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101.
通过盆栽试验,研究了铜陵铜尾矿对油菜生长和生理功能的影响.结果表明,油菜种子能在铜尾矿上萌发,但发芽率和发芽速率均小于正常土壤.尾矿能降低油菜叶绿素含量,而且对叶绿素a/b比值也有影响.在尾矿胁迫下,油菜叶片的细胞膜透性增加,硝酸还原酶活性降低,抗坏血酸含量下降,表明尾矿对油菜具有毒害作用.与对照相比,尾矿处理油菜根系表现为主根变短,侧根数减少,根系体积明显变小.尾矿能明显抑制油菜幼苗的根和茎叶生物量,降低根冠比.随着油菜的生长发育,尾矿的毒害作用更加明显.尾矿对油菜的影响最终反映在油菜的产量上.铜元素的毒害和尾矿的极端贫瘠是影响油菜生长的2个因素.成熟期油菜各器官铜含量大小依次为根>茎叶>籽粒,籽粒中铜含量与土壤和尾矿混合物中有效铜含量在α=0.01水平上显著正相关.  相似文献   
102.
Inorganic selenium (Se) is absorbed and enriched by plants and converted into a stable and nutritionally important organic form, which subsequently when consumed by humans or animals results in increased Se tissue levels. Brassica is one of the most potent Se-enriched plants. The aim of this study was to compare differences in Se enrichment between two predominant Brassica plants namely Brassica rapa Linn L. and Brassica tumida Tsenet Lee L. on Se metabolic parameters. Plants exposed to soil Se levels (0, 0.5, 1, 2.5 or 5?mg/kg) were examined on the activity of glutathione peroxidase (GSH-Px), Se levels and expression of Se metabolism related genes using soil pots. Data showed that activities of GSH-Px in leaf and root of the two Brassica species were significantly increased in the presence of Se at 2.5?mg/kg. Se concentrations of leaf, stem and root in B. tumida Tsenet Lee L. and B. rapa Linn L. rose from 0.31 to 21.84-fold (leaf), 1.15 to 15.16-fold (stem) and 2.11 to 15.26-fold (root) in the presence of metal in a concentration-dependent manner. The highest expression levels of adenosine triphosphate (ATP), ATP sulfurylase (APS), selenocysteine methyltransferase (SMT), serine acetyltransferase (SAT), cysteine desulfurase (CysD) and S-adenosyl-l-Met:l-Met S-methyltransferase (MMT) in leaf of B. rapa Linn L. were found at 1?mg/kg Se. The highest expression levels of ATP, APS, SMT, SAT, CysD and MMT in leaf of B. tumida Tsenet Lee L. were observed at 2.5?mg/kg Se. The Se concentrations in leaf, stem and root of B. rapa Linn L. were higher than in B. tumida Tsenet Lee L. under the same soil Se level conditions. At the same Se level, differences in the expression of Se-related genes were observed between these two Brassica species. Our observations may be used to optimize the utilization of Brassica as a nutritional source of Se by growing this plant under certain soil conditions.  相似文献   
103.
The experiments were conducted to investigate the tolerance and enrichment capabilities by elucidating the physiological response and cadmium impact on iron and potassium accumulation amounts of brassica rape hairy roots under different cadmium concentrations by using liquid suspension culture method. The results showed the following. (1) The growth of hairy roots was not significantly different under low cadmium concentrations (below 100 μmol/L), whereas it was obviously inhibited under high cadmium concentrations (more than 