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931.
To explore the role of endophytic fungi in the decomposition of litter, the endophytic fungi Penicillium sp. strain CG2 (A), Fusarium flavum strain AY13 (B), and Talaromyces strain AJ14 (C) of Cunninghamia lanceolata were added to experimental pots in different forms (mycelium, sterilized fermentation broth, single fungus, and mixed fungi), and a control treatment (CK) was set up (no fungi added). At 10, 30, 60, 90, and 120 days after litter decomposition, a study on the decomposition dynamics of C. lanceolata litter under different treatments was performed. The results showed that the rate of leaf mass loss was the highest in the sterilized fermentation broth treatment A after 120 days, and that there was a significant difference (P < 0.05) between the mycelium treatment AC and the control treatment after 60 days (23.97% higher than the control group). On day 60, the litter carbon content from the mycelium treatment A was significantly different from that of the control (P < 0.05), showing a 16.74% lower value, whereas the litter carbon content of the mycelium treatment B was 21.13% lower than that of the control after 90 days. The nitrogen content of the litters of most mycelium and sterilized fermentation broth treatments was increased compared to that of the control group; there was significant difference (P < 0.05) between the sterilized fermentation broth treatment A and the control (P < 0.05), with a 17.05% higher value than that of the control. Similar to nitrogen, the litter phosphorus content also increased; there was a statistically significant difference between the mycelium treatment A and the control group, with treatment A showing a 46.67% higher value than the control group. The potassium content was 28% lower than that of the control group under the sterilized fermentation broth treatment C, a result that was significantly different from that of the control group (P < 0.05). After treatment for 90 days, the ratio of carbon to nitrogen was the lowest under the treatments with the mycelium A and the mycelium B, with values 25.54% and 25.11% lower than that of the control group, respectively, and a statistically significant difference from that of the control group (P < 0.05). The ratio of carbon to phosphorus was the lowest under the treatment with mycelium A after 60 days, and the result was significantly different from that of the control (P < 0.05), with a 43.05% lower value than the control. Thus, the three endophytic fungi had different effects on the mass loss rate and nutrient content of the litter. The Penicillium sp. strain CG2 (A) had statistically significant effects on the mass loss and nutrient content of leaf litter, which was within the range of fungi fertilizer reference values for the breeding of C. lanceolata. © 2018 Science Press. All rights reserved.  相似文献   
932.
Cytochrome P450 (CYP450s) is a type of heme-mercaptide protein superfamily, which is distributed widely in animals, plants, and microorganisms. CYP450s can oxidize and degrade many exogenous compounds such as drugs, herbicides, pesticides, some persistent organic pollutants, and so on. Based on recent researches, this paper reviews the nomenclature, classification, structure, and catalytic mechanism of P450 enzymes, and summarizes the research progresses in the metabolism and biodegradation of xenobiotics using P450 enzymes from microorganisms. The nomenclature and classification of the P450 gene superfamily mainly rely on the similarities of amino acid sequences. Although the structures of P450 are conserved, their recognition sites towards to the substrates are variable. This is also the structural basis for the catalytic diversities of P450 enzymes. Few P450 enzymes from bacteria and fungi can metabolize and degrade xenobiotics such as polycyclic aromatic hydrocarbons, herbicides, and so on. However, these P450 enzymes are less likely be used in practical applications because of their low catalytic activities. In the future, more P450 enzymes with high degradable efficiencies towards xenobiotics are needed to be obtained using multiple omics tools or modifying the existing P450 enzymes, to achieve the bioremediation of the environment. © 2018 Science Press. All rights reserved.  相似文献   
933.
