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51.
冀北承德地区土壤生源要素生态化学计量与空间分异特征   总被引:2,自引:0,他引:2  
土壤生源要素生态化学计量和空间分异特征对指导土地利用优化具有重要意义。以京津冀生态屏障区组成部分的承德市为研究区,采集1597件土壤样品,运用地统计学、全局Moran′s I指数、克里金插值和冗余分析等方法对承德全域主要土壤生源要素的空间分异特征及其影响因素进行了系统分析。结果表明,承德市表层土壤生源要素全钾(STK)、有机碳(SOC)、全氮(STN)、全磷(STP)和全硫(STS)平均含量分别为21.962 g/kg、18.826 g/kg、1.168 g/kg、0.587 g/kg和0.193 g/kg。垂向分布上STN、SOC和STS含量总体随深度增加而降低,STK和STP垂向分异受成土母质控制,高地质背景区STK和STP含量随深度增加逐渐升高。SOC和STN含量显著相关,空间耦合程度高,C:S与SOC含量显著正相关,C:N和C:S空间分布稳定,土壤生源要素的化学计量比主要受SOC含量控制。SOC空间自相关极显著,空间分异受结构性因素控制;STK空间自相关程度较高,分布稳定;STP空间自相关较显著,分布异质性较大;STS空间自相关相对最弱,受人为活动影响较明显。SOC和STN空间...  相似文献   
52.
宋伦  宋广军  吴金浩  杨国军  刘印  刘苏萱 《生态学报》2022,42(16):6838-6852
采用高通量测序-分子鉴定分级技术于2019年对长山群岛全海域真核微藻粒级结构进行了研究。结果发现,春季以中(47%)、小粒级(41%)为主,夏季以小(39%)、大粒级(38%)为主,秋季以大粒级(60%)为主,春、夏、秋季小、中、大粒级微藻比例为42:47:11、39:23:38、22:18:60。小粒级微藻优势种为细小微胞藻(Micromonas pusilla)、融合微胞藻(Micromonas commoda)和金牛微球藻(Ostreococcus tauri),中粒级微藻优势种为剧毒卡尔藻(Karlodinium veneficum)、大粒级微藻优势种为柔弱几内亚藻(Guinardia delicatula)、平野亚历山大藻(Alexandrium hiranoi)、多纹膝沟藻(Gonyaulax polygramma),综合整个真核微藻群落,春季由中粒径的剧毒卡尔藻占据优势(23.9%),夏季由大粒径的平野亚历山大藻占据优势(29.4%),秋季由大粒径的多纹膝沟藻占据优势(66.8%),有毒甲藻在该海域中占有绝对优势,贝毒累积风险较高,小粒径微藻中金牛微球藻和抑食金球藻曾在渤海引发褐潮,潜在威胁该海域贝类养殖业。虾夷扇贝对小粒级和大粒级微藻的选择性较低,对中粒级微藻的选择性较高,尤其对水体中优势种剧毒卡尔藻一直表现出主动选择。光学需氧量、无机氮、溶解氧、石油类及部分重金属Cd、As、Hg影响着整个长山群岛海域真核微藻粒级结构时空演变。  相似文献   
53.
甘肃河西走廊经过60多年的防沙治沙,在绿洲边缘形成了一条积沙带。其中,民勤绿洲边缘积沙带相对最典型、最完整。积沙带上的植被不仅是积沙带的形成因素,更是维持积沙带稳定的重要因素。从一定意义上说,积沙带上植被的健康状况,决定着积沙带的稳定性。为了分析积沙带上的植被状况,在民勤绿洲边缘积沙带上等间距设定了11条样线,通过60多个样方的植被调查,对民勤绿洲边缘积沙带上植物群落进行了健康序列分析。结果表明:民勤绿洲边缘积沙带上的植被普遍是不健康的,民勤绿洲边缘人工固沙林积沙带上的植被健康状况相对好于天然灌丛积沙带上的植被健康状况,乔灌混交林积沙带上的植被健康状况最差。民勤绿洲下游积沙带上的优势种植物柽柳严重枯死,健康状况最差,积沙带潜在风蚀活化的危险。农田弃耕后,沙区农田边缘防护林及其积沙带的保护是一个新的值得考虑的问题。  相似文献   
54.
Acute lung injury (ALI) is a potentially life-threatening, devastating disease with an extremely high rate of mortality. The underlying mechanism of ALI is currently unclear. In this study, we aimed to confirm the hub genes associated with ALI and explore their functions and molecular mechanisms using bioinformatics methods. Five microarray datasets available in GEO were used to perform Robust Rank Aggregation (RRA) to identify differentially expressed genes (DEGs) and the key genes were identified via the protein-protein interaction (PPI) network. Lipopolysaccharide intraperitoneal injection was administered to establish an ALI model. Overall, 40 robust DEGs, which are mainly involved in the inflammatory response, protein catabolic process, and NF-κB signaling pathway were identified. Among these DEGs, we identified two genes associated with ALI, of which the CAV-1/NF-κB axis was significantly upregulated in ALI, and was identified as one of the most effective targets for ALI prevention. Subsequently, the expression of CAV-1 was knocked down using AAV-shCAV-1 or CAV-1-siRNA to study its effect on the pathogenesis of ALI in vivo and in vitro. The results of this study indicated that CAV-1/NF-κB axis levels were elevated in vivo and in vitro, accompanied by an increase in lung inflammation and autophagy. The knockdown of CAV-1 may improve ALI. Mechanistically, inflammation was reduced mainly by decreasing the expression levels of CD3 and F4/80, and activating autophagy by inhibiting AKT/mTOR and promoting the AMPK signaling pathway. Taken together, this study provides crucial evidence that CAV-1 knockdown inhibits the occurrence of ALI, suggesting that the CAV-1/NF-κB axis may be a promising therapeutic target for ALI treatment.Subject terms: Cell signalling, Respiratory tract diseases  相似文献   
55.
