991 resultados para 7136-140


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The effects of seasonal and regional differences in diet composition on the food requirements of Steller sea lions (Eumetopias jubatus) were estimated by using a bioenergetic model. The model considered differences in the energy density of the prey, and differences in digestive efficiency and the heat increment of feeding of different diets. The model predicted that Steller sea lions in southeast Alaska required 45–60% more food per day in early spring (March) than after the breeding season in late summer (August) because of seasonal changes in the energy density of the diets (along with seasonal changes in energy requirements). The southeast Alaska population, at 23,000 (±1660 SD) animals (all ages), consumed an estimated 140,000 (±27,800) t of prey in 1998. In contrast, we estimated that the 51,000 (±3680) animals making up the western Alaska population in the Gulf of Alaska and Aleutian Islands consumed just over twice this amount (303,000 [±57,500] t). In terms of biomass removed in 1998 from Alaskan waters, we estimated that Steller sea lions accounted for about 5% of the natural mortality of gadids (pollock and cod) and up to 75% of the natural mortality of hexagrammids (adult Atka mackerel). These two groups of species were consumed in higher amounts than any other. The predicted average daily food requirement per individual ranged from 16 (±2.8) to 20 (±3.6) kg (all ages combined). Per capita food requirements differed by as much as 24% between regions of Alaska depending on the relative amounts of low–energy-density prey (e.g. gadids) versus high–energy-density prey (e.g. forage fish and salmon) consumed. Estimated requirements were highest in regions where Steller sea lions consumed higher proportions of low–energy-density prey and experienced the highest rates of population decline

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Small indigenous fish species (SIS) are an important source of essential macro- and micronutrients that can play an important role in the elimination of malnutrition and micronutrient deficiencies in the populations of many South and Southeast Asian countries. Of the 260 freshwater fish species in Bangladesh, more than 140 are classified as SIS and are an integral part of the rural Bangladeshi diet. As many SIS are eaten whole, with organs and bones, they contain high amounts of vitamins and minerals, including calcium, and iron and zinc. Some SIS, such as mola, are also rich in vitamin A. SIS are often cooked with vegetables and a little oil, so they contribute to the food diversity of the rural poor.SIS are recognized as a major animal-source food group, contributing to improved food and nutrition security and livelihoods of the people of South and Southeast Asia. The purpose of this workshop is to bring together policy makers, extension agents, researchers, non-governmental and development organizations to share knowledge about small fish, their contribution to better nutrition, production technologies, and strategies for wider dissemination of pond culture and wetland based-production and conservation technologies. The workshop is expected to generate ideas for further research and development of sustainable technologies for production, management and conservation of SIS for the benefit of the people of Bangladesh as well as the South and Southeast Asian region.

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龙门河地区地处湖北省的西部,神农架的南坡,处于中亚热带向北亚热带过渡的地带。对其植物与植物群落的研究得到如下结果: 龙门河地区共有维管植物160科724属1737种,其中种了植物140科692属共1686种。其植物区系有显著的温带性,温带分布属共380属,占总属数的54.9%,这可能和该地区的地理位置,海拔及人为活动的影响有关,该地区的植物区系还具有古老性,特有属丰富特点,且有较多的珍稀濒危植物分布。 龙门河地区的植被共划分三个自然植被型共16个群系。在高海拔地区保存有较原始的落叶阔叶林,低海拔地区多为人为破坏后的次生类型。这些植被类型随环境条件的变化呈现较有规律的分布,依照其垂直分布的情况,可以将该地区植被划为三个带,即常绿阔叶林带低于海拔900(-1300)m;常绿落叶阔叶混交林位于海拔900(-1300)-600m之间;落叶阔叶林带在海拔1600(-1300)-2200m之间,无针叶林带在龙门河地区分布。应用TWINSPAN和DCA程序对各调查样地进行数量分类和排序结果说明,植物群落的分布与环境因子明显相关,但排序轴不能用海拔等单个的因子来解释。对各群落乔木层的Gleason丰富度指数,Shannon-Wiener指数及Pielou均匀度指数对比后发现,各种指数在不同的群落之间及不同海拔高度上没有明显的规律,这可能是由于人类活动混淆了群落成分及结构的结果。 锐齿槲栎林是神农架地区一种重要的落叶阔叶林,其分布广泛,保存较好。通过对锐齿槲栎种群大小结构的研究发现,中等大小的锐齿槲栎个体数量较多,幼苗与幼树的数量在不同样地间变化很大,其大小结构分布图中多有一定程度的缺失。锐齿槲栎种群多呈现聚集分布,不同的尺度下其聚集程序不同。在大多数尺度下,幼苗幼树的聚集程度比相同尺度下成体的聚集程序高。幼苗更新是锐齿槲栎更新的一种主要形式,其幼苗的出现与林窗的形成有密切的关系。在锐齿槲栎幼苗成长为幼树的过程中,同于种内与种间竞争的影响。导致了许多幼树的死亡。正是由于林窗形成等干扰因素的影响才使锐齿槲栎幼树得以进入群落上层。