Aquatic plants along the North Canal in Beijing were studied to identify the community structure of aquatic plants and vegetation index of biotic integrity (VIBI), and to provide scientific basis for the management and protection of urban rivers. Aquatic plants from 49 sampling sites along the North Canal were investigated during June 2015. Based on the field data, distributing range analysis, discriminatory power analysis, and correlation analysis were used stepwise to select core metrics from candidate metrics to establish the VIBI assessment system. The VIBI value of each sampling site was calculated as the average of the scaled values of all core metrics. Thirty-six aquatic plant species, including 14 hygrophytes, 13 emergent species, 6 submergent species, 2 floating-leaved species, and 1 floating species were collected. Species diversity was low in the North Canal, and no aquatic plants were recorded in 28 sampling sites, of which 9 sampling sites were dried up. Five sites were in excellent condition (VIBI > 0.60), 5 were good (0.60 > VIBI > 0.38), 7 were fair (0.38 > VIBI > 0.23), and 4 were poor (VIBI < 0.23). Based on the distribution of VIBI, Shahe River and Wenyu River upstream, and Fenghe River located in suburbs had a higher VIBI. Downstream tributaries, such as Qinghe River, Bahe River, and Liangshui River, had a lower VIBI. Correlation analysis showed that habitat quality, habitat complexity, and vegetation diversity along riparian zones were the important factors affecting VIBI along the North Canal, Beijing. Aquatic plants along the North Canal showed low species diversity owing to human disturbance. VIBI along tributaries with limited disturbance from human activities was higher; however, VIBI along tributaries disturbed by frequent human activities was lower. © 2018 Science Press. All rights reserved.  相似文献   
934.
Considerable research has indicated that heat shock proteins (Hsp), as molecular chaperones, carry out many biological activities of plant viruses by folding, transporting, translocating, assembling, or degrading client proteins. It is fundamental to develop resistant plant varieties and novel anti-viral agents by determining the interaction mechanisms between plant viruses and hosts. In this study, we first reviewed the classification, gene and protein structure, and biological significances. We then analyzed the assembling mechanism of Hsp70 or Hsp90, plant host cofactors, and RNA-dependent RNA polymerases in a viral replicase complex, and the mechanism of interaction and subcellular localization between Hsp70 and some plant virus components. We highlighted the mechanism of interaction and movement between Hsp70 and some plant virus components and the effect of Hsp expression of plant hosts or viruses. The results indicated where the mechanism occurred, the participating factors, energy supply, and material conversion between Hsps and the plant virus components for the course of the intracellular movement, local movement between cells, and long-distance movement, and showed the Hsp type specificity and the law of dynamic Hsp expression in plant hosts infected by viruses. The studies mainly focused on the two Hsp factors and the plant viral components, indicating limited coordination mechanisms among many nucleic acids, proteins, and polysaccharides in macromolecular protein complexes (MRC). Future research should analyze the translocation mechanism between client proteins and Hsps, the coordination mechanism between Hsps and MRC components, and the relation between MRC and the plant tissue structure. © 2018 Science Press. All rights reserved.  相似文献   
935.
实物型水资源资产负债表表式结构设计   总被引:7,自引:1,他引:6  
秦长海  甘泓  汪林  贾玲  游进军  周普 《自然资源学报》2017,32(11):1819-1831
论文在阐述资产负债表基本概念和原理的基础上,遵循会计恒等式、复式记账规则和权责发生制的记账基础,结合我国水资源管理的实际,提出了基于会计学的水权益实体水资源资产负债表表式结构和基于统计学、经济学的国家(地区)水资源资产负债表表式结构,从而实现能够反映水权益实体之间和经济体与环境之间关于水资源资产的债务债权关系的水资源资产核算,实现国家和行政区层面的水资源资产负债核算,为生态文明体系建设、自然资源资产核算、领导干部离任审计考核等提供必要的基础信息,也为进一步完善水资源资产负债表账户体系奠定基础。  相似文献   
936.
