的增加,其中囊果碱蓬较梭梭和钠猪毛菜抑制的程度轻。盐分对3种植物的根系平均直径没有显著的影响,但有减小的趋势。在水培条件下,梭梭和囊果碱蓬的根系上、中、下部分布的较均匀,而钠猪毛菜的根系中部比上部和下部有显著的增加,盐分对每种植物的根系的分布没有显著的影响。3种植物的根毛与根系生长环境中的盐浓度没有明显相关性;3种植物之间,根毛的长度和密度有显著差异。从根系和根毛的形态特征可以推断:囊果碱蓬比梭梭和钠猪毛菜具有较强的抗旱性和耐极薄能力;梭梭的耐盐能力较其它2种植物差,囊果碱蓬的耐盐性最强。  相似文献   
106.
目的报道1例发生在双外耳道的曲霉病。方法取双耳耵聍行真菌直接镜检,将耵聍接种到沙堡培养基培养,并对培养出的病原菌进行形态学鉴定和rDNA序列分析。结果耵聍真菌直接镜检阳性,耵聍在沙堡培养基25℃培养长出沙褐色菌落,28℃小培养后光镜及扫描电镜下见分生孢子头呈柱状,顶囊半球形,直径约10μm,小梗双层,两层小梗的长度无明显差别,平行紧密生长在顶囊的上2/3处。分生孢子呈球形,小而光滑。分生孢子梗壁光滑、透明。提取真菌总DNA用PCR方法扩增rDNA序列,测序后登录Gene Bank进行比对,该菌与土曲霉菌株ATCC1012 rDNA序列一致性达100%,鉴定为土曲霉。患者外用4%氟康唑注射液直接滴耳,2次/d,治疗1个月后痊愈。结论确诊1例双外耳道土曲霉病,局部应用氟康唑注射液治疗外耳道曲霉病有效。  相似文献   
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The ubiquitin proteasome system is involved in the regulation of most basic intracellular processes, and deregulation of this system can results in certain kinds of human diseases. Proteolytic core this system, the 20S proteasome, has been found in physiological fluids of both healthy humans and patients suffering from a variety of inflammatory, autoimmune, and neoplastic diseases. The concentration of these extracellular proteasomes has been found to correlate with the diseased state, being of a prognostic significance. The transport mechanisms and functions of these proteasomes, however, are largely unclear. Previous studies revealed that the transport of extracellular proteasomes may occur via microvesicles and exosomes, which led to the hypothesis that extracellular proteasomes are implicated in cell-to-cell communication process. Here we show that microvesicles and exosomes, two major known types of intercellular vehicles, contain no detectable proteasomes. Moreover, neither affinity purified nor naturally released into conditioned medium by donor cells 20S proteasomes could penetrate recipient HeLa cells. Taken together, these results suggest that extracellular proteasomes are unlikely to be involved in the cell-to-cell communication and that their release by cells serve other biological purposes.  相似文献   
110.
A combined pore blockage and cake filtration model was applied to the virus filtration of an Fc-fusion protein using the three commercially available filters, F-1, F-2, and F-3 in a range of buffer conditions including sodium-phosphate and tris-acetate buffers with and without 200 mM NaCl at pH 7.5. The fouling behaviors of the three filters for the feed solutions spiked with minute virus of mice were described well by this combined model for all the solution conditions. This suggests that fouling of the virus filters is dominated by the pore blockage mechanism during the initial stage of the filtration and transformed to the cake filtration mechanism during the later stage of the filtration. Both flux and transmembrane resistance can be described well by this model. The pore blockage rate and the rate of increase of protein layer resistance over blocked pores are found to be affected by membrane properties as well as the solution conditions resulting from the modulation of interactions between virus, protein, and membrane by the solution conditions.  相似文献   
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