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A normalized difference vegetation index (NDVI) has been produced and archived on a 1° latitude by 1° longitude grid between 55°S and 75°N. The many sources of data errors in the NDVI include cloud contamination, scan angle biases, changes in solar zenith angle, and sensor degradation. Week-to-week variability, primarily caused by cloud contamination and scan angle biases, can be minimized by temporally filtering the data. Orbital drift and sensor degradation introduces interannual variability into the dataset. These trends make the usefulness of a long-term climatology uncertain and limit the usefulness of the NDVI. Elimination of these problems should produce an index that can be used for climate monitoring.

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For the 6-year period 1987 through 1992, most of California suffered the worst or near-worst drought in a recorded history of about 140 years. Based on tree ring reconstructions, it may have been the worst in more than 400 years. The purpose of this paper is to review briefly the recent drought, then talk about the water supply situation this year, with some discussion of why the California drought is over hydrologically for most people; but for some, water supply problems continue.

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碳、氮不仅是生物体必需的营养元素,也是重要的生态元素。大气中温室气体C02、N2O等浓度的增加使得碳、氮的生物地球化学循环及其温室气体的减缓排放措施研究成为全球变化研究中的热点问题。 土壤是陆地生态系统的核心,是连接大气圈、水圈、生物圈、岩石圈的纽带;它是陆生生物赖以生存的物质基础,是陆地生态系统中物质与能量交换的重要场所,其在全球碳、氮循环中起着十分重要的作用。一方面,土壤有机碳和氮的含量与分布直接关系到生态系统的生产力和生态系统的规模,同时土壤有机碳和氮的转化与迁移又直接影响到温室气体的组成与含量。而土壤本身又是生态系统中生物与环境相互作用的产物。因此,研究土壤有机碳和氮的分布、转化及其对全球变化的响应对于正确理解碳、氮的生物地球化学循环及其对全球变化的响应制定应对策略具有重要意义。 全球变化的陆地样带是从机理上理解陆地生态系统对全球变化的响应,预测全球变化对陆地生态系统的可能影响,实现预警、调节和减少全球变化不良影响,科学地规划和管理陆地生态系统的有效平台。目前,国际地圈一生物圈计划(IGBP)基于不同地区全球变化驱动因素的不同以及全球变化的潜在反馈作用强度的不同,在全球4个关键地区共启动了15条IG8P陆地样带。以水分为主要驱动力的中国东北样带(NECT:Northeast China Transect)即为IGBP的陆地样带之一。 本文以中国东北样带为平台,基于2001年对中国东北样带科学考察所采土壤样品的实测结果和气候资料分析了土壤有机碳和氮的梯度分布及其与土壤、气候等因子之间的关系;借助C02浓度升高和不同土壤湿度的模拟试验探讨了土壤有机碳和氮对气候变化的响应;根据作物残体还田的长期定位试验和盆栽试验研究了作物残体还田对土壤有机碳和氮转化的影响,讨论了农田生态系统通过作物残体还田对减缓温室气体排放的效应。主要结果和结论如下: (1).样带表层土壤有机碳平均为22.3土4.93 g.kg-1,下层土壤有机碳平均为8.9±1.20 g.kg-1。