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11.
镧-铅复合污染下AM真菌对玉米生长和镧、铅吸收的影响   总被引:2,自引:1,他引:1  
常青  郭伟  潘亮  王起凡  周昕南  杨亮  李娥 《环境科学》2017,38(9):3915-3926
采用温室盆栽试验的方法,模拟不同程度的镧-铅复合污染土壤(50、200、800 mg·kg~(-1)),研究接种丛枝菌根(arbuscular mycorrhizal,AM)、真菌Claroideoglomus etunicatum(CE)和Rhizophagus intraradices(RI)对玉米(Zea mays L.)菌根侵染率、生物量、矿质营养元素吸收、C∶N∶P生态化学计量比、稀土镧(La)和重金属铅(Pb)吸收、转运的影响,旨在为稀土-重金属复合污染土壤的治理和修复提供科学依据.结果表明,AM真菌CE和RI均与玉米建立了共生关系,平均菌根侵染率为26.7%~95.8%;随着La-Pb复合污染含量的增加,玉米植株菌根侵染率、地上部和根部生物量以及N、P、K、Ca、Mg这5种矿质营养元素含量显著降低,而玉米植株C∶P和N∶P以及地上部和根部La、Pb含量显著增加.接种2种AM真菌使玉米植株生物量显著提高了17.8%~158.9%,地上部和根部P含量显著提高了24.5%~153.8%,降低了C∶P和N∶P,符合生长速率假设.在3种程度La-Pb复合污染含量土壤上,AM真菌使玉米植株根部Pb含量显著增加了51.3%~67.7%,地上部Pb含量显著降低了16.0%~67.7%,Pb从玉米根部向地上部的转运率降低了31.5%~54.7%;同时,接种AM真菌显著增加了轻度LaPb复合污染土壤上玉米植株的La含量,在中度La-Pb复合污染土壤上却显著减少了玉米地上部的La含量,增加了玉米根部的La含量,抑制了La从根部向地上部的转运,重度La-Pb复合污染土壤上均没有显著影响.试验结果初步证明,AM真菌具有促进稀土-重金属复合污染土壤植物修复的潜力,对于稀土-重金属复合污染土壤生态系统的植被恢复具有潜在应用价值.  相似文献   
12.
一株降解邻苯二甲酸酯真菌的筛选及其降解特性研究   总被引:2,自引:1,他引:1  
采用富集培养法,从PAEs污染的农田土壤中筛选出1株邻苯二甲酸酯类化合物(PAEs)降解真菌F9,经形态学特征及18S rDNA序列分析,初步鉴定为爪哇正青霉(Eupenicillum javanicun).通过正交试验研究,得出菌株F9的最优降解条件是:C:N为20:1、pH为7.0、最佳PAEs初始浓度为50 mg·L-1.菌株F9对土壤中复合PAEs(DMP、DEP和DOP)有良好的降解效果.在30 d培养期内,可将灭菌土壤中300 mg·kg-1的PAEs降解65.2%,且培养第一阶段(0~15 d)的降解率远高于第二阶段(16~30 d).  相似文献   
13.
2株降解菲的植物内生细菌筛选及其降解特性   总被引:2,自引:1,他引:1  
倪雪  刘娟  高彦征  朱雪竹  孙凯 《环境科学》2013,34(2):746-752
为了获得具有菲降解特性的植物内生细菌,通过选择性富集培养,本研究从多环芳烃污染区植物体内分离得到2株能够降解液体培养基中高浓度菲(200 mg·L-1)的植物内生细菌(菌株P1和P3).经形态观察、生理生化特征鉴定和16S rDNA序列同源性分析,分别将菌株P1和P3鉴定为寡养单胞菌属(Stenotrophomonas sp.)和假单胞菌属(Pseudomonas sp.)的细菌.菌株P1和P3均为好氧生长,28℃、150 r·min-1摇床培养7 d,2株菌对无机盐培养基中菲(100 mg·L-1)的降解率均高于90%.条件实验表明,温度20~30℃,pH 6.0~8.0,盐含量0%~4%,装液量10~30 mL(100 mL三角瓶)2菌株生长良好且对菲降解率高于70%.其最适生长和降解温度为30℃,pH为7.0,盐含量≤4%,装液量≤30 mL.综合比较2株菌对菲的降解特性,P1菌株高温耐受性稍强,而P3菌株对环境pH改变和缺氧的耐受性稍强.  相似文献   
14.