Cu2+和Cd2+对斑马鱼胚胎早期发育的联合毒性   总被引:3,自引:0,他引:3  
采用斑马鱼胚胎早期发育技术,测定Cu2+和Cd2+ 2种重金属对胚胎发育的毒性效应. 以24 h致死和72 h胚胎孵化抑制为毒性终点,2种重金属的剂量-效应曲线可用Weibull函数或Logit函数有效描述,由最佳拟合函数计算得出半数致死浓度(LC50)或半数效应浓度(EC50)为毒性效应的评价标准,2个毒性终点的重金属毒性大小顺序均为Cu2+>Cd2+. 应用浓度加和(CA)与独立作用(IA)2种模型,对72 h孵化抑制率的无观测效应浓度(NOEC)配比混合物的联合毒性作用进行了预测,通过混合物试验观测数据的95%置信区间与CA模型和IA模型预测的剂量-效应曲线进行比较分析表明,2种模型都可以有效预测斑马鱼胚胎孵化的联合毒性.   相似文献   
937.
运用3S技术,分析和探讨了豫北平原的内黄县1979—2003年的生态系统服务价值变化. 土地利用变化直接影响生态服务价值,该区25年间的生态系统服务价值变化显著,呈增长趋势.耕地和林地生态系统服务功能约占总服务价值的80%~90%. 结果表明:25年来内黄县研究区域的生态环境质量呈不断上升的态势,生态系统服务价值增加逾2.6×108元. 研究区内的林地、园地面积不断增加,增加的面积部分主要源自未利用地,而另一部分则是由耕地转变而来. 这一方面反映了人口增长和经济建设需求对生态环境变化的积极影响,另一方面也反映了研究区人民和相关部门重视生态环境,环保意识增强.   相似文献   
938.
论流域环境经济学   总被引:3,自引:1,他引:2  
流域系统具有整体性、地域分异性、污染的跨界单向外部性,面临着上下游和不同利益群体之间的利益冲突,使得传统环境经济学的理论和方法遇到了障碍.基于环境经济学在流域这一特殊研究对象的理论拓展和实践探索要求,提出了流域环境经济学发展的必要性,阐述了流域环境经济学的概念、内涵和理论基础,并初步构建了流域环境经济学框架和主要内容.研究认为,流域环境经济学是随着流域环境问题不断演化而产生的新研究领域,通过借鉴空间经济学、信息经济学、行为经济学和制度经济学等相关理论和方法,研究流域经济发展与环境保护之间的相互关系及其引发的人与人之间的关系,探索流域环境管理的机制设计和合理的环境经济政策手段,优化流域环境资源配置,实现流域经济增长与环境保护协调发展.   相似文献   
939.
我国典型流域镉水质基准研究   总被引:14,自引:7,他引:7  
对《我国淡水水生生物镉基准研究》一文推算的国家镉基准进行了修正,采用“重新计算法”推算了我国典型流域的镉生物基准,并以辽河上游的大伙房水库为试点,利用“水效应比值法”推算了区域镉基准. 结果表明:我国国家镉急性和慢性基准分别修正为1.81和0.21 μg/L;珠江流域、长江流域、太湖流域和辽河流域的镉急性基准分别为3.60,3.61,3.19和2.95 μg/L;镉慢性基准分别为1.39,0.06,0.04和0.04 μg/L;大伙房水库镉急性和慢性基准分别为2.72和0.05 μg/L. 流域及区域的镉急性基准值全部大于国家急性基准值,但大部分镉慢性基准都严于国家慢性基准.   相似文献   
940.
卤代脂肪烃鱼类急性毒性QSAR模型研究   总被引:3,自引:0,他引:3  
采用量子化学方法对27个卤代烃化合物进行结构优化和频率分析计算,提取其组成、拓扑、几何、静电和量子化学等结构参数描述符,运用启发式方法筛选最佳的结构参数,并建立黑头呆鱼急性毒性线性回归模型和非线性的支持向量机回归模型.模型方程表明卤代烃化合物导致黑头呆鱼的急性毒性可以应用KH1、IC0、EHOMO-LUMO三个参数解释,几何形状,疏水性能和反应活性是影响鱼类急性毒性的主要因素.两个模型均具有较强的模型稳定性、预测性和可信性,可用于准确预测卤代烃在鱼体内的急性毒性.  相似文献   
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