100 μmol/L). Further, the maximum fresh weight of brassica rape hairy roots reached 4.34 g under 25 μmol/L cadmium stress after 7 days. (2) The content of ROS in brassica rape hairy roots increased with increasing concentrations of cadmium; the antioxidant enzyme activities of brassica rape hairy roots (SOD, POD, and CAT) decreased first and then increased with increasing cadmium concentrations under 1-day stress, whereas showed an opposite trend under 7-day stress. (3) PI staining and MDA content indicated that cellular damage was more serious with increasing cadmium concentrations. (4) With the increase of cadmium concentrations, cadmium content of hairy roots increased and reached maximum of 2.97 mg/g under 400 μmol/L cadmium stress after 7 days. The iron content also increased significantly with the maximal weight of 14.52 mg/g after 1-day cadmium stress, whereas no significant difference was noted under 7-day cadmium stress. The potassium content under 7-day cadmium stress was 1.6 times of that after 1-day stress (15.73 mg/g). The study showed that the physiological response of Brassica rape hairy roots was correlated with the concentration and time of cadmium stress. Moreover, cadmium stress caused metabolic disorders of iron and potassium in the hairy roots, but the hairy roots of Brassica rape had better enrichment effect on cadmium. © 2018 Science Press. All rights reserved.  相似文献   
104.
Summary. Summary. Oilseed rape, Brassica napus L. (cv Express), plants were grown under three different sulphur regimes: sulphur-free (S0), normal sulphur (Sn, normal field concentration) and a sulphur-rich (S+, 2 × concentration of Sn). We performed dual choice oviposition assays with the diamondback moth, Plutella xylostella, using real plants and, for the first time with this insect, artificial leaves sprayed with methanolic leaf-surface extracts. The results mirrored those of a separate study of preferences for whole plants. Females laid more eggs on surrogate leaves that were treated with Sn extracts than on S0 plants, while only a slight, not significant, difference was observed between extracts of normal and sulphur-rich plants. This shows that chemical compounds on the leaf surface mediate the oviposition preference and that the female insect can perceive the quality of the host-plants in terms of their fertilisation status.Since leaf volatiles are known to be oviposition stimulants, we investigated the effects of leaf-surface extracts on insect olfactory responses using electroantennograms (EAGs). In agreement with the behavioural data, we found that extracts of sulphur-treated plants yielded higher EAG amplitudes than the S0 extracts. Since the leaf content of the volatiles isothiocyanates is influenced by sulphur nutrition, we analysed the extracts for these compounds. Above the detection threshold of our GC-MS