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231.
研究了模拟生物泥浆法修复多环芳烃污染土壤.选择了几种从石油污染土壤中分离出来的真菌,研究它们对土壤内苯并[a]芘的降解,并研究了土壤内共存底物:菲、芘、邻苯二甲酸对苯并[a]芘降解的影响,及其之间的共代谢过程.结果表明,芘可以促进镰刀菌、毛霉对苯并[a]芘的降解,并认为这是共代谢作用的结果;菲也可以促进镰刀菌对苯并[a]芘的降解,但抑制了毛霉和青霉对苯并[a]芘的降解;而邻苯二甲酸对青霉和毛霉降解苯并[a]芘的过程均有抑制作用. 相似文献
232.
Aqueous extracts from various plant parts of fenugreek(3%)(aerial parts:leaves and stems(LS),roots(R),ground seeds(GS)and not ground seeds(NGS))and petroleum ether,ethyl acetate and methanolic fractions of the aerial parts were assayed to determine their antifungal potential against Botrytis cinerea,Fusarium graminearum,Alternaria sp.,Pythium aphanidermatum,and Rhizoctinia solani.All fenugreek plant parts showed antifungal potential and the magnitude of their inhibitory effects was species and plant parts d... 相似文献
233.
Julius J. Menn 《Journal of environmental science and health. Part. B》2013,48(3):383-389
Abstract The increased tempo of developments in biopesticides is closely related to the growing awareness and emphasis on integrated pest management (IPM) and sustainable agriculture. Several economic forecasting sources predict a growth rate for the biopesticide industry at 10 to 15% per annum over the next 10 years in contrast to a 1 to 2% growth rate for synthetic chemical pesticides. The greatest opportunity for biopesticides is in the insect pest management arena. This paper discusses several types of bioinsecticides that may have significant economic impact in the coming years. 相似文献
234.
通过对2012年4月~2013年3月九寨沟白水河不同断面水样分析,研究了《地表水环境质量标准》(GB3838—2002)中表1“地表水环境质量标准基本项目”的含量变化,并对铬、镉、硒、铜、汞、锌、铅、砷、氨氮、高锰酸盐指数进行污染状况评价。结果显示:镉、铜、汞、锌、铅均未检出;对铬、砷、硒、氨氮、高锰酸盐指数等有检出项目进行单项污染指数和内梅罗综合污染指数评价,水样中铬、砷、硒、氨氮、高锰酸盐指数全年监测平均浓度分别为0.294μg/L、0.024μg/L、0.084μg/L、0.187mg/L、0.695mg/L,用国家水质环境标准的一级标准,所有监测点位(PN〈1)未超标。从单因子污染指数来看,高锰酸盐指数在4月、7月、10月P,〉1,属于轻度污染,初步推断人为活动所致。通过本文的研究发现九寨沟水质依然较好,未受到污染。 相似文献
235.
丛枝菌根(arbuscular mycorrhizal, AM)真菌是生态系统地上地下部的重要连接体,对其群落结构特征的研究有助于菌种资源的发掘和生态系统的可持续发展.人类生产生活活动对全球环境带来了一系列的改变,如二氧化碳和臭氧浓度升高、氮沉降、增温及降水减少/增多等,全球环境变化对AM真菌群落结构的影响也引起了广泛关注.针对二氧化碳和臭氧浓度升高、增温、氮沉降和降水减少/增多等全球环境变化因子,总结其对AM真菌群落结构影响的国内外研究进展,探讨全球环境变化对AM真菌群落的可能作用途径.已有模拟全球环境变化实验研究主要集中于北半球的草原、农田和森林系统.大多研究发现二氧化碳和臭氧浓度升高未对AM真菌多样性产生不利影响,但使AM真菌群落结构显著分异.氮沉降和增温对AM真菌多样性的影响表现为降低、无显著影响和增加等多种情况,对AM真菌群落结构的影响也表现为未显著和显著分异,主要与模拟实验处理方式、增加幅度、土壤养分水平和生态系统类型等因素有关.降水减少未显著影响AM真菌群落结构和多样性,而降水增加使AM真菌群落结构发生显著分异.这些研究主要注重AM真菌群落结构和多样性如何改变等生态现象而潜在机理探索以及热带和南半球不同生态系统下的研究尚不足.另外,鉴于全球变化因子间的关联性,复合因子对AM真菌群落结构的影响值得重视.(图1表4参113) 相似文献
236.
