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991.
韩柳  刘威 《中国微生态学杂志》2020,32(11):1309-1313
目的探究微生态制剂联合莫西沙星序贯疗法对老年慢性阻塞性肺疾病(COPD)合并下呼吸道感染患者肠道菌群及免疫功能的影响。方法选取2016年2月到2019年2月我院收治的98例老年COPD合并下呼吸道感染患者为研究对象,按照随机数字表法分为观察组和对照组各49例。对照组患者采用莫西沙星序贯法进行治疗。观察组患者采用微生态制剂联合莫西沙星治疗。检测两组患者下呼吸道感染病原菌及肠道微生物变化,T淋巴细胞亚群(CD4+细胞,CD8+细胞,CD4+/CD8+)水平,并评价患者临床效果和并发症情况。结果治疗后两组患者CAT评分(8.23±3.64、10.41±4.08)和mMRC评分(1.35±0.82、1.77±0.61)均低于治疗前(23.01±4.47、22.87±5.26、2.79±0.54、3.04±0.74),且观察组下降幅度大于对照组,差异具有统计学意义(均P<0.05)。治疗后两组患者下呼吸道感染主要病原菌中肺炎克雷伯菌、大肠埃希菌、铜绿假单胞菌、肺炎链球菌检出率均低于治疗前,但组间比较差异无统计学意义(均P>0.05)。治疗后两组患者肠道双歧杆菌、嗜酸乳杆菌、粪肠球菌数量均高于治疗前,大肠埃希菌数量均低于治疗前,且观察组改善情况优于对照组,差异有统计学意义(均P<0.05)。治疗后两组患者CD4+细胞、CD4+/CD8+均高于治疗前,且观察组高于对照组,差异有统计学意义(均P<0.05)。CD8+细胞数量治疗前后及组间比较差异无统计学意义(均P>0.05)。治疗后观察组患者腹胀(18.4%)、胃潴留(20.4%)发生率均低于对照组(36.7%、38.8%),差异有统计学意义(均P<0.05)。两组患者应激性溃疡发生率(20.4%、24.5%)差异无统计学意义(P>0.05)。结论微生态制剂联合莫西沙星序贯疗法治疗老年COPD合并下呼吸道感染能促进患者肠道微生态平衡,调节免疫功能,进而改善患者病情。  相似文献   
992.
微小RNAs(miRNAs)是一类内源性小型非编码RNA,可通过调控靶基因表达参与大多数生物学过程。近年来,miRNAs在肝癌发生发展进程中相关作用机制的研究逐渐深入,miRNAs作为其中关键调控因子和主要参与者,已成为肝癌早期诊断、靶向治疗和预后评估中的一个关键靶标。本文着重强调miRNAs在肝癌发生发展、多重耐药性中的作用以及作为肝癌潜在治疗靶点的价值,并就miRNAs在肝癌中的功能、分子作用通路以及应用三方面的相关研究进展进行综述。  相似文献   
993.
近年来,研究表明氢分子具有广泛的生物学效应,饮用富氢水(hydrogen-rich water,HRW)是其主要的摄取方法,但目前对于水相中氢气浓度检测方法的研究甚少。为了建立适用于测定水相中氢气浓度的检测方法,利用纯水氢气发生器制备饱和富氢水。然后,利用氢气微电极直接测定水相中的氢气浓度,结果表明,在不同氢气浓度范围内(0~1.620 0 mg·L-1和0~0.202 5 mg·L-1),氢气浓度与微电极信号值均呈现良好的线性关系,方法检出限(method detection limit,MDL)为4.3×10-3 mg·L-1。同时,采用顶空方式将水相中的氢气转移到气相中,通过气相色谱法测定氢气的浓度,结果表明,在不同氢气浓度范围内(0~1.620 0 mg·L-1和0~0.202 5 mg·L-1),氢气浓度与气相色谱峰面积均具有良好的线性关系,MDL为8.7×10-4 mg·L-1。研究结果表明,氢微电极法和气相色谱法均可用于水相中氢气浓度的精确定量,即成功建立了采用氢气微电极及顶空气相色谱测定水相中氢气含量的检测方法。  相似文献   
994.
