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11.
三峡库区藻类水华调查及其毒理学研究   总被引:14,自引:1,他引:13  
三峡水库一期工程蓄水近两年(2003年7月—2005年4月)期间,库区发生过多次藻类“水华”,尤其在阳光充足、气温回升的春季。经鉴定形成水华的藻类主要有拟多甲藻(Peridiniopsissp1,sp2),新星形冠盘藻(Stephanodiscusneoastraea),里海小环藻(Cyclotella caspia),湖沼红胞藻(Rhodomonas lacustris),实球藻(Pandorina morum)和空球藻(Eudorina elegans);其中以拟多甲藻水华涉及面积最大,持续时间最久,污染程度最为严重。通过对拟多甲藻水华水及其藻细胞提取液的生物毒性测试,表明其对其他水生生物和小白鼠没有明显的生物毒性。  相似文献   
12.
黑河中游干旱绿洲土壤盐渍化对大型土壤动物群落的影响   总被引:1,自引:0,他引:1  
以内陆干旱区黑河中游绿洲边缘区天然沙质草地及其转变的人工梭梭灌木林(21 a)、人工杨树林(28 a)、人工樟子松林(33 a)和农田(开垦27 a和100 a)为研究对象,对6种样地土壤盐渍化和大型土壤动物群落特征进行调查,采用多变量排序、多元回归和通径分析及一元回归分析等方法,研究了不同土地覆被和管理措施下土壤动物群落组成及对土壤盐碱环境变化的响应.结果表明: 在缺乏管理措施的情况下,单纯改变土地覆被并不会显著影响土壤动物群落结构;而在有管理措施的情况下,土地覆被变化与管理措施耦合可显著改变土壤动物群落结构.土壤动物群落演变受到土壤pH、可溶性盐及Na+、Cl-、HCO3-、Mg2+浓度的共同影响,其中Na+和可溶性盐含量的贡献率最大,是关键影响因子.土壤动物密度和类群丰富度与土壤中的Na+和可溶性盐含量呈显著负指数函数关系,与Mg2+和HCO3-含量呈显著二次曲线关系.研究区土壤动物密度和类群丰富度在Mg2+和HCO3-含量达到生态阈值点(分别为38.7~39.4 mg·kg-1和324.9~335.3 mg·kg-1)时达到峰值(40~43只·m-2和13~14科·m-2).此后,随着Mg2+和HCO3-含量的增加, 土壤动物密度和类群丰富度下降.  相似文献   
13.
水氮处理下不同品种水稻根系生长分布特征   总被引:11,自引:0,他引:11       下载免费PDF全文
为明确不同栽培条件下水稻(Oryza sativa)根系生长分布特征, 通过不同水氮处理和不同品种的水稻桶栽试验, 采用内置根架法, 于拔节期和抽穗期取样, 获取根系总干重(TRW)、不定根数(ARN)以及各类根(不定根、细分枝根和粗分枝根)的形态指标(长度、表面积和体积), 并分析植株根系生长状况和根系分布特征。结果显示: (1)各试验条件下抽穗期各项根系指标较拔节期均呈增长趋势。同一时期, 各项根系指标在3个施氮水平间均差异显著, 且随施氮量的增加而增加。不同水分处理下, 两个时期的ARN在湿润灌溉(W2)与保持水层(W1)之间差异均不显著, 而其他指标上W2处理均显著最高; 干旱处理 (W3)下, 仅拔节期的TRW和粗分枝形态指标与W1处理接近, 而在其他指标上均显著最低。不同品种间, ‘扬稻6号’ (V3)的各项根系指标均最高, 而‘日本晴’ (V1)和‘武香粳14’ (V2)间差异不显著。(2)各试验条件下, 抽穗期较拔节期根系下扎生长比例增加, 多分布于表层(0-5 cm)土中; 减少氮素和水分供应可提高根系在5 cm以下土层中的分布比例, 且分枝根反应最为明显; 品种V1和V2的深扎根性较V3明显。结果表明, 合理施氮与控水可优化水稻不同类型根的生长与分布特征, 但需考虑不同品种之间的差异。  相似文献   
14.
15.
Fan QJ  Liu JH 《Plant cell reports》2012,31(1):145-154
Nitric oxide (NO) is a component of the repertoire of signals implicated in plant responses to environmental stimuli. In the present study, we investigated the effects of exogenous application of NO-releasing donor sodium nitroprusside (SNP) and nitric oxide synthase inhibitor N G-nitro-l-arginine-methyl ester (l-NAME) on dehydration and drought tolerance of Poncirus trifoliata. The endogenous NO level was enhanced by SNP pretreatment, but decreased by l-NAME, in the hydroponic or potted plants with or without stresses. Under dehydration, leaves from the SNP-treated hydroponic seedlings displayed less water loss, lower electrolyte leakage and reactive oxygen species accumulation, higher antioxidant enzyme activities and smaller stomatal apertures as compared with the control (treated with water). In addition, pretreatment of the potted plants with SNP resulted in lower electrolyte leakage, higher chlorophyll content, smaller stomatal conductance and larger photosynthetic rate relative to the control. By contrast, the inhibitor treatment changed these physiological attributes or phenotypes in an opposite way. These results indicate that NO in the form of SNP enhanced dehydration and drought tolerance, whereas the inhibitor makes the leaves or plants more sensitive to the stresses. The stress tolerance by NO might be ascribed to a combinatory effect of modulation of stomatal response and activation of the antioxidant enzymes. Taken together, NO is involved in dehydration and drought tolerance of P. trifoliata, implying that manipulation of this signal molecule may provide a practical approach to combat the environmental stresses.  相似文献   
16.