样带表层土壤活性有机碳平均为3.52±0.881 g.kg-1,占表层土壤有机碳的13.1±0.78%;下层土壤活性有机碳平均为1.14±0.250g.kg-l,占下层土壤有机碳的10.9±0.79%。样带土壤活性有机碳与土壤有机碳之间呈极显著正相关关系(相关系数r=0.993,P<0.001)。 (2).不同生态类型土壤有机碳和活性有机碳含量不同。中国东北样带东部(经度126°~131°)为温带针阔混交林山地,植被种类极其丰富,地带性土壤为暗棕壤,并且多为自然土壤,土壤有机碳和活性有机碳含量较高。但由于采样区局部地理环境、植被结构及人类干扰程度的不同,土壤有机碳和活性有机碳含量变异较大,平均为61.9±13.84 g.kg-1和10. 88±2.236g. kg-1。样带中部(经度119°~126°)为松辽平原栎林草原、农田区和大兴安岭山地草甸草原区,属半湿润向半干旱过渡的气候。该区域主要土壤类型为黑土、黑钙土、盐化或碱化草甸土及风沙土,土壤沙化、碱化严重,土壤有机碳和活性有机碳含量明显降低,平均为10.5±1.97 g.kg-l和1. 35±0.327 g.kg-1。样带中西部(经度113°~119°)为内蒙古高原草甸草原和典型草原区域,具有典型的半干旱气候特征。该区地带性土壤为栗钙土,局部丘陵区分布黑钙土,土壤有机碳和活性有机碳含量为14.6±1.65 g.kg-1和2.07±0.342g.kg-1。样带西部(经度111°~113°)为内蒙古高原荒漠草原区域,地带性土壤为棕钙土,土壤较为贫瘠,其有机碳和活性有机碳含量最低,平均为7.99±1.51 g.kg-1和0.51±0.216 g.kg-1。从总的趋势看,样带表层土壤有机碳和活性有机碳的梯度分布趋势一致,都呈现出随经度降低而下降的趋势,局部因土壤退化而出现波动。 (3).样带土壤有机碳和活性有机碳与土壤全量氮、磷、硫、锌及有效氮、磷、钾、锰、锌等均呈显著或极显著相关关系,与土壤PH、容重、持水量及孔隙度也呈显著或极显著相关关系。土壤表层有机碳和活性有机碳与降水量之间具有正的相关关系,其相关系数为r=0.677(P<0.001)和r=0.712(P<0.001)。但下层土壤有机碳和活性有机碳与降水量之间没有显著的相关关系。 (4).样带下层土壤有机碳和活性有机碳与经度之间仍具有显著的相关关系(r=0.454,P=0.026; r=0.473,P=0.020)。样带下层土壤有机碳和活性有机碳的变异小于表层。不同的生态系统,下层土壤有机碳和活性有机碳与表层土壤有机碳和活性有机碳的比率不同。总的来看,土壤活性有机碳含量随深度的增加而下降的幅度大于土壤有机碳。 (5).短期培养条件下,CO2浓度升高及干旱胁迫下,土壤有机碳的变化不大,其变异系数为1.28%;相比较之下,土壤活性有机碳对气候变化比较敏感,其变异系数为29.67%。不同土壤湿度,土壤活性有机碳含量发生变异的幅度因CO2浓度升高而降低。 (6).样带土壤全氮和有效氮与经度呈极显著正相关,其相关系数分别是r=0.695 (P<0.001)和0.636(P<0.001)。土壤表层全氮和有效氮的梯度分布与土壤有机碳的分布基本一致:沿经度呈现东高西低的趋势,局部由于土壤退化而出现低谷。样带除东部山区外,其它各部分土壤有效氮都很低,成为其植被生长的限制因子之一。样带下层土壤全氮和有效氮的含量低于表层,但样带不同部位下层土壤全氮和有效氮下降的幅度不同。总的来看,土壤全氮的剖面分布和土壤有机碳相似,而土壤有效氮则有所不同。 (7).土壤全氮和有效氮是土壤生化环境中两个重要的因子。样带土壤全氮和有效氮和土壤有机碳、全磷、全硫、全锌、土壤活性碳、有效磷、有效钾、有效锰、有效锌、土壤容重、田间持水量土壤总孔度等因子均呈显著或极显著的相关关系。 (8).样带表层土壤全氮和有效氮与降雨量之间呈极显著的正相关关系,相关系数分别是0.682(P<0.001)和0.688(P<0.001)。而下层土壤全氮和有效氮与降雨量之间的没有显著的相关关系(r=0.241,P=0.256; r=0.366,P=0.079)。土壤有效氮占全氮的比例与年均温呈显著正相关关系(相关系数r=0.390,p=0.044)。 (9).短期培养试验中,CO2浓度加倍和不同土壤湿度对土壤全氮和有效氮的影响没有达到显著水平。整个试验中土壤全氮和有效氮的变异较小(变异系数分别是5.55%和3.84%),但仍能反映一定的变化趋势。 (10).玉米残体还田能够增加土壤氮素含量,减轻因其作为燃烧材料而造成的氮素损失和对大气的污染;玉米残体施入土壤,增加了土壤微生物氮含量,提高土壤氮活性,有利于土壤氮素养分的协调供应;玉米残体还田能够促进氮素从营养器官向籽粒中转移,提高氮素养分的利用效率。同时,玉米残体还田可以降低土壤NO3--N的累 积,减少肥料氮的损失4.7~5.6%。 (ll).根据国内外文献和我们连续10年作物残体还田的肥料长期定位试验及盆栽试验结果,从减缓CO2排放、增加土壤碳固存、提高土壤生产力入手,分析了农业生态系统作物残体还田的必要性与可行性,讨论了农田作物残体还田,增加土壤碳固存对于减缓CO2排放、提高土壤生产力的作用与意义。提倡作物残体因地制宜地归还土壤,但作物残体还田后土壤固存与减缓温室气体排放的潜力还需要进一步进行研究。