[目的] 了解洞庭湖区入侵植物分布规律及其危害,对洞庭湖区入侵植物区系、种类组成、类型、生活型和原产地进行较为深入的研究。[方法] 通过实地调查、采集标本、查阅资料进行统计分析。[结果] 洞庭湖区外来入侵植物共有86种,隶属于24科64属,原产于美洲的有51种,占总数的58.6%,双子叶植物有21科53属73种,单子叶植物仅有5科12属13种,草本植物共84种,占97.6%,洞庭湖区入侵植物科的区系类型主要为世界广布;入侵植物属的区系类型以泛热带分布和世界广布为主。[结论] 洞庭湖区入侵植物种类较多、适应性强、繁殖速度快、繁殖能力强、传播途径多样、区系成分复杂且危害严重,应根据入侵现状对洞庭湖区外来入侵植物采取相应的的防治措施。  相似文献   
995.
汉江中下游浮游植物群落结构及水质评价   总被引:1,自引:0,他引:1       下载免费PDF全文
买占  李诗琦  郭超  李为  殷战  刘家寿 《生物资源》2020,42(3):271-278
南水北调中线工程调水后,汉江中下游水华频发引起社会关注。为掌握调水后汉江中下游浮游植物的群落结构特征,于2017年11月、2018年2月、4月和8月在汉江中下游的8个断面对浮游植物进行了定量调查。调查结果显示:共鉴定浮游植物163种,群落组成以硅藻门(Bacillariophyta)、绿藻门(Chlorophyta)为主,其次是蓝藻门(Cyanophyta)。浮游植物优势种主要为硅藻门的梅尼小环藻(Cyclotella meneghiniana)、颗粒直链藻最窄变种(Melosira granulata var.)、变异直链藻(Melosira varians)、颗粒直链藻(Melosira granulata),隐藻门的卵形隐藻(Cryptomonas ovata),蓝藻门的弯曲颤藻(Oscillatoria sp.)和伪鱼腥藻(Pseudoanabaena sp.),且都有较高的优势度。浮游植物密度和生物量的季节变化范围分别为0. 33×106cells/L~1. 82×106cells/L和0. 49 mg/L~7. 38 mg/L。基于Shannon-Weaver多样性指数和Pielou均匀度指数以及优势种评价法对汉江中下游的水质进行评价,判断汉江中下游水质整体处于中污状态。  相似文献   
996.
Litter decomposition, a fundamental process of nutrient cycling and energy flow in freshwater ecosystems, is driven by a diverse array of decomposers. As an important component of the heterotrophic food web, meiofauna can provide a trophic link between leaf‐associated microbes (i.e., bacteria and fungi)/plant detritus and macroinvertebrates, though their contribution to litter decomposition is not well understood. To investigate the role of different decomposer communities in litter decomposition, especially meiofauna, we compared the litter decomposition of three leaf species with different lignin to nitrogen ratios in litter bags with different mesh sizes (0.05, 0.25, and 2 mm) in a forested stream, in China for 78 days. The meiofauna significantly enhanced the decomposition of leaves of high‐and medium‐ quality, while decreasing (negative effect) or increasing (positive effect) the fungal biomass and diversity. Macrofauna and meiofauna together contributed to the decomposition of low‐quality leaf species. The presence of meiofauna and macrofauna triggered different aspects of the microbial community, with their effects on litter decomposition varying as a function of leaf quality. This study reveals that the meiofauna increased the trophic complexity and modulated their interactions with microbes, highlighting the important yet underestimated role of meiofauna in detritus‐based ecosystems.  相似文献   
997.
