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1.
采用绿豆为供试植物,通过温室盆栽试验研究接种丛枝菌根(arbuscular mycorrhiza,AM)真菌与DEHP降解菌对DEHP污染土壤的修复作用以及对植物生长的影响.试验土壤中添加DEHP含量为100mg·kg-1,试验设AM真菌Acaulospora laelis 90034、降解菌Bacillus sp.DW1和Gordonia sp.DH3单独接种以及互相组合的联合接种处理,同时设置不接种的对照处理(CK).苗后60 d收获植株.结果表明,AM真菌能很好的侵染绿豆的根系,菌根侵染提高了绿豆地上部分的干重,而对根系的干重则没有显著的影响;同时菌根侵染也促进了绿豆的P营养.但接种DW1与DH3对菌根侵染率与绿豆生长都没有显著影响.3种菌剂无论是单独或者联合接种都能显著促进土壤中DEHP的降解,3种菌剂同时接种则对DEHP的降解能达到最好的协同作用,同时也减少DEHP在绿豆地上部分的累积,这为DEHP污染农田土壤的植物修复提供了理论依据.  相似文献   

2.
A pot experiment was conducted to study the e ects of arbuscular mycorrhizal (AM) fungi (from contaminated or uncontaminated soils) on arsenic (As) uptake of tobacco (Nicotiana tabacum L.) in As-contaminated soil. Mycorrhizal colonization rate, dry weight, As and P uptake by plants, concentrations of water-extractable As and As fractions were determined. A low mycorrhizal colonization rate (< 25%) was detected. Our research indicated that AM fungi isolated from polluted soils were no more e ective than those from unpolluted soils when grown in symbiosis with tobacco. No significant di erences were observed in roots and stalks dry weights among all treatments. Leaves and total plant dry weights were much higher in Glomus versiforme treatment than that in control treatment. As contents in roots and stalks from mycorrhizal treatments were much lower than that from control treatment. Total plant As content exhibited the same trend. P concentrations in tobacco were not a ected by colonization, nor were stalks, leaves and total plant P contents. Roots P contents were remarkably lower in HN treatments than in other treatments. Meanwhile, decreased soil pH and lower water-extractable As concentrations and higher levels of As fraction bound to well-crystallized hydrous oxides of Fe and Al were found in mycorrhizal treatments than in controls. The protective e ect of mycorrhiza against plant As uptake may be associated with changes in As solubility mediated by changing soil pH. These results indicated that under As stress, proper mechanisms employed by AM fungi can protect tobacco against As uptake. Results confirmed that AM fungi can play an important role in food quality and safety.  相似文献   

3.
under As stress, proper mechanisms are employed by AM fungi to protect tobacco against As uptake. Results confirm that AM fungi can play an important role in food quality and safety.  相似文献   

4.
张旭红  林爱军  崔玉静 《环境科学》2007,28(5):1107-1112
采用盆栽实验的方法,研究了百菌清对旱稻 (Oryza sativa L.)生长和氧化胁迫的影响,以及接种丛枝菌根真菌(arbuscular mycorrhizal fungi, AMF)对百菌清污染下旱稻生长的影响和对旱稻氧化胁迫的影响.结果表明,百菌清处理对旱稻的生长有明显的抑制作用,施加百菌清后可以使旱稻地上部的生物量由2.5 g·pot-1下降到1.0 g·pot-1以下;地下部分的生物量在施加百菌清处理后由0.9 g·pot-1下降到0.3 g·pot-1以下.百菌清处理下接种AMF能显著提高旱稻生物量,接种菌根真菌能使50 mg·kg-1百菌清处理下旱稻的生物量增加1倍以上.百菌清处理能显著降低旱稻对磷(P)营养元素的吸收,在50 mg·kg-1百菌清处理下旱稻地上部分P的吸收量由3 200 μg·pot-1下降到860 μg·pot-1,接种AMF能使旱稻地上部P的吸收量增加到1 900 μg·pot-1.百菌清处理还可以引起旱稻体内的氧化胁迫,改变旱稻体内抗氧化酶系统的活性,而接种菌根真菌能降低百菌清对旱稻产生的氧化胁迫,从而减轻百菌清污染对旱稻的毒性作用.总之,百菌清土壤污染能够引起旱稻体内的氧化胁迫、降低旱稻P的吸收量而影响植物生长,接种菌根真菌能显著改善旱稻的生长和降低百菌清对旱稻的影响.  相似文献   

5.
丛枝菌根真菌对紫羊茅镉吸收与分配的影响   总被引:8,自引:0,他引:8  
采用盆栽方法模拟土壤Cd污染状况,研究接种丛枝菌根真菌对紫羊茅生长及对Cd吸收、分配的影响.结果表明,土壤加Cd15~50mg·kg-1对菌根侵染率无显著影响;在不加Cd的土壤中,接种菌根真菌有助于Cd的吸收和向地上部的运输;在Cd污染土壤中,接种菌根真菌并未明显改善紫羊茅的磷营养状况,并且也没有明显增加紫羊茅的生物量,但是地上部的Cd浓度和吸收量均显著低于不接种的处理,其原因是菌根真菌强化了Cd在紫羊茅根系的固持作用,减少Cd在地上部的分配比例,从而降低了紫羊茅地上部对Cd的积累.试验还观察到,不同菌根真菌对紫羊茅吸Cd量的影响具有一定差异,Glomusintraradices在Cd污染的土壤中对Cd吸收的抑制效应大于Glomousmosseae.这些结果一方面说明菌根真菌侵染是紫羊茅地上部Cd含量减少的直接原因,同时也反映出在自然生态系统中,作为污染物由土壤环境进入食物链系统的门户之一的丛枝菌根真菌在调节生态系统中重金属Cd的生物循环、减轻重金属Cd对食物链的污染风险方面发挥着重要作用.  相似文献   

