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931.
Bt作物杀虫蛋白在农田土壤中残留动态的研究进展 总被引:1,自引:0,他引:1
综述了转Bt作物释放的杀虫蛋白在农田土壤中的残留动态.重点阐述了:①土壤中Bt毒素蛋白的检测方法;②Bt毒素在土壤中残留、富集与降解动态;③Bt毒素蛋白与土壤中具有表面活性颗粒的吸附结合规律;④土壤中Bt毒素的杀虫活性.国内外研究结果表明,转基因植物释放到土壤中的Bt毒素蛋白迅速与土壤中具有表面活性的颗粒吸附并紧密结合,降低生物降解,但结合后的Bt毒素结构没有改变,致使毒素蛋白在土壤中长期滞留并保持其杀虫活性,可能会对土壤中非靶标生物造成不良影响.因此深入、系统地研究和评价转Bt作物释放的Bt毒素对土壤生态系统的风险迫在眉睫.参50 相似文献
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934.
基于模糊综合评价法的乐清湾湿地生态安全评价 总被引:1,自引:0,他引:1
基于湿地生态安全的相关理论,以2007年的Landsat TM遥感影像为基础,结合实地调查数据,采用模糊综合评价法和熵值赋权法,从结构功能、可持续利用能力和动态变化3方面着手,构建了湿地生态安全评价指标体系,探讨了一种定性与定量相结合的湿地生态安全评价方法,并对温州乐清湾湿地进行了评价。结果表明乐清湾湿地生态系统在整体上属于亚健康状态,分析其原因,主要表现在人口增长快、大面积围垦湿地、地质灾害频发及环境污染等方面。该项研究可为湿地资源的开发规划与管理提供参考。 相似文献
935.
不同钝化剂对微碱性土壤镉、镍形态及小麦吸收的影响 总被引:19,自引:13,他引:6
通过大田试验,研究生物炭、褐煤、鸡粪对土壤Cd、Ni形态变化及小麦植株对Cd、Ni富集吸收的影响.结果表明,生物炭可提高土壤pH,褐煤降低土壤pH,均未达显著水平,鸡粪可显著降低孕穗期、成熟期土壤pH,分别降低0. 23和0. 20个单位.生物炭、鸡粪和褐煤单一施用对可交换态Ni含量降低不显著,而对可交换态Cd降低效果显著,小麦不同生长期均以褐煤2%处理降幅最大,分别为30. 50%、43. 34%和31. 20%.小麦地上部、地下部重金属Cd、Ni的含量均有所下降,且降幅随钝化剂添加量的增加而增加,不同生长期均以褐煤2%处理小麦根部Cd含量降幅最大,分别达38. 35%、58. 00%和50. 20%.孕穗期、成熟期均以褐煤2%处理小麦根部Ni含量降幅最大,分别达41. 33%和51. 35%. 3种钝化剂均可降低微碱性土壤中Cd和Ni的有效性,且对镉的钝化效果优于镍;均可有效降低不同时期小麦植株不同器官中Cd和Ni的含量.对于重金属镉,3种钝化剂同等剂量水平下,小麦器官中镉的降低效果依次为褐煤>生物炭>鸡粪. 相似文献
936.
基于组合赋权法的宁波市城市生态系统质量评价 总被引:1,自引:0,他引:1
为评价宁波市城市生态系统质量状况,在建立城市生态系统质量指数(UEQI)评价模型的基础上,首先由不同等级指标值线性拟合得到的标准化函数进行原始数据的标准化,然后根据变异系数法与层次分析法相结合的组合赋权法确定指标权重,最后对宁波市9个评价区的城市生态系统质量进行评价对比。结果表明,2006年宁波市城市生态系统质量属于一般水平(UEQI=64),其中宁海县城市生态系统质量最高(UEQI=70),其次为余姚市(UEQI=69)、奉化市(UEQI=68)、主城区(UEQI=67)、北仑区(UEQI=65)、镇海区(UEQI=62)、慈溪市(UEQI=61)和象山市(UEQI=59),而鄞州区的城市生态系统质量最差(UEQI=53)。 相似文献
937.
火电厂温排水对湿地生态系统的影响分析——以江苏射阳港电厂为例 总被引:1,自引:0,他引:1
在对电厂周围湿地生态系统进行多次现场调查的基础上,运用二维温度场和水动力场耦合求解的温排水模型预测电厂温排水的影响范围,结果是:电厂温排水将引起排放口附近海域最大影响面积为6.69 km2,最小为0.16 km2.分析发现,电厂温排水的温升对滩地植被、浮游生物、底栖动物、鱼类均不会造成明显的危害,相反在水温较低的季节,会提高海洋生物的丰度和生物多样性指数,并为保护区鸟类及其它物种提供丰富的饵料.但余氯对排放海域中的浮游生物有致命的威胁,对其他物种无明显影响,但存在一定的潜在影响.本文研究可以为电厂温排水的环境影响评价、温排水排放的有效管理及湿地生态系统的保护提供一些理论依据. 相似文献
938.
