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The competition between submersed plants has been recognized as an important factor influencing the structure of plant communities
in shallow lakes. The ability of different species to take up and store nutrients from the surrounding ambience varies, and hence plant
community structure might be expected to affect the cycling of nutrients in lake ecosystems. In this study, the uptake of phosphorus
by Hydrilla verticillata and Vallisneria natans was studied and compared in monoculture and competitive mixed-culture plantings.
Results showed that for both studied species the phosphorus concentrations of different tissues and of whole plants was unaffected by
competition. However, the quantity of phosphorus accumulated by whole plants of H. verticillata was significantly higher in mixture
culture than in monoculture, while that of V. natans was lower in the mixed culture. The results indicated that H. verticillata has a
competitive advantage over V. natans, when the two species are grown in competition, and is able to accumulate a greater quantity of
phosphorus. 相似文献
53.
Jinfei Feng Yinxi Wang Jian Zhao Liqun Zhu Xinmin Bian Weijian Zhang 《环境科学学报(英文版)》2011,23(7):1158-1164
Air and soil pollution from traffic has been considered as a critical issue to crop production and food safety, however, few efforts have
been paid on distinguish the source origin of traffic-related contaminants in rice plant along highway. Therefore, we investigated metals
(Pb, Cd, Cr, Zn and Cu) concentrations and stable Pb isotope ratios in rice plants exposed and unexposed to highway traffic pollution
in Eastern China in 2008. Significant differences in metals concentrations between the exposed and unexposed plants existed in leaf for
Pb, Cd and Zn, in stem only for Zn, and in grain for Pb and Cd. About 46% of Pb and 41% of Cd in the grain were attributed to the
foliar uptake from atmosphere, and there were no obvious contribution of atmosphere to the accumulations of Cr, Zn and Cu in grain.
Except for Zn, all of the heavy metals in stem were attributed to the root uptake from soil, although significant accumulations of Pb and
Cd from atmosphere existed in leaf. This indicated that different processes existed in the subsequent translocation of foliar-absorbed
heavy metals between rice organs. The distinct separation of stable Pb isotope ratios among rice grain, leaf, stem, soil and vehicle
exhaust further provided evidences on the different pathways of heavy metal accumulation in rice plant. These results suggested that
further more attentions should be paid to the atmospheric deposition of heavy metals from traffic emission when plan crop layout for
food safety along highway. 相似文献
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基流对亚热带农业流域氮素输出的贡献研究 总被引:3,自引:2,他引:1
随着经济的迅猛发展和人民生活水平的逐步提高,亚热带农业小流域的面源污染日趋严峻,恶化的水体环境质量已经成为该区域可持续发展和生态文明建设的重要障碍.基流过程对流域生态水文过程有重要影响,因此本研究选取湖南省长沙县的脱甲和涧山两个农业小流域作为调查对象,通过流域观测和模型估算方法,对比分析2011年1月至2013年12月间流域基流过程对总氮(TN)输出的贡献.结果表明,在较高强度水稻种植的脱甲流域的月平均基流流量、平均基流TN流量加权浓度和平均基流对TN输出贡献[15.2 mm·month~(-1)、4.14 mg·L~(-1)和0.54 kg·(hm~2·month)~(-1)],均大于较低强度水稻种植的涧山流域[11.4 mm·month~(-1)、1.72 mg·L~(-1)和0.20 kg·(hm2·month)~(-1)].基流对TN输出贡献呈现明显的季节性变化,如在水稻生长季,脱甲和涧山流域基流对TN输出贡献分别为23.2%和18.6%,均低于休耕季的46.9%和40.0%,表明水稻种植会提高休耕季的流域基流过程对TN输出的贡献.因此,为缓解农业小流域水体面源污染,应当在农业小流域中实施合理的稻田管理措施来降低基流对TN输出的贡献. 相似文献
58.
外源锌刺激下水稻对土壤镉的累积效应 总被引:8,自引:5,他引:3
采用水稻盆栽实验研究不同含量外源Zn对模拟Cd中度污染和重度污染土壤中水稻低累积品种湘晚籼12和高累积品种威优46水稻各部位累积Cd的影响.结果表明,在Cd中度污染水平,外源Zn分别增大2种水稻各部位Cd含量,湘晚籼12和威优46糙米Cd含量分别增加125.0%~275.0%和6.6%~91.2%,但各处理糙米Cd含量不高于0.2 mg·kg~(-1);在Cd重度污染水平,外源Zn有降低水稻各部位中Cd含量的作用,湘晚籼12和威优46糙米Cd含量相应降低了16.6%~63.5%和15.6%~74.4%,且威优46糙米Cd含量随外源Zn施用含量的增大而逐渐降低,使得糙米中Cd含量低于0.2 mg·kg~(-1).水稻糙米累积Cd含量与土壤中Cd、Zn交换态含量的相关关系,因Cd污染程度和水稻品种的不同而不同.在Cd中度污染水平,湘晚籼12水稻糙米Cd含量与土壤中交换态Zn含量正线性相关,而威优46水稻糙米Cd含量与土壤中交换态Cd和Zn含量正线性相关;在Cd重度污染水平,威优46水稻糙米Cd含量与土壤中交换态Cd和Zn含量为负线性相关.在不造成土壤Zn污染的前提下,可向Cd重度污染土壤施用一定量的Zn肥,以降低糙米Cd含量,提高糙米品质. 相似文献
59.
Jian Zhou Zegang Wang Zhiwei Huang Chao Lu Zhuo Han Jianfeng Zhang Huimin Jiang Cailin Ge Juncheng Yang 《环境科学学报(英文版)》2014,26(3):650-661
The responses of sulfur (S) uptake assimilation-related genes' expression in roots of two rice cultivars to cadmium (Cd), bensulfuron-methyl (BSM) and their co-contamination (Cd+BSM) were investigated by gene-chip microarray analysis and quantitative real-time PCR (QRT-PCR) technology. Treatments of Cd and Cd+BSM induced expression of sulfate transporter and permease genes, and promoted sulfate uptake in rice roots. Cd+BSM could alleviate Cd toxicity to cv. Fengmeizhan seedlings, probably due to Cd+BSM promoting greater S absorption by seedlings. Cd and Cd+BSM induced expression of sulfate assimilation-related genes, and thus activated the sulfur assimilation pathway. Cd and Cd+BSM induced expression of phytochelatin synthase and metallothionein genes, and induced expression of glutathione S-transferases (GSTs), glutathione synthase (GS) and S- containing antioxidation enzyme genes, which detoxified Cd2+. It is suggested that (to cope with the toxicity of Cd, BSM and their co-contamination) the S uptake and assimilation pathway was activated in rice roots by increased expression of related genes, thus enhancing the supply of organic S for synthesis of Cd or BSM resistance-related substances. 相似文献
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