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采用水培方法,研究了毒死蜱对两种叶菜类蔬菜菠菜和生菜生长的影响、在不同培养液中的降解速度以及在蔬菜中的吸收和转移规律。结果表明,低浓度毒死蜱(1.0和10.0mg·L^-1)对两种供试蔬菜的生长没有明显影响,但高浓度毒死蜱(100.0mg·L^-1)对两种蔬菜的生长均有一定的影响,而且生菜对毒死蜱较菠菜更为敏感。两种蔬菜均能明显促进毒死蜱在溶液中的降解,在不同溶液中的降解速度如下:菠菜-培养液〉生菜-培养液〉塘水〉培养液。两种供试蔬菜对毒死蜱均有很强的吸收能力,而且具有相似的吸收规律。毒死蜱在菠菜根中达到最大吸收值所需的时间比生菜根所需的时间短,但在茎和叶中所需的时间两种蔬菜相同。  相似文献   
3.
Iodine is an essential microelement for human health, and the recommended daily allowance (RDA) of such element should range from 40 to 200 μg day?1. Because of the low iodine contents in vegetables, cereals, and many other foods, iodine deficiency disorder (IDD) is one of the most widespread nutrient-deficiency diseases in the world. Therefore, investigations of I uptake in plants with the aim of fortifying them can help reach the important health and social objective of IDD elimination. This study was conducted to determine the effects of the absorption of iodine from two different chemical forms—potassium iodide (I?) and potassium iodate (IO? 3)—in a wide range of wild and cultivated plant species. Pot plants were irrigated with different concentrations of I? or IO? 3, namely 0.05% and 0.1% (w/v) I? and 0.05%, 0.1%, 0.2%, and 0.5% (w/v) IO? 3. Inhibiting effects on plant growth were observed after adding these amounts of iodine to the irrigation water. Plants were able to tolerate high levels of iodine as IO? 3 better than I? in the root environment. Among cultivated species, barley (Hordeum vulgare L.) showed the lowest biomass reductions due to iodine toxicity and maize (Zea mays L.) together with tobacco (Nicotiana tabacum L.) showed the greatest. After the screening, cultivated tomato and potato were shown to be good targets for a fortification-rate study among the species screened. When fed with 0.05% iodine salts, potato (Solanum tuberosum L.) tubers and tomato (Solanum lycopersicum L.) fruits absorbed iodine up to 272 and 527 μg/100 g fresh weight (FW) from IO? 3 and 1,875 and 3,900 μg/100 g FW from I?. These uptake levels were well more than the RDA of 150 μg day?1 for adults. Moreover, the agronomic efficiency of iodine accumulation of potato tubers and tomato fruits was calculated. Both plant organs showed greater accumulation efficiency for given units of iodine from iodide than from iodate. This accumulation efficiency decreased in both potato tubers and tomato fruits at iodine concentrations greater than 0.05% for iodide and at respectively 0.2% and 0.1% for iodate. On the basis of the uptake curve, it was finally possible to calculate the doses of supply in the irrigation water of iodine as iodate (0.028% for potato and 0.014% for tomato) as well as of iodide (0.004% for potato and 0.002% for tomato) to reach the 150 μg day?1 RDA for adults in 100 g of such vegetables, to efficiently control IDD, although these results still need to be validated.  相似文献   
4.
Single phytotoxicity of two representative phthalate esters (PAEs), di-n-butyl phthalate (DnBP) and bis(2-ethylhexyl) phthalate (DEHP), was tested in mung bean (Vigna radiata) seedlings germinated for 72 h in soils spiked with varying concentrations (0-500 mg kg-1 soil) of DnBP or DEHP. PAEs added at up to 500 mg kg-1 soil exerted no significant effect on germination but both pollutants significantly inhibited root elongation (P 〈 0.01); DEHP inhibited shoot elongation (P 〈 0.01) and DnBP depressed biomass on a fresh weight basis (P 〈 0.05). Seedling shoot and root malondialdehyde (MDA) Contents tended to be stimulated by DnBP but inhibited by DEHP. However, increases in superoxide dismutase, peroxidase, ascorbate peroxidase and polyphenol oxidase activities, as well as glutathione (GSH) content, were induced at higher concentrations (e.g., 20 mg kg-1) of both compounds. Accumulation of proline in both roots and shoots and the storage compounds, such as free amino acids and total soluble sugars, in whole plant was induced under the stress exerted by both PAEs. The general responses of mung bean seedlings indicated higher toxicity of DnBP than DEHP on primary growth, during which root elongation was a more responsive index. MDA and GSH were more sensitive parameters in the roots than in the shoots and they might be recommended as physiologically sensitive parameters to assess the toxicity of PAE compounds in soils in future long-term studies.  相似文献   
5.
Inductively coupled plasma optical emission spectroscopy, in combination with calculation of various biological factors, was used in this study not only for a simple illustration of the present status of some essential and non-essential metals such as copper (Cu), zinc (Zn), nickel (Ni), lead (Pb), arsenic (As), and cadmium (Cd) in the grapevine cultivar Rkatsiteli and wild blackberry from East Serbia but also for the estimation of plant bioaccumulation potentials. Great majority of detected metal concentrations were in normal ranges except in few cases: Zn concentrations were at the level of deficiency in almost all plant parts, and some Cu and As concentrations were at the levels that could be considered phytotoxic. Biological accumulation factors provided very informative data on metal accumulation and translocation in both plants and pointed to low accumulation rates of metals except in the case of Cu, Zn, and As in some wild blackberry tissues.  相似文献   
6.