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EXTRACT (SEE PDF FOR FULL ABSTRACT): Measurements of spatial and temporal distributions of carbon dioxide concentration and carbon-13/carbon-12 ratio in the atmosphere suggest a strong biospheric carbon sink in terrestrial ecosystems. Quantifying the sink, however, has become an enormous challenge for Earth system scientists because of great uncertainties associated with biological variation and environmental heterogeneity in the ecosystems. This paper presents an approach that uses two driving parameters to bound terrestrial carbon sequestration associated with an increase in carbon dioxide concentration.

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Four feeds having different protein levels were separately tested on Tor khudree fry having an average length of 23.5 mm and weight 55 mg. The best average growth of 15.66 mg and 0.456 mm/day was obtained with Feed IV which comprised rice bran, ground nut oil cake, Acetes, wheat flour and mineral mix at the ratio of 1:1:1:0.7143:0.01428. These constitute 35.29% of proteins. The Feed II which comprised R.B + G.O.C. + prawn shell + wheat flour and mineral mix at a ratio of 1:1:1:0.7143:0.01428 contained 32.61% crude proteins. It provided a growth rate of 14.83 mg and 0.440 mm per day. The conversion rates were 38.258 and 37.776 for feeds IV and II respectively. Since Feed II is cheaper than Feed IV and provides almost equal growth rate, it can be used in the nurseries for intensive rearing of T. khudree fry.