Influenza A virus (IAV) preferentially infects conducting airway and alveolar epithelial cells in the lung. The outcome of these infections is impacted by the host response, including the production of various cytokines, chemokines, and growth factors. Fibroblast growth factor-9 (FGF9) is required for lung development, can display antiviral activity in vitro, and is upregulated in asymptomatic patients during early IAV infection. We therefore hypothesized that FGF9 would protect the lungs from respiratory virus infection and evaluated IAV pathogenesis in mice that overexpress FGF9 in club cells in the conducting airway epithelium (FGF9-OE mice). However, we found that FGF9-OE mice were highly susceptible to IAV and Sendai virus infection compared to control mice. FGF9-OE mice displayed elevated and persistent viral loads, increased expression of cytokines and chemokines, and increased numbers of infiltrating immune cells as early as 1 day post-infection (dpi). Gene expression analysis showed an elevated type I interferon (IFN) signature in the conducting airway epithelium and analysis of IAV tropism uncovered a dramatic shift in infection from the conducting airway epithelium to the alveolar epithelium in FGF9-OE lungs. These results demonstrate that FGF9 signaling primes the conducting airway epithelium to rapidly induce a localized IFN and proinflammatory cytokine response during viral infection. Although this response protects the airway epithelial cells from IAV infection, it allows for early and enhanced infection of the alveolar epithelium, ultimately leading to increased morbidity and mortality. Our study illuminates a novel role for FGF9 in regulating respiratory virus infection and pathogenesis.  相似文献   
56.
Almost all Echinococcus multilocularis (Em) infections occur in the liver of the intermediate host, causing a lethal zoonotic helminthic disease, alveolar echinococcosis (AE). However, the long non-coding RNAs (lncRNAs) expression profiles of the host and the potential regulatory function of lncRNA during Em infection are poorly understood. In this study, the profiles of lncRNAs and mRNAs in the liver of mice at different time points after Em infection were explored by microarray. Thirty-one differentially expressed mRNAs (DEMs) and 68 differentially expressed lncRNAs (DELs) were found continuously dysregulated. These DEMs were notably enriched in “antigen processing and presentation”, “Th1 and Th2 cell differentiation” and “Th17 cell differentiation” pathways. The potential predicted function of DELs revealed that most DELs might influence Th17 cell differentiation and TGF-β/Smad pathway of host by trans-regulating SMAD3, STAT1, and early growth response (EGR) genes. At 30 days post-infection (dpi), up-regulated DEMs were enriched in Toll-like and RIG-I-like receptor signaling pathways, which were validated by qRT-PCR, Western blotting and downstream cytokines detection. Furthermore, flow cytometric analysis and serum levels of the corresponding cytokines confirmed the changes in cell-mediated immunity in host during Em infection that showed Th1 and Th17-type CD4+ T-cells were predominant at the early infection stage whereas Th2-type CD4+ T-cells were significantly higher at the middle/late stage. Collectively, our study revealed the potential regulatory functions of lncRNAs in modulating host Th cell subsets and provide novel clues in understanding the influence of Em infection on host innate and adaptive immune response.  相似文献   
57.
Since the first human case of H5N1 avian influenza virus infection was reported in 1997, this highly pathogenic virus has infected hundreds of people around the world and resulted in many deaths. The ability of H5N1 to cross species boundaries, and the presence of polymorphisms that enhance virulence, present challenges to developing clear strategies to prevent the pandemic spread of this highly pathogenic avian influenza (HPAI) virus. This review summarizes the current understanding of, and recent research on, the avian influenza H5N1 virus, including transmission, virulence, pathogenesis, clinical characteristics, treatment and prevention.  相似文献   
58.
中国顶丝藻科新记录6种。密集旋体藻Audouinelledensa,亮管旋体藻A.hyalosiphoniae,小旋体藻A.parvula,羽状旋体藻A.plumosa,顶生旋体藻A.terminalis,图氏旋体藻A.thuretii。  相似文献   
59.
结合当今该领域的最新研究进展,综述了漆酶来源、结构、作用机制、介体系统及其在水相和非水相中的应用,以期为漆酶催化性能的进一步研究提供一定的借鉴和参考.  相似文献   
60.
能源植物甜高粱种质资源和分子生物学研究进展   总被引:13,自引:0,他引:13  
世界能源危机和全球生态环境日益恶化迫使人们急需开发可再生能源。生物质能源作为一种清洁的可再生能源已受到世界各国的高度重视。发展生物质能源的瓶颈之一是生物质原料不足。甜高粱的生物学产量和含糖量极高, 同时兼有耐旱、耐涝、耐贫瘠和耐盐碱等诸多优良特性, 被认为是最具开发潜力的能源植物之一。该文从甜高粱的分类学、生物学特点、种质资源评价、功能基因以及基因组信息等方面综述了甜高粱的最新研究进展和存在的问题, 并展望了甜高粱作为能源植物的研发前景。  相似文献   
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