选取我国11种不同性质的农田土壤,通过外源添加重金属钴(Co),研究其对大麦(Hordeum vulgare L.)根伸长的毒性阈值及土壤性质对Co毒性的影响。结果发现,Co对大麦根伸长10%抑制效应(EC10)在11种土壤中的变化范围为37.1~3 914 mg·kg-1土(105.5倍),50%抑制效应(EC50)的变化范围为166.1~6 030 mg·kg-1土(36.3倍)。建立土壤性质与毒性阈值的回归方程,结果表明土壤pH是影响土壤Co毒性阈值最重要的因子,作为单因子时分别可以解释77.6%、72%的EC10和EC50的变异(P≤0.001)。当在EC10预测模型中引入土壤pH和土壤黏粒(Clay)双因子时,可以解释83.9%的EC10的变异(P<0.001),EC50预测模型中引入土壤pH和总碳(TC)双因子时,可以解释86.1%的EC50的变异(P<0.001)。将我国土壤中得到的Co毒性阈值预测模型和欧洲北美10种土壤的预测模型进行比较验证,结果发现基于我国土壤得到的预测模型可以较为准确地预测欧洲北美土壤中Co的大麦根伸长毒性阈值,但基于欧洲北美土壤的预测模型不能准确预测我国土壤中Co的毒性阈值。研究表明,我国土壤性质对Co毒性有显著的影响,基于土壤性质建立的预测模型可为土壤中Co生态风险评价提供参考依据。  相似文献   
7.
种衣剂添加芸苔素内酯预防玉米冷害药害试验分析   总被引:3,自引:1,他引:3  
在11%福·戊种衣剂中添加不同浓度的0.1%芸苔素内酯(BR),对九单48和东单213进行包衣处理,利用智能光照培养箱和田间错期播种,检验不同包衣处理对低温冷害的防御能力.结果表明,人工控制温度条件下,九单48添加最佳剂量BR出苗率为92%,未添加BR处理出苗率仅为20%,未包衣(对照)出苗率为48%.东单213添加最佳剂量BR出苗率为90%,未添加BR处理出苗率为80%,未包衣(对照)出苗率为52%.田间错期第一批播种处理中,九单48添加BR比未添加出苗率高3.83个百分点;东单213添加BR比未添加出苗率高4.94个百分点.种衣剂中添加适量BR能够有效抵御冷害药害,提高出苗率.  相似文献   
8.
The purpose of this work was to evaluate the responses of 20 rice cultivars to the phytotoxic effects of acetic, propionic, and butyric acids produced in soils under anaerobic conditions. The study was conducted in a hydroponic system, with four levels (0, 3, 6, and 9 mM) of the three organic acids in the ratio of 6:3:1 in a factorial of complete randomized block design with three replications. The evaluated variables were phosphorus (P) and potassium (K) contents. The analysis of variance revealed a significant interaction, and the established regressions showed differences among the genotypes as evaluated for both variables. Four genotypes were classified as tolerant in relation to P content and three genotypes as tolerant in relation to K. The best performance was verified with japonica genotypes and the irrigation-based growing system.  相似文献   
9.
Abstract

Two cultivars of cotton (Gossypium spp) were grown in Yolo loam soil in a glasshouse to determine phytotoxicity effects of Cr and Li and possible interactions with other metals. The Cr at 100 μg/g soil had no adverse effects on either cultivar studied. A Cr increase was not observed in either stems or leaves. Both cultivars tolerated 25 and 50 μg Li/g soil. The 50 μg Li/g soil resulted in leaves of Acala SJ‐2 with 432 μg Li/g leaves and 720 in Giza 45. The 100 μg Li/g soil resulted in 74% and 87% leaf yield reductions in Acala SJ‐2 and Giza 45 respectively. Leaf concentrations of Li respectively were 1950 and 1850 μg/g. Except at the highest level of Li, leaves had higher concentrations of Li than did roots. The Cr and Li resulted in some plant metal interactions.  相似文献   
10.
The aims of this work are to test whether boron (B) may alleviate soil acidification and aluminum (Al) phytotoxicity to rape (Brassica napus L.) in acidic soil. The Al hydroxide that reacted with borax was called ad-B-Al hydroxide. Point of zero charge (PZC) of Al hydroxide (pH 4.86) was greater than that of ad-B-Al hydroxide (pH 4.68). Compared with the control, ad-B-Al hydroxide raised the soil pH significantly by 0.10 pH units. Rape was planted in the control soil, the soil treated with Al hydroxide, and the soil treated with ad-B-Al hydroxide. It was found that the B content of the soil and rape seedlings grown on the soil treated with ad-B-Al hydroxide was greater than the others. Biomass production of rape seedlings grown in the soil treated with ad-B-Al hydroxide was significantly increased compared to that in the others. These demonstrated that ad-B-Al hydroxide can be an important source of B for plants and alleviate acidity of acidic soils because it can decrease exchangeable acid and Al toxicity in soil significantly.  相似文献   
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