Effects of near‐future ocean acidification,fishing, and marine protection on a temperate coastal ecosystem
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Understanding ecosystem responses to global and local anthropogenic impacts is paramount to predicting future ecosystem states. We used an ecosystem modeling approach to investigate the independent and cumulative effects of fishing, marine protection, and ocean acidification on a coastal ecosystem. To quantify the effects of ocean acidification at the ecosystem level, we used information from the peer‐reviewed literature on the effects of ocean acidification. Using an Ecopath with Ecosim ecosystem model for the Wellington south coast, including the Taputeranga Marine Reserve (MR), New Zealand, we predicted ecosystem responses under 4 scenarios: ocean acidification + fishing; ocean acidification + MR (no fishing); no ocean acidification + fishing; no ocean acidification + MR for the year 2050. Fishing had a larger effect on trophic group biomasses and trophic structure than ocean acidification, whereas the effects of ocean acidification were only large in the absence of fishing. Mortality by fishing had large, negative effects on trophic group biomasses. These effects were similar regardless of the presence of ocean acidification. Ocean acidification was predicted to indirectly benefit certain species in the MR scenario. This was because lobster (Jasus edwardsii) only recovered to 58% of the MR biomass in the ocean acidification + MR scenario, a situation that benefited the trophic groups lobsters prey on. Most trophic groups responded antagonistically to the interactive effects of ocean acidification and marine protection (46%; reduced response); however, many groups responded synergistically (33%; amplified response). Conservation and fisheries management strategies need to account for the reduced recovery potential of some exploited species under ocean acidification, nonadditive interactions of multiple factors, and indirect responses of species to ocean acidification caused by declines in calcareous predators. 相似文献
939.
Use of monitoring data to support conservation management and policy decisions in Micronesia
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Jensen Reitz Montambault Supin Wongbusarakum Trina Leberer Eugene Joseph Wayne Andrew Fran Castro Brooke Nevitt Yimnang Golbuu Noelle W. Oldiais Craig R. Groves Willy Kostka Peter Houk 《Conservation biology》2015,29(5):1279-1289
Adaptive management implies a continuous knowledge‐based decision‐making process in conservation. Yet, the coupling of scientific monitoring and management frameworks remains rare in practice because formal and informal communication pathways are lacking. We examined 4 cases in Micronesia where conservation practitioners are using new knowledge in the form of monitoring data to advance marine conservation. These cases were drawn from projects in Micronesia Challenge jurisdictions that received funding for coupled monitoring‐to‐management frameworks and encompassed all segments of adaptive management. Monitoring in Helen Reef, Republic of Palau, was catalyzed by coral bleaching and revealed evidence of overfishing that led to increased enforcement and outreach. In Nimpal Channel, Yap, Federated States of Micronesia (FSM), monitoring the recovery of marine food resources after customary restrictions were put in place led to new, more effective enforcement approaches. Monitoring in Laolao Bay, Saipan, Commonwealth of the Northern Mariana Islands, was catalyzed by observable sediment loads from poor land‐use practices and resulted in actions that reduced land‐based threats, particularly littering and illegal burning, and revealed additional threats from overfishing. Pohnpei (FSM) began monitoring after observed declines in grouper spawning aggregations. This data led to adjusting marine conservation area boundaries and implementing market‐based size class restrictions. Two themes emerged from these cases. First, in each case monitoring was conducted in a manner relevant to the social and ecological systems and integrated into the decision‐making process. Second, conservation practitioners and scientists in these cases integrated culturally appropriate stakeholder engagement throughout all phases of the adaptive management cycle. More broadly, our study suggests, when describing adaptive management, providing more details on how monitoring and management activities are linked at similar spatial scales and across similar time frames can enhance the application of knowledge. 相似文献
940.
Europe is a region of relatively high population density and productive agriculture subject to substantial government intervention under the Common Agricultural Policy (CAP). Many habitats and species of high conservation interest have been created by the maintenance of agricultural practices over long periods. These practices are often no longer profitable, and nature conservation initiatives require government support to cover the cost for them to be continued. The CAP has been reformed both to reduce production of agricultural commodities at costs in excess of world prices and to establish incentives for landholders to adopt voluntary conservation measures. A separate nature conservation policy has established an extensive series of protected sites (Natura 2000) that has, as yet, failed to halt the loss of biodiversity. Additional broader scale approaches have been advocated for conservation in the wider landscape matrix, including the alignment of agricultural and nature conservation policies, which remains a challenge. Possibilities for alignment include further shifting of funds from general support for farmers toward targeted payments for biodiversity goals at larger scales and adoption of an ecosystem approach. The European response to the competing demands for land resources may offer lessons globally as demands on rural land increase. 相似文献