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831.
Successful growth of a tree is the result of combined effects of biotic and abiotic factors. It is important to understand how biotic and abiotic factors affect changes in forest structure and dynamics under environmental fluctuations. In this study, we explored the effects of initial size [diameter at breast height (DBH)], neighborhood competition, and site condition on tree growth, based on a 3‐year monitoring of tree growth rate in a permanent plot (120 × 80 m) of montane Fagus engleriana–Cyclobalanopsis multiervis mixed forest on Mt. Shennongjia, China. We measured DBH increments every 6 months from October 2011 to October 2014 by field‐made dendrometers and calculated the mean annual growth rate over the 3 years for each individual tree. We also measured and calculated twelve soil properties and five topographic variables for 384 grids of 5 × 5 m. We defined two distance‐dependent neighborhood competition indices with and without considerations of phylogenetic relatedness between trees and tested for significant differences in growth rates among functional groups. On average, trees in this mixed montane forest grew 0.07 cm year?1 in DBH. Deciduous, canopy, and early‐successional species grew faster than evergreen, small‐statured, and late‐successional species, respectively. Growth rates increased with initial DBH, but were not significantly related to neighborhood competition and site condition for overall trees. Phylogenetic relatedness between trees did not influence the neighborhood competition. Different factors were found to influence tree growth rates of different functional groups: Initial DBH was the dominant factor for all tree groups; neighborhood competition within 5 m radius decreased growth rates of evergreen trees; and site condition tended to be more related to growth rates of fast‐growing trees (deciduous, canopy, pioneer, and early‐successional species) than the slow‐growing trees (evergreen, understory, and late‐successional species).  相似文献   
832.
本研究旨在以自由基清除作用和促巨噬细胞增殖作用为导向,对小球藻热水提取物(CPE)的分离纯化产物进行活性跟踪,以确定CPE的主要功能成分。采用高压热水提取、Sevag除蛋白、乙醇沉淀和超滤的方法得到CPE粗多糖,然后通过DEAE52离子交换层析柱和Sephadex G-100对CPE粗多糖组分进一步分离纯化。研究结果表明,通过上述方法对CPE进行分离纯化,得到3种高活性成分PS-1-4-2、PS-1-3-2和PS-2-3-3,经凝胶渗透色谱GPC分析得知其分子质量分别为3.97×10~4 Da、2.28×10~4 Da和4.1×10~3 Da。活性跟踪结果表明,CPE能够清除自由基并促进巨噬细胞Ana-1细胞生长,主要是由于其多种活性组分共同发挥作用,清除自由基作用的功能成分主要集中于PS-1-3、PS-1-4、PS-2-3和PS-2-4,促Ana-1细胞增殖作用的功能成分主要集中于PS-1-3、PS-1-4和PS-2-3。本研究确立了CPE主要功能成分的活性筛选手段,并获得3种新型功能成分,可用于指导小球藻高附加值产品的开发,从而进一步推动微藻能源的产业化进程,实现"高附加值微藻产品、微藻能源与微藻固碳"一体化的示范作用。  相似文献   
833.
Helicobacter pylori (H pylori) is known as one of the most common infectious pathogens, with high infection and recurrence rates worldwide. The prevalence of H pylori is up to 90% in developing countries, while the annual recurrence rate is much higher than that in developed countries. Recurrence can occur either by recrudescence or reinfection. Compared with reinfection, the time window for recrudescence is generally shorter, followed by the recurrence of H pylori–associated diseases in the short‐term. Many factors are involved in the H pylori reinfection, such as the prevalence of H pylori infection, living conditions and economic development, health conditions and so forth. Previous studies focused less on H pylori recrudescence. Therefore, the influencing factors for H pylori recrudescence needed further exploration. This study reviewed the recrudescence of H pylori infection and its influencing factors.  相似文献   
834.
目的 探讨结核杆菌感染与恶性肿瘤的关系。方法 采用多聚酶链反应(PCR) 技术检测两种恶性肿瘤组织中结核杆菌DNA(TB- DNA) 。结果41 例恶性肿瘤组织中检出TB- DNA 阳性患者8 例,占19.5 % ,且TB-DNA 阳性患者肿瘤发病部位基本与结核病的好发部位一致。结论 结核杆菌感染可能与一些恶性肿瘤存在特殊相关性。  相似文献   
835.
根据酪氨酸激酶EphB2受体的碱基序列,用PCR方法扩增其结合配体的关键结构域N端球状区,定向克隆到融合表达质粒载体rRSET A中,转化大肠杆菌JM109(DE3)。阳性克隆经IPTG诱导,由T7启动子调控表达了氨基端带6个连续组氨酸残基的融合蛋白。电泳分析表明,表达的融合蛋白主要以包含体的形式存在,约占细菌总蛋白的14%。Western印迹确证,利用Ni-NTA金属螯合亲和色谱法在变性条件下对  相似文献   
836.
盲蛛血细胞分类研究   总被引:1,自引:0,他引:1  
应用显微镜与相差显微镜相结合技术,对蛛形纲Arachnida广腰亚纲Latigastra、盲蛛目Opilioes、长奇盲蛛科Phalangiidae的盲蛛Opilio sp.血细胞进行分类,它有原血细胞浆细胞、颗粒细胞、类绛色细胞、小球细胞、类球形 细胞和足细胞等7种类型。  相似文献   
837.
838.
A novel endophytic actinomycete, designated strain NEAU-J3T, was isolated from soybean root (Glycine max (L.) Merr) and characterized using a polyphasic approach. Phylogenetic analysis based on 16S rRNA gene sequences suggested that strain NEAU-J3T fell within the family Micromonosporaceae. The strain was observed to form an extensively branched substrate mycelium, which carried non-motile oval spores with a smooth surface. The cell walls of strain NEAU-J3T were determined to contain meso-diaminopimelic acid and galactose, ribose and glucose were detected as whole-cell sugars. The major menaquinones were determined to be MK-9(H4) and MK-9(H6). The phospholipids detected were phosphatidylcholine and phosphatidylethanolamine. The major cellular fatty acids were determined to be C16:0, C18:1 ω9c, C18:0, C17:0, C17:1 ω7c, anteiso-C17:0, C16:1 ω7c and C15:0. The DNA G + C content was 62.5 mol%. On the basis of the morphological and chemotaxonomic characteristics, phylogenetic analysis and characteristic patterns of 16S rRNA gene signature nucleotides, strain NEAU-J3T is considered to represent a novel species of a new genus within the family Micromonosporaceae, for which the name Wangella harbinensis gen. nov., sp. nov. is proposed. The type strain of Wangella harbinensis is strain NEAU-J3T (=CGMCC 4.7039T = DSM 45747T).  相似文献   
839.
Vibrational optical coherence elastography (OCE) is a promising tool for extracting the mechanical property of soft tissue. Purpose of this study is focusing on settling the optimal frequency range for vibrational OCE with evenly distributed stress filed. A finite element model of 2% agar phantom was built by ANSYS with a vibration stimulation frequency range from 200 to 3000 Hz. Practical experiments were carried out for cross‐validation with the same frequencies and sample. Lateral and horizontal stress filed distributions under different frequencies were mathematically evaluated by coefficient of variance and degree of linearity. Results from simulation and practical experiment cross‐validated each other and 1000 Hz was set as the maximum ideal frequency for vibrational OCE, while the minimum frequency is set by theoretical calculation with a result of 250 Hz. An ex vivo biological sample was utilised to testify performance of vibrational OCE with excitation frequencies in and out of concluded optimal range, which showed that stiffness was better mapped out in optimal frequency range.  相似文献   
840.
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