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植物重金属胁迫耐受机制 总被引:7,自引:0,他引:7
重金属是一类会对植物产生毒害作用的污染物,植物在长期进化过程中演变出耐受重金属胁迫的相关机制。以植物重金属耐受性为基础,对近几年来国内外植物响应重金属胁迫的耐受机制研究作一简要综述。主要概述了重金属对植物的胁迫影响及植物抗氧化系统,脯氨酸、可溶性糖、可溶性蛋白等渗透调节物质和不同类型基因家族等方面对植物耐受重金属胁迫机制的研究进展。以期为提高植物耐重金属胁迫能力及研究植物修复重金属污染土壤的应用奠定一定的基础。 相似文献
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Ali Shafaqat Rizwan Muhammad Zaid Abbu Arif Muhammad Saleem Yasmeen Tahira Hussain Afzal Shahid Muhammad Rizwan Bukhari Syed Asad Hussain Hussain Saddam Abbasi Ghulam Hassan 《Journal of Plant Growth Regulation》2018,37(4):1423-1436
Journal of Plant Growth Regulation - Plants face different types of biotic and abiotic stresses during their life span. Heavy metal (HM) stress is considered as one of the most challenging and... 相似文献
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植物对重金属镉的耐受机制 总被引:48,自引:0,他引:48
镉离子(Cd^2+)具有强植物毒性,抑制植物生长,甚至使植物死亡。由于长期的环境选择和适应进化,植物发展出耐受机制,可减轻或避免Cd^2+的毒害。硫转运蛋白、硫还原相关酶类以及半胱氨酸、谷胱甘肽和植物螯合肽合成基因的表达受Cd^2+调控。同时这些基因的过表达也能提高植物对Cd^2+的耐性。植物抗氧化系统对Cd^2+胁迫诱发的活性氧的清除作用,具转运Cd^2+活性的质膜转运蛋白促进Cd^2+经共质体途径向木质部运输、装载,而后随蒸腾流向地上部迁移,具转运Cd^2+活性的液泡膜转运蛋白促进Cd^2+进入液泡的隔离作用,都在植物对Cd^2+的耐性中起作用。 相似文献
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利用能源植物治理土壤重金属污染 总被引:7,自引:0,他引:7
随着工农业的发展,土壤重金属污染日益加剧,严重威胁着粮食生产和人类健康。植物修复因其成本低、环境友好以及可大规模原位修复等优点备受关注,成为近年来迅速发展的重金属污染土壤治理技术。在介绍国内外植物修复技术发展与应用现状的基础上,提倡大力发展能源植物修复重金属污染土地,并结合湖南重金属污染田间试验结果,重点对甜高粱(Sorghum bicolor(Linn.)Moench)用于重金属污染土壤修复的优势、可行性及提高修复效率的措施进行了深入分析与探讨。利用甜高粱治理土壤重金属污染,能将土壤修复与生物能源生产有机结合,使重金属从粮食链转入能源链,同时兼顾了生态和经济效益,具有广阔的应用前景。 相似文献
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植物对重金属的耐性机理 总被引:62,自引:3,他引:62
植物对重金属的耐性机理杨居荣,黄翌(北京师范大学环境科学研究所,100875)MechanismofHeavyMetalToleranceofPlants.¥YangJurong;HuangYi(InstituteofEnviron-mentalSc... 相似文献
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植物对重金属的吸收和分布 总被引:3,自引:0,他引:3
植物修复是利用植物来清除污染土壤中重金属的一项技术。该技术成功与否取决于植 物从土壤中吸取金属以及向地上部运输金属的能力。植物对金属的吸收主要取决于自由态离子活度。许多螯合剂能诱导植物对重金属的吸收。金属离子在液泡中的区域化分布是植物耐 重金属的主要原因。同时,细胞内的金属硫蛋白、植物螯合肽等蛋白质以及有机酸、氨基酸等在金属贮存和解毒方面也起重要作用。本文还论述了重金属在植物体内运输的生理及分子 方面的研究进展。 相似文献
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植物对重金属的吸收和分布 总被引:68,自引:2,他引:68
植物修复是利用植物来清除污染土壤中重金属的一项技术。该技术成功与否取决于植物从土壤中吸取金属以及向地上部运输金属的能力。植物对金属的吸收主要取决于自由态离子活度。许多螯合剂能诱导植物对重金属的吸收。金属离子在液泡中的区域化分布是植物耐重金属的主要原因。同时,细胞内的金属硫蛋白、植物螯合脓等蛋白质以及有机酸、氨基酸等在金属贮存和解毒方面也起重要作用。本文还论述了重金属在植物体内运输的生理及分子方面的研究进展。 相似文献
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microRNA (miRNA)是一种新型的长度为20~24 nt的非编码RNA,通过对靶基因的表达调节进而参与调控植物体的多种生理代谢活动。重金属是一类重要的环境污染物,严重危害植物的生长发育,甚至导致植物死亡。植物在长期的进化过程中形成了抵御重金属胁迫的多种机制,如miRNA对特定基因转录后水平的调控就在逆境胁迫应答中发挥重要作用。本文综述了植物中参与重金属胁迫应答miRNA的种类及作用机制,为揭示重金属胁迫条件下基因表达调控机制,以及利用基因工程手段改良植物对重金属的耐受性提供了线索和依据。 相似文献
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Heavy metal binding complexes found in the cytoplasm of plant cells are widely reported to be responsible fox metal resistance. It is believed that these metal binding complexes may play an important role in the accumulation of heavy metal and preventing them from entering the ptant metabolic pathways. This review summarizes information on purification, characterization and properties of these molecules. In view of their inducibility, low molecular weight, specific optical characteristics (high absorption at 254nm and low absorption at 280 nm), high cysteine content and high capacity for binding heavy metal, these complexes were once proposed to be metallothionein-like molecules. However differing from metallothionein of animal system, heavy metal binding complexes in plants are comprised mainly of three amino acids with a unique structure of (γ-Glu-Cys)n-Gly ((γ-EC)nG) (n=2—11). With the presence of γ-carboxyl group peptide linkage, the complexes are thought not to be synthesized via mRNA but the product of biosynthetic pathway using glutatkione as precursor. 相似文献
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Feng-Rui Li Ling-Fen Kang Xiao-Qing Gao Wei Hua Fa-Wang Yang Wen-Long Hei 《Soil & Sediment Contamination》2007,16(5):473-484
