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排序方式: 共有302条查询结果,搜索用时 31 毫秒
1.
土壤允许流失量的确定是一个非常复杂而又必须解决的问题,它关系到水土保持措施的布设和土壤的可持续利用。然而,发育在不同母质上的土壤,其土壤的最大允许流失量差异很大,确定这一值的依据也各不相同。在岩成土壤地区,母岩风化剥蚀速率的大小直接影响土壤的发育。是确定土壤允许流失量、分析人类加速水土流失的重要依据之一。选长江三峡黄陵背斜段风化花岗岩土壤为研究对象,根据剥蚀沉积相关原理,通过恢复古地理环境及时代,计算出新生代以来本区花岗岩的平均风化剥蚀速率为16.97mm/ka.最大剥蚀速率为49.56。又根据区内太平溪流域的泥沙资料,算出了当地现代的剥蚀速率,多年平均为297.7mm/ka,最小值为31.5mm/ka,而水利部颁布的当地土壤允许流失量为200t/km^2,a,折合为76.9mm/ka,二者相差近1.5—4.5倍。基于此。提出了确定土壤允许流失量必须参考母岩风化剥蚀速率的新观点。  相似文献   
2.
苏州河氨化菌分布及生理生化研究   总被引:2,自引:0,他引:2  
对苏州河氨化菌进行了生态调查,并对其进行了生理生化分析。研究结果表明,苏州河水体中氨化菌数量普遍较高,上游至下游氨化菌数量逐步增多。氨化菌数量与水体中总氮和氨氮呈正比,与硝酸盐成反比。  相似文献   
3.
In the present study, the influence of aluminium on the regeneration potential of leaf and stem-cuttings of Portulaca oleracea was studied in order to identify a terrestrial plant species as an alternate biomonitoring toolof fresh water environment. The leaves and stem cuttings of theterrestrial plant, P. oleracea grew well in the distilled water producing adventitious and lateral roots. The aluminium treated leaves and stem cuttings showed a reduction in the growthof the adventitious and lateral roots and increase in the decay of leaves and stem cuttings with increasing aluminium concentration. The tolerance index calculated for the leaves and the stem cuttings showed that the leaves were more sensitivethan stems to aluminium. Since all the parameters studied showedconcentration dependent changes, the terrestrial plant, P. oleracea can be considered a suitable biomonitoring tool of fresh water environment besides its usage in the Al toxicity testing.  相似文献   
4.
多溴代二苯醚化合物的研究进展   总被引:7,自引:0,他引:7  
金军  安秀吉 《上海环境科学》2003,22(12):855-858
多溴代二苯醚(PBDEs)作为防火阻燃剂,在世界范围内被广泛应用,它是一种环境内分泌干扰物,类似于甲状腺素T3、T4。现有的研究认为,PBDEs具有生物累积性。并影响甲状腺,神经和免疫等系统。该文主要对现有的PBDEs研究进展进行了总结,并着重介绍了PBDEs的毒性,以及对人类和生物体的暴露水平及其相关的分析方法。  相似文献   
5.
模拟酸露对植物影响的实验   总被引:3,自引:0,他引:3  
模拟酸露对植物影响的实验结果表明,用酸露处理后,蚕豆的生理指标发生一定的变化,尤以pH13.0时的变化较明显,显示了模拟酸露对植物的伤害作用。  相似文献   
6.
我国4种重要海水经济鱼类热忍受研究   总被引:3,自引:1,他引:3  
为了探明我国重要海水经济鱼类的热忍受能力,分别采用急性升温和缓慢升温两种方法对大黄鱼Pseudosciaena crocea、鲈鱼Lateolabrax joponicus、真鲷Pagrosomus major、黑鲷Sparus macrocephalus进行了室内热效应模拟实验.研究结果表明:在夏季自然起始水温为28.5℃条件下,大黄鱼,鲈鱼和黑鲷的急性升温半致死温度(LT50)分别为34.2,33.9和36.4℃;大黄鱼,鲈鱼,真鲷和黑鲷的临界热最大值(critical thermal maxima,CTmax)分别为35.0,34.7,32.7和36.8℃.  相似文献   
7.