system, no isothiocyanates were found. Thus, other compounds present in the surface extracts must be perceived by the antenna.However, the HPLC analysis revealed 11 different glucosinolates. Progoitrin (2-Hydroxy-3-butenyl) and gluconapoleiferin (2-Hydroxy-4-pentenyl), which belong to the hydroxy-alkene class of glucosinolates, were the most abundant compounds. The total glucosinolate content sharply increased from S0 to Sn plants, whereas it was slightly lower in n versus S+ plants. Since it is known that glucosinolates can stimulate oviposition, it seems likely that the increased content we observed was influencing the insect preference in this study too.  相似文献   
105.
新型杂化材料钝化修复镉铅复合污染土壤的效应与机制研究   总被引:17,自引:5,他引:12  
王林  徐应明  梁学峰  孙扬  秦旭 《环境科学》2011,32(2):581-588
采用盆栽实验,研究了新型杂化材料及其与磷酸盐复配使用对镉铅复合污染土壤的钝化修复效果,并通过重金属形态分析、吸附平衡实验以及X射线光电子能谱(XPS)探讨了杂化材料钝化修复重金属污染土壤的机制.结果表明,杂化材料单一处理对油菜生长没有明显的促进作用,而杂化材料与磷酸盐复合处理则能显著提高油菜地上部和根部生物量,分别比对...  相似文献   
106.
杨红飞  王友保  李建龙 《生态环境》2011,(10):1470-1477
通过盆栽试验,系统研究了Cu、Zn重金属污染对油菜(Brassica chinensis L.)生长、SOD保护酶活性、脯氨酸、可溶性糖及Cu、Zn在油菜体内吸收富集的影响。结果表明:Cu、Zn污染对油菜生物量和生理生化指标(SOD保护酶活性、脯氨酸和可溶性糖)均有影响。随着Cu、Zn质量分数的升高,植株干物重和SOD保护酶活性表现为先增后降;当Cu质量分数达到1 000 mg?kg-1时,油菜干物重和SOD酶活性分别比对照下降36.79%、66.67%;当Zn质量分数达到3 000 mg?kg-1时,油菜干物重和SOD酶活性分别比对照下降55.21%、82.05%。Cu污染下,油菜叶片脯氨酸质量分数逐渐下降,总可溶性糖质量分数表现为先增后降;Zn污染下,脯氨酸和总可溶性糖质量分数均表现为先增后降。Cu、Zn污染使油菜幼苗叶片及根中的Cu、Zn质量分数明显增加,根部的积累尤其明显。当Cu处理为1 000 mg?kg-1时,油菜茎叶和根中质量分数分别为57.6、424.162 mg?kg-1;当Zn处理为1 000 mg?kg-1时,油菜茎叶和根中质量分数分别为240、608.54 mg?kg-1。与Zn相比,Cu主要积累在油菜的根部,向茎叶迁移累积的量很少,并且随着添加质量分数的增加,茎叶吸收Cu的量变化不大。总之,重金属Zn相对于Cu更容易积累于油菜的地上部分,从而更易进入食物链,它们在油菜体内富集都对其生理生化和营养产生了明显毒害作用。  相似文献   
107.
洛克沙胂在青菜及土壤中的残留及降解特性   总被引:2,自引:0,他引:2  
通过向土壤中施加含洛克沙胂有机肥的田间试验,研究有机肥中的洛克沙胂在土壤-蔬菜中的降解、迁移转化及残留.结果表明,土壤中施加低浓度的洛克沙胂对青菜的生长具有一定的抑制作用,相比于对照组减产15%~32%;青菜对土壤中砷具有一定的富集作用,且其根部为砷主要蓄积部位;土壤中总砷含量与施入洛克沙胂的量成正相关,并且随着种植时间的延长先升高再下降,最高达12.94 mg·kg-1,土壤无机砷含量随着种植时间的延长先升高并于30 d后趋于稳定,占总砷的66.75%~98.56%;青菜中总砷含量与土壤总砷含量及青菜砷富集系数之间均存在一定的正相关;洛克沙胂在土壤中的降解速率缓慢,含洛克沙胂有机肥量添加量高于5 000 kg·hm-2时,45 d后土壤中有洛克沙胂残留;施入一定量的洛克沙胂能显著提高土壤中细菌的数量,对于霉菌和放线菌的生长,较低浓度的洛克沙胂具有一定的抑制作用,较高浓度的洛克沙胂具有一定的促进作用.  相似文献   
108.
作物幼苗Cd含量标征土壤Cd污染的研究   总被引:2,自引:0,他引:2  
杨林书  吴姈姃  王宏康 《环境科学》1995,16(3):61-63,48
用盆栽试验,以小麦、大豆和油菜为对象,研究了利用作物幼苗Cd含量标征土壤Cd污染的可行性。结果表明,在3种作物生长过程中,幼苗Cd含量均高于生长后期或可食部分Cd含量。小麦、大豆籽粒Cd含量与苗期Cd含量及土壤Cd投加量成正相关关系,采收期油菜Cd含量与苗期Cd含量成正相关关系。这3种作物的可食部分Cd含量达到我国食品卫生标准时,小麦三叶期、大豆幼苗地上部分及油菜幼苗的Cd含量临界值分别为0.72  相似文献   
109.
猪场生物发酵床垫料卫生研究   总被引:1,自引:0,他引:1  
通过选择有3个采用发酵床养猪模式的猪场,采集不同使用年限、不同深度及饲养不同阶段猪舍的发酵床垫料,通过测定水分、总N、总P、可溶性盐、黄曲霉毒素B1(AFB1)、枯草芽孢杆菌和大肠杆菌数目、Cu和Zn含量(全重金属及有效态重金属)评估垫料的卫生学状况.并将垫料与土壤以不同比例混合,研究对植物生长及Cu、Zn在植株中残留影响.研究表明,发酵床垫料随着深度增加,垫料的水分含量逐渐降低,温度逐渐升高,大肠杆菌、枯草芽孢杆菌数量减少.随着发酵床使用年限的延长,总N随垫料使用时间延长而变低,而总P含量随时间延长而增加,但变化均不显著(P>0.05);Cu、Zn、Pb、可溶性盐含量都呈现显著的增加(P<0.05).在1年、2年、3年期的垫料中AFB1均有检出,含量均小于10 μg/kg.种植实验结果显示,土壤添加垫料后,Cu、Zn含量随着添加比例增加而增加,植物中残留量随着垫料添加比例的增加而增加.因此在处理发酵床垫料时,要综合考虑其对环境及食品安全的影响.  相似文献   
110.