We describe a noncommercial alternative method to create entry clones compatible with all kinds of destination vectors based on an improved TA cloning approach. To generate Gateway T vectors, we first constructed gentamicin- and chloramphenicol-resistant entry vectors designated pGWG and pGWC, respectively. Each entry vector contains an AhdI cassette flanked by attL sites, with each AhdI cassette containing two AhdI restriction enzyme sites spaced by the ccdB killer gene, which is lethal to most Escherichia coli strains. Gateway T vectors can be prepared by simple digestion of these entry vectors with the AhdI enzyme or its isoschizomers. The use of the ccdB gene as a negative selection marker is an important improvement over conventional TA cloning in that it eliminates the necessity of blue/white color screening based on alpha-complementation. Another important improvement that we have implemented is to retail the T vectors using Taq polymerase and dTTP so as to improve the cloning efficiency. Together, these improvements allow TA cloning to realize its full potential. Using Gateway T vectors prepared by this improved method, entry clones for PCR products or restriction enzyme fragments can be created simply, efficiently, and inexpensively while at the same time introducing greater compatibility.  相似文献   
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18.
向齐君  吴兰佩XIANG  Qi-Jun  WU  Lan-Pei 《遗传》1994,16(1):35-37
在液体培养基上用0.05%的秋水仙素处理小麦-黑麦杂种幼穗愈伤组织,含秋水仙素的培养基采用两种方法灭菌:(1)秋水仙素与培养基成分混合在一起用灭菌锅灭菌。处理愈伤后愈伤组织无伤害迹象,推测可能是灭菌过程中秋水仙素浓度降低所致;再生植株的育性得到有效的恢复,48.1%的穗子结实,5.2%的穗子结实率达到34.8%;(2)秋水仙素经超滤灭菌后,在常温下与灭过菌的培养基成分混和,处理愈伤后愈伤组织伤害严重,几乎不能分化苗。  相似文献   
19.
IQGAP1 is a scaffolding protein that can regulate several distinct signaling pathways. The accumulating evidence has demonstrated that IQGAP1 plays an important role in tumorigenesis and tumor progression. However, the function of IQGAP1 in esophageal squamous cell carcinoma (ESCC) has not been thoroughly investigated. In the present study, we showed that IQGAP1 was overexpressed in ESCC tumor tissues, and its overexpression was correlated with the invasion depth of ESCC. Importantly, by using RNA interference (RNAi) technology we successfully silenced IQGAP1 gene in two ESCC cell lines, EC9706 and KYSE150, and for the first time found that suppressing IQGAP1 expression not only obviously reduced the tumor cell growth, migration and invasion in vitro but also markedly inhibited the tumor growth, invasion, lymph node and lung metastasis in xenograft mice. Furthermore, Knockdown of IQGAP1 expression in ESCC cell lines led to a reversion of epithelial to mesenchymal transition (EMT) progress. These results suggest that IQGAP1 plays crucial roles in regulating ESCC occurrence and progression. IQGAP1 silencing may therefore develop into a promising novel anticancer therapy.  相似文献   
20.
Disentangling the relationship between shrub vegetation and ground-dwelling arthropods at multiple levels of taxonomic resolution is essential to developing a suitable management strategy for the conservation of shrub-associated arthropod biodiversity in shrubland ecosystems. Using Gobi desert (dominated by shrub species Nitraria sphaerocarpa and Reaumuria soongorica) occurring widely in inland arid areas of northwest China as a model system, we sampled ground-dwelling arthropods by pitfall trapping method under canopies of both shrubs and in intershrub bare areas during spring, summer and autumn. Our aim was to determine whether the presence and species identity of shrubs influence the distribution of ground-dwelling arthropods and whether the influence of shrub presence and species identity differs among trophic and taxonomic groups. At the community level, total arthropod abundance and species richness were significantly greater under shrubs than in intershrub bare habitats, whereas more arthropods were captured under N. sphaerocarpa than under R. soongorica. At the trophic group level, the abundance of predator and decomposer arthropods was significantly greater under shrubs than in intershrub bare habitats, whereas herbivore and decomposer arthropods were more abundant under N. sphaerocarpa than under R. soongorica. At the family level, the abundance of Carabidae, Gnaphosidae, Karschiidae, Tenebrionidae and Thomisidae was consistently much greater under shrubs than in intershrub bare habitats, whereas that of Formicidae, Philodromidae and Tettigoniidae did not differ between the shrub microhabitats and the intershrub bare habitats. However, the abundance of Curculionidae under R. soongorica and the abundance of Geotrupidae under N. sphaerocarpa were significantly lower than that in intershrub bare habitats. N. sphaerocarpa was commonly preferred by arthropods in the families of Curculionidae and Tenebrionidae, whereas R. soongorica was commonly preferred by arthropods in the family Geotrupidae, but shrub species identity did not affect the abundance of the remaining families. Our results suggest that shrubs and species identity play important roles in structuring ground-dwelling arthropod communities, but the response of arthropods differed among trophic or taxonomic groups. This study may have important implications for the conservation of invertebrate biodiversity in Gobi desert ecosystems.  相似文献   
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