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首页> 外文期刊>Environmental Science and Pollution Research >Resistance of alfalfa and Indian mustard to Cd and the correlation of plant Cd uptake and soil Cd form
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Resistance of alfalfa and Indian mustard to Cd and the correlation of plant Cd uptake and soil Cd form

机译:苜蓿和印度芥末对CD的抗性及植物CD摄取和土壤CD形式的相关性

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Phytoremediation of heavy metal-contaminated soil is considered to be one ecological environmental protection way that is effective and economical. The selection of suitable hyperaccumulators is a key issue for phytoremediation of heavy metal-contaminated soil. Pot experiments were conducted to study the effects of different Cd levels (0, 75, 150, 300, and 600mgkg(-1) Cd) on the dry weight, antioxidant enzyme activities, malondialdehyde (MDA) contents, Cd concentration, Cd accumulation, and soil Cd form distribution ratio (FDC) of alfalfa (Medicago sativa L.) and Indian mustard (Brassica juncea L.). The correlations between Cd concentration in shoots and roots of alfalfa and Indian mustard and soil Cd form were also investigated. The results showed that with the increase of soil Cd levels, dry weight of shoot and root of alfalfa and Indian mustard significantly decreased, which decreased by 50.0-71.8% and 29.6-59.3% (alfalfa), 59.6-89.0% and 64.3-74.8% (India mustard), respectively, compared with the control. With the increase of soil Cd level, superoxide dismutase (SOD) activity in shoot of alfalfa significantly increased. Catalase (CAT) activity and malondialdehyde contents in shoots and roots of alfalfa and Indian mustard, as well as superoxide dismutase activity in the roots of alfalfa and Indian mustard increased first and then decreased with the increase of soil Cd level. With increasing Cd stress, Cd concentration in shoots and roots of alfalfa and Indian mustard significantly increased. At soil Cd level of 75mgkg(-1), Cd concentrations in shoots of alfalfa and Indian mustard exceeded the critical value of Cd-hyperaccumulator (100mgkg(-1)), which was 356.46mgkg(-1) and 308.74mgkg(-1), respectively. Cadmium concentrations in shoots and roots of plants were in the order of that of alfalfa>Indian mustard; total Cd accumulation in the aboveground tissues and roots of the plants was in the order of that of Indian mustard>alfalfa at the same Cd level. With increasing soil Cd level, Cd concentrations of exchangeable form (EXC-Cd), carbonate-bound form (CAB-Cd), iron-manganese oxide-bound form (FeMn-Cd), organic-bound form (OM-Cd), and residual form (RES-Cd) showed an increasing trend. The form distribution ratio of soil Cd forms in alfalfa's rhizosphere was in the order of that of exchangeable form Cd>carbonate-bound form Cd>iron-manganese oxide-bound form Cd>residual form Cd>organic-bound form Cd. Except for organic-bound form Cd, soil Cd forms were significantly positively correlated with Cd concentration in shoot and root (P<0.01). Comprehensively considering the biomass and Cd accumulation, Indian mustard is more suitable as remediation material for soil Cd pollution.
机译:重金属污染土壤的植物修复被认为是一种生态环保方式,其是有效和经济的。合适的超读数器的选择是重金属污染土壤植物修复的关键问题。进行罐实验以研究不同Cd水平(0,75,150,300和600mgkg(-1)Cd)对干重,抗氧化酶活性,丙二醛(MDA)含量,Cd浓度,CD积累的影响,苜蓿(Medicago Sativa L.)和印度芥末(Brassica Juncea L)的土壤CD形成分配比(FDC)。还研究了苜蓿和印度芥末和土壤CD形式的芽和根部芽和根部之间的相关性。结果表明,随着土壤Cd水平的增加,苜蓿和印度芥末的枝条和​​根部的干重显着下降,减少了50.0-71.8%和29.6-59.3%(Alfalfa),59.6-89.0%和64.3-74.8与控制相比,%(印度芥末)分别。随着土壤CD水平的增加,苜蓿芽中的超氧化物歧化酶(SOD)活性显着增加。在苜蓿和印度芥末和印度芥末的射击和根中的过氧化氢酶(猫)活性和丙二醛含量,以及在苜蓿和印度芥末的根部的超氧化物歧化酶活性先增加,然后随着土壤CD水平的增加而降低。随着CD胁迫的增加,紫花苜蓿和印度芥末患者的CD浓度明显增加。在75mgkg(-1)的土壤Cd水平下,苜蓿和印度芥末芽中的Cd浓度超过CD-hyperAcculator(100mgkg(-1))的临界值,为356.46mgkg(-1)和308.74mgkg(-1 ), 分别。植物枝条和根部的镉浓度为苜蓿>印度芥末的顺序。在地上组织和植物根部的总CD积累是印度芥末>苜蓿的顺序在相同的CD水平上。随着土壤CD水平的增加,可交换形式的CD浓度(Exc-CD),碳酸酯结合形式(CAB-CD),铁 - 锰氧化物结合形式(Femn-CD),有机染料形式(OM-CD),和残余形式(RES-CD)表现出越来越大的趋势。苜蓿根际土壤Cd形式的形式分布比是可交换形式Cd>碳酸盐结合形式Cd>铁 - 锰氧化物结合形式Cd>残余形式Cd>有机结合形式Cd的顺序。除了有机染色的CD外,土壤CD形式与芽和根部的Cd浓度显着呈正相关(P <0.01)。全面考虑生物质和CD积累,印度芥末更适合作为土壤CD污染的修复材料。

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