Background, aim, and scope

We strive to predict consequences of genetically modified plants (GMPs) being cultivated openly in the environment, as human and animal health, biodiversity, agricultural practise and farmers’ economy could be affected. Therefore, it is unfortunate that the risk assessment of GMPs is burdened by uncertainty. One of the reasons for the uncertainty is that the GMPs are interacting with the ecosystems at the release site thereby creating variability. This variability, e.g. in gene flow, makes consequence analysis difficult. The review illustrates the great uncertainty of results from gene-flow analysis.

Main features

Many independent experiments were performed on the individual processes in gene flow. The results comprise information both from laboratory, growth chambers and field trials, and they were generated using molecular or phenotypic markers and analysis of fitness parameters. Monitoring of the extent of spontaneous introgression in natural populations was also performed. Modelling was used as an additional tool to identify key parameters in gene flow.

Results

The GM plant may affect the environment directly or indirectly by dispersal of the transgene. Magnitude of the transgene dispersal will depend on the GM crop, the agricultural practise and the environment of the release site. From case-to-case these three factors provide a variability that is reflected in widely different likelihoods of transgene dispersal and fitness of introgressed plants. In the present review, this is illustrated through a bunch of examples mostly from our own research on oilseed rape, Brassica napus. In the Brassica cases, the variability affected all five main steps in the process of gene dispersal. The modelling performed suggests that in Brassica, differences in fitness among plant genome classes could be a dominant factor in the establishment and survival of introgressed populations.

Discussion

Up to now, experimental analyses have mainly focused on studying the many individual processes of gene flow. This can be criticised, as these experiments are normally carried out in widely different environments and with different genotypes, and thus providing bits and pieces difficult to assemble. Only few gene-flow studies have been performed in natural populations and over several plant generations, though this could give a more coherent and holistic view.

Conclusion

The variability inherent in the processes of gene flow in Brassica is apparent and remedies are wished for. One possibility is to expose the study species to additional experiments and monitoring, but this is costly and will likely not cover all possible scenarios. Another remedy is modelling gene flow. Modelling is a valuable tool in identifying key factors in the gene-flow process for which more knowledge is needed, and identifying parameters and processes which are relatively insensitive to change and therefore require less attention in future collections of data. But the interdependence between models and experimental data is extensive, as models depend on experimental data for their development or testing.

Recommendations

More and more transgenic varieties are being grown worldwide harbouring genes that might potentially affect the environment (e.g. drought tolerance, salt tolerance, disease tolerance, pharmaceutical genes). This calls for a thorough risk assessment. However, in Brassica, the limited and uncertain knowledge on gene flow is an obstacle to this. Modelling of gene flow should be optimised, and modelling outputs verified in targeted field studies and at the landscape level. Last but not least, it is important to remember that transgene flow in itself is not necessarily a thread, but it is the consequences of gene flow that may jeopardise the ecosystems and the agricultural production. This emphasises the importance of consequence analysis of genetically modified plants.  相似文献   
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