Pollution caused by traffic activities is increasingly becoming a great threat to urban environmental quality and human health in many municipalities in Northwest China. The Sophora japonica L., a native tree species occurring widely in many regions of Northwest China, was used as a case study to assess the potential effects of traffic pollution on heavy metal accumulation in leaves of S. japonica trees and associated soils. Fifty-four leaf samples and 41 relevant soil samples (0–10 cm) were collected systematically along main trunk roads and at parks distant from main trunk roads in the city of Lanzhou, Northwest China, respectively. Traffic pollution has resulted in significant accumulation of heavy metals in both the roadside leaves and soils, but the pattern and level of accumulation varied remarkably between elements. The nine elements examined can be classified into three groups relating to their responses to traffic pollution. The first group, including Zn, Cd, Hg, Pb and Cr, showed greater accumulation in both roadside soils and leaves. The second group, including Co, Ni and As, indicated greater accumulation in the roadside leaves only. The third group included only Cu and demonstrated a greater accumulation in the roadside soils only. Overall, Zn, Cd, Hg, Pb, Cu and Cr concentrations in the roadside soils were higher (8–72%) than those in the park soils, as well as much higher (32–300%) than the background values of the respective elements set for local soils (Lanzhou). Zn, Cd, As, Hg, Pb, Cr, Ni and Co concentrations in the roadside leaves were higher (27–111%) than those in the park leaves. The differences found among elements in the levels of accumulation suggest that the relative importance of the individual elements contributing to urban environmental deterioration will vary considerably. 相似文献
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Heavy metals impact on the cytoplasmic function in a number of different ways, principally by their binding to protein sulflhdryl groups, by producing a deficiency of essential ions and, eventually, by substituting the essemial ions. Other modes of toxicity are possible, including disruption of cell transport processes and oxidative damage by free radicals generated by metal redox cycling. Plants have developed a variety of biochemical defense strategies to prevent heavy metal poisoning. The possible defense mechanism in plant may involve: metal binding to cell walls, avoidance of uptake these toxic metal ions, reduction of heavy metal transport across the cell membrane, active efflux, compartmentalization and metal chelation. Phytochelatins that can tightly bind and sequester metals may play an important role in the accumulation of heavy metals and preventing them from entering the cell metabolic pathway, the rates of high molecular weight (HMW) metal phytochelatin complexes (Cd-Sa-complex) formation may be an important determinant of the plant tolerance. In addition, plants possess several antioxidant defense systems to protect themselves from the oxidative stress by heavy metals. 相似文献
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《中国生物工程杂志》2022,(Z1)
细菌进化的本质是碱基突变、基因重排或水平基因转移,在适应性进化过程中,主要受生物和非生物因素的影响,其中重金属胁迫也是细菌适应性进化的主要因素之一。重金属胁迫促使细菌适应性地强化与金属输入和转化有关的代谢途径,而过量的金属则诱导金属积累和外排过程。在重金属胁迫下,基于重金属抗性(HMR)基因和酶蛋白的适应,细菌抗性机制亦发生适应性进化,整理和总结了包括隔离机制适应、金属调控蛋白调控机制适应及酶解毒机制适应方面的研究。目前,重金属离子已对环境造成严重污染,威胁人类健康和生态系统的稳定,因此,阐明重金属胁迫下的细菌适应性进化,不仅丰富了细菌进化研究的内容,而且为在复杂环境条件下实现重金属离子污染的微生物的修复提供了理论基础。 相似文献
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镉是重要的重金属污染物,它严重影响植物生长,并危害人体健康.植物的重金属耐受机理很复杂,需从多个角度阐述.但参与重金属应答的调节性基因研究较少,重金属响应调控网络并不清楚.microRNA(miRNA)是一类新型的调控基因表达的 相似文献
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本文研究了Pb、zn、cu和Cd对3种蛋白酶产生菌:碱性地衣芽孢杆菌2709(Bacilluslicheniformis 2709)、中性枯草杆菌1.398(Bacillus subtilis1.398)和酸性宇佐美曲霉537(Aspergillususamii 537)生长及其酶活性的影响,并采用生长抑制皿分析(GIPA)方法针对3种菌株在Pb、zn、Cu、Cd不同胁迫浓度下的生长量进行打分,分析其耐性与抗性指标(MTC与MIC).结果表明4种重金属在超过一定临界浓度后,对3种菌株的生长和蛋白酶活性均产生了较大的抑制作用.碱性蛋白酶对4种重金属均具有较大的适应性,其次是中性蛋白酶对Zn和Cd具有一定的适应性.而酸性蛋白酶对4种重金属均表现出被抑制状态.3种菌株对Pb和Zn耐性与抗性最高(2.0 mmol/L~6.0 mmol/L),其次是对Cd也具有一定的抗性(0.5 mmol/L~0.75 mmol/L). 相似文献