6.
沼渣是厌氧发酵的残余物,可作为肥料施用,但因其含有一定量的重金属等有害物质可能导致环境污染风险.丛枝菌根(Arbuscular mycorrhiza,AM)真菌作为植物共生真菌,可以促进植物对矿质养分的吸收,同时能够通过不同途径减轻重金属对植物的毒害.本文采用甘草(Glycyrrhiza uralensis Fisch.)为供试植物开展盆栽试验,考察施用沼渣结合接种AM真菌对甘草生长和矿质营养的影响.试验结果表明,施用沼渣显著促进了植物生长,提高了植物生物量、磷含量和叶片叶绿素含量,与此同时提高了土壤有机质和磷、铬、铜、铅含量,并导致植物重金属含量显著升高.另一方面,AM真菌能够和甘草根系形成良好共生关系,但施用沼渣对菌根侵染表现出显著抑制作用.接种AM真菌促进了甘草生长、提高了根系磷含量及叶片叶绿素含量,同时显著降低了植株重金属含量至安全阈值以内.本试验表明,施用沼渣同时接种AM真菌可在促进甘草生长的同时阻控重金属污染风险,因而可作为沼渣安全利用的一种可行技术途径.  相似文献   

7.
Arbuscular mycorrhizal fungal (AMF) colonization and nodulation of groundnut were examined in nine soils collected from subsistence farmers’ fields in Zimbabwe. Nodule number, shoot dry weight, shoot N and P contents, and AMF colonization were assessed after 6 weeks growth. Both nodule number and AMF colonization differed by an order of magnitude among the nine soils. Soil available P explained almost all the variability in nodule number (r2 = 0.98), but had no significant effect on percent AMF colonization. By adding P to one soil, nodule numbers increased four-fold resulting in a significantly higher N content in the shoots. Similar, but smaller, effects were obtained by increasing the abundance of AMF through an inoculation with Glomus intraradices, suggesting that nodulation in this soil was limited by AMF abundance and that the fungi could, to a limited extent, substitute for P fertilizer.  相似文献   

8.
钙和钙离子通道阻断剂对丛枝菌根真菌吸收镉的影响   总被引:1,自引:0,他引:1  
本试验以三叶草(Trifolium repense L.)为宿主植物,Glomusintra radices为供试菌种,通过分室系统将外生菌丝与植物根系分隔开,并对菌丝室加以不同含量水平的Ca2+、Cd2+和Ca2+通道阻断剂(Verapamil、LaCl3)进行处理,研究在菌丝吸收过程中Cd2+与Ca2+以及Ca2+通道之间的关系.试验结果表明,高Cd2+和LaCl3处理可促进菌丝发育;高Cd2+和Verapamil、LaCl3处理不同程度地降低了菌丝对Ca2+的吸收;高Ca2+和LaCl3处理则可提高菌丝对Cd2+的吸收.根据本试验结果可以认为,Cd2+在菌丝上的跨膜转运不是通过Ca2+通道完成,而且高Ca2+水平有利于Cd2+被菌丝吸收.  相似文献   

9.
通过盆栽模拟试验研究了不同磷石膏(PG)添加量(0、20、40g·kg-1)和接种3种丛枝菌根真菌(Glomus mosseae(GM)、Glomus aggregatum(GA)、Diversispora spurcum(DS))对玉米生长及其磷、硫、砷吸收的影响.试验结果表明:随磷石膏添加量的提高,土壤有效磷、有效...  相似文献   

10.
大气中O3、CO2浓度升高对蒙古栎叶片生长的影响   总被引:1,自引:0,他引:1       下载免费PDF全文
以4年生蒙古栎(Quercus mongolica) 幼树为实验材料,分别于2007,2008年6~9月采用开顶箱法,研究了高浓度CO2和O3及复合作用对蒙古栎叶片光合量变化和生长的影响.结果表明,高浓度O3处理下蒙古栎叶片日光合总量降低, 单叶鲜重、干重和单叶面积均有所下降,对蒙古栎叶片生长产生抑制.高浓度CO2处理下,蒙古栎叶片干、鲜重和单叶面积均高于对照,其中2007年差异显著,日光合总量总体高于对照.2种气体复合作用处理下,蒙古栎日光合总量、单叶鲜重、单叶干重、单叶面积均低于对照,且高于O3单独处理,说明高浓度CO2可以通过减缓O3对植物光合的抑制,进而减少O3伤害,缓解生长抑制.  相似文献   

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