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水青冈林是欧洲、北美东部和日本温带地区最主要的地带性植被之一。在我国,水青冈林仅分布在亚热带山地。因此,无论其物种组成,还是其群落特征都具有明显的区域特点。然而,有关我国水青冈林群落特征的研究还相对较少。大巴山是我国水青冈林分布最集中的地区之一,保存有较大面积的原始水青冈林。本文通过样方调查和植物群落数量特征统计分析的方法,研究了当地巴山水青冈群落和米心水青冈群落的物种多样性特征和群落结构与动态。主要结果如下: 巴山水青冈群落7个样地中,共记录到维管束植物77科、142属、217种。乔木层以壳斗科、杜鹃花科等科为主;灌木层以蔷薇科、忍冬科以及乔木树种的幼树为主;草本层以苔草属植物及普通鹿蹄草占优势。群落区系地理成分划分为16个类型及亚型。不同多样性指数的大小在不同层次有所不同。阳坡、半阳坡的物种多样性高于阴坡;不同层次的物种多样性与海拔、土壤特征的回归关系不同。群落建群种和乔木层主要树种的重要值与物种多样性主要表现为负相关关系。灌木层物种多样性主要受到环境因素的影响,而乔木层和草本层物种多样性更明显地受到环境因子和群落自身特征的双重影响。 巴山水青冈群落的乔木层成层明显。根据树冠高度分布可以将其划分为两个亚层,第一亚层高度约为19-27m,第二亚层高度约为5-9m。高位芽植物在群落生活型谱中所占比例最高,其次是地下芽植物、地面芽植物、一年生植物和地上芽植物。巴山水青冈的株数-高度、株数-胸径分布曲线均呈现两头高、中间低的格局,中间高度和中间径级的植株数量很少。 米心水青冈群落4个样地中,共记录到维管束植物74科、140属、197种。乔木层以壳斗科、蔷薇科等科为主;灌木层以蔷薇科、忍冬科等占优势;草本层主要由莎草科、菊科和百合科等科组成。群落的区系地理成分一共划分为18个类型及亚型。除物种丰度外,物种多样性各个指数的顺序均为草本层>乔木层>灌木层。乔木、灌木、竹子的多度和盖度(乔木的盖度以胸高面积代替)均与物种多样性密切相关。 根据树冠高度可将米心水青冈群落的乔木层划分为两个亚层,第一亚层高度约为16-22m,第二亚层高度约为5-9m。近半数乔木物种在群落中呈簇生状。生活型谱中,高位芽植物占优势,其次是地下芽植物、地面芽植物、一年生植物,没有地上芽植物。米心水青冈的实生幼苗十分匮乏,幼树以萌生树为主。其株数-高度、株数-胸径分布曲线呈递减趋势,幼龄个体数>中龄个体数>老龄个体数。

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The gonads of Otolithes cuvieri and Johnius elongatus are described in seven maturity stages. O. Cuvieri spawns once a year from April to September as evidence by ova diameter frequency distribution and GSI values. 50% maturity is attained at 210mm TL in males and 200mm TL in females. Fecundity ranged from 2387 to 104379 with a mean value of 33502. Log-Log relationship between fecundity and total lenght, body weight and ovary weight were determined. An overall sex ratio of 1.54:1.00 was unequal in favour of males. Johnius elongatus spawns twice a year from January-February to Aprile-May and from August to October as evidence by ova diameter frequency distribution and GSI values. 50% maturity is attained at 140-143mm TL in both sexes. Fecundity ranged from 4238 to 167669 with a mean value of 42818. Log-Log relationship between fecundity and total lenght, body weign and ovary weight were determined. An overall sex ratio of 1.00:1.20 was unequal in favour of females.

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Discolouration of sands and other marine substrata caused by benthic diatoms have been reported by Aleem (1950) Eaton and Moss (1975), Sullivan (1980), Maple (1983), Navarro (1983) and Wah and Wee (1988). However, this is for the first time such a phenomenon is being reported from a mangrove habitat of Karachi. It was caused by a pennate diatom Navicula cancellata Donkin.

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In appreciation of the pressing need for coordinated research in various aspects of fishery technology and for the overall development of fisheries industries in India, the Ministry of Food and Agriculture had decided to set up the Central Institute of Fisheries Technology. The Institute was established in 1957 at Cochin (Ernakulam). The research work at the Institute including its sub-stations and units is carried out in two wings: Craft and Gear Wing and Processing Wing. The third unit, the Extension Information and Statistics Wing, renders a service by functioning as a liaison between the research laboratories and the industry.