In many semi-arid environments of Mediterranean ecosystems, white poplar (Populus alba L.) is the dominant riparian tree and has been used to recover degraded areas, together with other native species, such as
ash (Fraxinus angustifolia Vahl.) and hawthorn (Crataegus monogyna Jacq.). We addressed three main objectives: (1) to gain an improved understanding of some specific relationships between
environmental parameters and leaf-level physiological factors in these riparian forest species, (2) to compare the leaf-level
physiology of these riparian species to each other, and (3) to compare leaf-level responses within native riparian plots to
adjacent restoration plots, in order to evaluate the competence of the plants used for the recovery of those degraded areas.
We found significant differences in physiological performance between mature and young white poplars in the natural stand
and among planted species. The net assimilation and transpiration rates, diameter, and height of white poplar plants were
superior to those of ash and hawthorn. Ash and hawthorn showed higher water use efficiency than white poplar. White poplar
also showed higher levels of stomatal conductance, behaving as a fast-growing, water-consuming species with a more active
gas exchange and ecophysiological competence than the other species used for restoration purposes. In the restoration zones,
the planted white poplars had higher rates of net assimilation and water use efficiency than the mature trees in the natural
stand. We propose the use of white poplar for the rapid restoration of riparian vegetation in semi-arid Mediterranean environments.
Ash and hawthorn can also play a role as accompanying species for the purpose of biodiversity. 相似文献
237.
The effects of saprobe and arbuscular mycorrhizal (AM) fungi on growth, chlorophyll and N, P and K content of Eucalyptus globulus Labill. growing in soil contaminated by heavy metals in the presence or absence of Glycine max were investigated. Glomus mosseae and Glomus deserticola increased dry weight, shoot length, total N, P and K concentration and the quantity of chlorophyll in E. globulus shoots. The protection of Eucalyptus by AM fungi against the action of the heavy metals was more evident when this plant grew as an intercrop with soybean than as a monoculture. The presence of the saprobe fungi Fusarium concolor and Trichoderma koningii further enhanced shoot dry weight, N, P and K content of AM Eucalyptus. The co-inoculation of Eucalyptus with Glomus deserticola and T. koningii was more effective for Cd uptake. In addition, Glomus deserticola enhanced the amount of Pb absorbed by Eucalyptus plants. We showed that it is important to select the most efficient AM and saprobe fungi to stimulate plant growth in heavy-metal-contaminated soil and that the combination of both plays an important role in metal tolerance of Eucalyptus plants. 相似文献
238.
探讨了白腐菌射脉侧菌Phlebia radiateI-5-6对3种含氯量不同的二类物质———二苯并呋喃(DF)、2,7-二氯二苯并二(2,7-diCDD)和八氯二苯并呋喃(OCDF)的降解情况,并研究了不同培养条件对二降解的影响.在液体混合培养基中,在培养期内P.radiataI-5-6对3种二类物质的降解量分别为:DF>2,7-diCDD>OCDF;在培养的初始阶段,白腐菌对珠江江水/CEH漂白废水的加入需要一个适应期,然后开始降解这些污染物质.实验表明,在江水/CEH漂白废水处于一定浓度时,污染底物有更大的降解量;选择适当的培养基,可影响白腐菌对二类污染物的降解量.图3表3参17 相似文献
239.
百喜草茎叶发酵前后甲醇溶提物对离体条件下AM真菌的生长效应 总被引:7,自引:0,他引:7
发酵前后百喜草(Paspalum
notatum Fl 相似文献
240.
岩性对喀斯特灌丛土壤固氮菌与丛枝菌根真菌群落结构及丰度的影响 总被引:6,自引:2,他引:4
运用末端限制性片段长度多态性(terminal restriction fragment length polymorphism,T-RFLP)和荧光定量PCR(real-time PCR)法,检测喀斯特灌丛生态系统中不同岩性条件下土壤固氮菌与丛枝菌根(arbuscular mycorrhizal,AM)真菌群落结构与丰度的变化,揭示岩性对灌丛生态系统土壤中固氮菌与AM真菌群落结构与丰度的影响.结果表明不同岩性条件下,土壤固氮菌与AM真菌丰度存在显著差异,其中,固氮菌与AM真菌丰度在石灰岩土壤中最大,白云岩土壤中最小,石灰岩-白云岩夹层土壤介于两者之间;同样,不同岩性土壤中固氮菌与AM真菌群落结构存在显著性差异.土壤Olsen-P、有机碳、黏粒含量与固氮菌丰度存在显著正相关关系,而土壤全氮、黏粒含量与AM真菌丰度存在显著正相关.RDA分析表明,植物均匀度影响固氮菌群落组成结构,而植物均匀度、香农多样性指数及丰富度指数影响AM真菌群落组成结构.以上的研究结果表明:岩性主要是通过影响植物与土壤养分来影响土壤固氮菌与AM真菌群落组成结构及丰度. 相似文献