Mass loss and nutrient release during litter decomposition drive biogeochemical cycling in terrestrial ecosystems. However, the relationship between the litter decomposition process and the decomposition stage, precipitation, and litter quality has rarely been addressed, precluding our understanding of how litter decomposition regulates nutrient cycling in various ecosystems and their responses to climate change. In this study, we measured mass loss as well as carbon and nutrient releases during the decomposition of 16 types of leaf litter under three precipitation treatments over 12 months in a common garden experiment (i.e., using standardized soil and climatic conditions). Sixteen types of leaves were divided into three functional groups (evergreen, deciduous, and herbaceous). The objectives were to understand the effects of decomposition stages and precipitation regimes on litter decomposition and to examine the relationship between this effect and chemical properties. The mass loss and release of nitrogen and potassium were significantly higher in the 6‐ to 12‐month stage of decomposition (high temperature and humidity) than in the 0‐ to 6‐month stage. Phosphorus was relatively enriched in evergreen leaves after 6 months of decomposition. The rates of mass loss and nutrient release were significantly greater in herbaceous than in deciduous and evergreen leaves. Increasing precipitation from 400 to 800 mm accelerated mass loss and potassium release but decreased phosphorus release in the 0‐ to 6‐month stage of decomposition. These results highlighted the contribution to and complexity of litter chemical properties in litter decomposition.  相似文献   
998.
The relationship between biodiversity and productivity has stimulated an increasing body of research over the past decades, and this topic still occupies a central place in ecology. While most studies have focused on biomass production in quadrats or plots, few have investigated the scale‐dependent relationship from an individual plant perspective. We present an analysis of the effects of biodiversity (species diversity and functional diversity) on individual tree growth with a data set of 16,060 growth records from a 30‐ha temperate forest plot using spatially explicit individual tree‐based methods. A significant relationship between species diversity and tree growth was found at the individual tree level in our study. The magnitude and direction of biodiversity effects varies with the spatial scale. We found positive effects of species diversity on tree growth at scales exceeding 9 m. Individual tree growth rates increased when there was a greater diversity of species in the neighborhood of the focal tree, which provides evidence of a niche complementarity effect. At small scales (3–5 m), species diversity had negative effects on tree growth, suggesting that competition is more prevalent than complementarity or facilitation in these close neighborhoods. The results also revealed many confounding factors which influence tree growth, such as elevation and available sun light. We conclude that the use of individual tree‐based methods may lead to a better understanding of the biodiversity‐productivity relationship in forest communities.  相似文献   
999.
Analysis of genetic diversity and population structure among Quercus fabri populations is essential for the conservation and utilization of Q. fabri resources. Here, the genetic diversity and structure of 158 individuals from 13 natural populations of Quercus fabri in China were analyzed using genotyping‐by‐sequencing (GBS). A total of 459,564 high‐quality single nucleotide polymorphisms (SNPs) were obtained after filtration for subsequent analysis. Genetic structure analysis revealed that these individuals can be clustered into two groups and the structure can be explained mainly by the geographic barrier, showed gene introgression from coastal to inland areas and high mountains could significantly hinder the mutual introgression of genes. Genetic diversity analysis indicated that the individual differences within groups are greater than the differences between the two groups. These results will help us better understand the genetic backgrounds of Q. fabri.  相似文献   
1000.
Nitrogen (N) is one of the most important factors limiting plant productivity, and N fixation by legume species is an important source of N input into ecosystems. Meanwhile, N resorption from senescent plant tissues conserves nutrients taken up in the current season, which may alleviate ecosystem N limitation. N fixation was assessed by the 15N dilution technique in four types of alpine grasslands along the precipitation and soil nutrient gradients. The N resorption efficiency (NRE) was also measured in these alpine grasslands. The aboveground biomass in the alpine meadow was 4–6 times higher than in the alpine meadow steppe, alpine steppe, and alpine desert steppe. However, the proportion of legume species to community biomass in the alpine steppe and the alpine desert steppe was significantly higher than the proportion in the alpine meadow. N fixation by the legume plants in the alpine meadow was 0.236 g N/m2, which was significantly higher than N fixation in other alpine grasslands (0.041 to 0.089 g N/m2). The NRE in the alpine meadows was lower than in the other three alpine grasslands. Both the aboveground biomass and N fixation of the legume plants showed decreasing trends with the decline of precipitation and soil N gradients from east to west, while the NRE of alpine plants showed increasing trends along the gradients, which indicates that alpine plants enhance the NRE to adapt to the increasing droughts and nutrient‐poor environments. The opposite trends of N fixation and NRE along the precipitation and soil nutrient gradients indicate that alpine plants adapt to precipitation and soil nutrient limitation by promoting NRE (conservative nutrient use by alpine plants) rather than biological N fixation (open sources by legume plants) on the north Tibetan Plateau.  相似文献   
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