The continuing conundrum of the LEA proteins   总被引:9,自引:0,他引:9  
Research into late embryogenesis abundant (LEA) proteins has been ongoing for more than 20 years but, although there is a strong association of LEA proteins with abiotic stress tolerance particularly dehydration and cold stress, for most of that time, their function has been entirely obscure. After their initial discovery in plant seeds, three major groups (numbered 1, 2 and 3) of LEA proteins have been described in a range of different plants and plant tissues. Homologues of groups 1 and 3 proteins have also been found in bacteria and in certain invertebrates. In this review, we present some new data, survey the biochemistry, biophysics and bioinformatics of the LEA proteins and highlight several possible functions. These include roles as antioxidants and as membrane and protein stabilisers during water stress, either by direct interaction or by acting as molecular shields. Along with other hydrophilic proteins and compatible solutes, LEA proteins might also serve as “space fillers” to prevent cellular collapse at low water activities. This multifunctional capacity of the LEA proteins is probably attributable in part to their structural plasticity, as they are largely lacking in secondary structure in the fully hydrated state, but can become more folded during water stress and/or through association with membrane surfaces. The challenge now facing researchers investigating these enigmatic proteins is to make sense of the various in vitro defined functions in the living cell: Are the LEA proteins truly multi-talented, or are they still just misunderstood?  相似文献   
8.
To demonstrate the existence of light thresholds in plant growth and to examine the effects of elevated CO2 on the shade tolerance of a tree species, an experiment consisting of a completely randomized design for a total of 96 yellow birch (Betula alleghaniensis Britton) seedlings was conducted with 3 light levels (2.9%, 7.7%, 26.1% of full sunlight)×2 CO2 levels (350 and 700±10 ppm) with 4 replications in a phytotron. The study proved that thresholds exist and they vary in different plant organs. In ambient CO2, the thresholds were 13.3%, 18.7%, 15.0%, 15.2%, and 15.6% of full sunlight for stem, leaf, root, total plant biomass, and the averaged value, respectively. In 700 ppm CO2, the corresponding thresholds were 16.7%, 21.3%, 18.1%, 21.7% and 19.5% for stem, leaf, root, total plant biomass, and the averaged value, respectively. The lowest threshold in the stem is an indicator of the minimal light intensity for regular growth for seedlings of this species. Below this threshold, light-stressful growth occurs. The result of a paired t-test indicated that the thresholds in elevated CO2 were significantly higher than in ambient CO2. This suggests that yellow birch will lose its moderate shade tolerance, evolutionally becoming a shade-intolerant species, and that it may become more difficult to naturally regenerate in the future.  相似文献   
9.
The roles of low-molecular-weight thiols (LMWTs), such as glutathione and phytochelatins, in arsenic (As) tolerance and hyperaccumulation in Pteris vittata an As-hyperaccumulator fern remain to be better understood. This study aimed to thoroughly characterize LMWT synthesis in P. vittata to understand the roles played by LMWTs in As tolerance and hyperaccumulation. LMWT synthesis in P. vittata was induced directly by As, and not by As-mediated oxidative stress. Expression of PvECS2, one of the putative genes of γ-glutamylcysteine synthetase (γECS), increases in P. vittata shoots at 48 h after the onset of As exposure, almost corresponding to the increase in the concentrations of γ-glutamylcysteine and glutathione. Furthermore, localization of As showed similar trends to those of LMWTs in fronds at both whole-frond and cellular levels. This study thus indicates the specific contribution of LMWTs to As tolerance in P. vittata. γECS may be responsible for the As-induced enhancement of LMWT synthesis.  相似文献   
10.
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