内生菌是生活于植物的各组织、器官内部,但并不使植物表现出有害症状的真菌、细菌或放线菌。因其具有固氮、矿物溶解、光合作用、载运铁、利用1-氨基环丙烷-1羧酸为唯一氮源、传递营养物质等作用,内生菌在修复重金属污染土壤方面具有重要应用潜力。本文综述了内生菌及其抗重金属机理(促进植物生长和拮抗重金属方面)研究进展,以期为修复重金属污染土壤提供新思路。  相似文献   
15.
3种杀真菌剂对 AM真菌侵染和黄芩生长的影响   总被引:1,自引:0,他引:1  
贺学礼  王平  马丽  孟静静 《环境科学》2012,33(3):987-991
为了合理施用杀真菌剂,充分利用AM(arbuscular mycorrhiza)真菌资源提高中药材产量和品质,减少农药投入和环境污染.本试验在土培条件下,以非灭菌土为生长基质,研究了喷施苯菌灵、苯醚甲环唑和氟硅唑对AM真菌(摩西球囊霉Glomusmossea)侵染和黄芩(Scutellaria baicalensis)生长的影响.结果表明,同一施药条件下,接种摩西球囊霉总体上表现出促进黄芩生长的趋势,但菌根效应因杀真菌剂不同而有差异.不同施药条件下,未接种黄芩生长受到抑制,接种株中,喷施苯菌灵,植株地上部K和地下部Fe含量显著降低;喷施苯醚甲环唑,植株全N、地上部K、地下部黄芩苷和Ca含量显著降低;喷施氟硅唑,菌根侵染率、植株全P、黄芩苷、K、地上部Cu、地下部全N、Ca、Zn和Fe含量显著降低.氟硅唑对摩西球囊霉和黄芩生长抑制效果大于苯醚甲环唑和苯菌灵.说明氟硅唑对摩西球囊霉毒性大.因此,为了减轻杀真菌剂对AM真菌的危害,发挥菌根效应,在达到防治病害的基础上应选用对AM真菌毒性小的杀真菌剂.  相似文献   
16.
The effects of arbuscular mycorrhizal fungi (AMF) Glomus mosseae on the responses to elevated O3 in growth and nutrition of snap bean (Phaseolus vulgaris L. cv Guangzhouyuan) were investigated. Exposure was conducted in growth chambers by using three O3 concentrations (20 (CF), 80 (CFO1) and 120 nL/L (CFO2); 8 hr/day for 75 days). Results showed that elevated O3 slightly impacted overall mycorrhizal colonization, but significantly decreased the proportional frequency of hypha and increased the proportional frequency of spores and vesicles, suggesting that O3 had significant effects on mycorrhizal structure. Elevated O3 significantly decreased yield, dry mass and nutrient contents (N, P, K, Ca and Mg) in both non-mycorrhizal and mycorrhizal plants. However, significant interactive effects were found in most variables due to that the reduction by O3 in the mycorrhizal plants was less than that in the non-mycorrhizal plants. Additionally, AMF increased the concentrations of N, P, Ca, and Mg in shoot and root. It can be concluded that AMF alleviated detrimental effects of increasing O3 on host plant through improving plant nutrition and growth.  相似文献   
17.
Arbuscular mycorrhizal fungi(AMF) are important components of soil microbial communities,and play important role in plant growth. However, the effects of AMF phylogenetic groups(Glomeraceae and non-Glomeraceae) on host plant under various heavy metal levels are not clear. Here we conducted a meta-analysis to compare symbiotic relationship between AMF phylogenetic groups(Glomeraceae and non-Glomeraceae) and host plant functional groups(herbs vs. trees, and non-legumes vs. legumes) at three heavy metal levels. In the meta-analysis, we calculate the effect size(ln(RR)) by taking the natural logarithm of the response ratio of inoculated to non-inoculated shoot biomass from each study. We found that the effect size of Glomeraceae increased, but the effect size of non-Glomeraceae decreased under high level of heavy metal compared to low level. According to the effect size, both Glomeraceae and non-Glomeraceae promoted host plant growth, but had different effects under various heavy metal levels. Glomeraceae provided more benefit to host plants than non-Glomeraceae did under heavy metal condition, while non-Glomeraceae provided more benefit to host plants than Glomeraceae did under no heavy metal. AMF phylogenetic groups also differed in promoting plant functional groups under various heavy metal levels.Interacting with Glomeraceae, herbs and legumes grew better than trees and non-legumes did under high heavy metal level, while trees and legumes grew better than herbs and non-legumes did under medium heavy metal level. Interacting with non-Glomeraceae, herbs and legumes grew better than trees and non-legumes did under no heavy metal. We suggested that the combination of legume with Glomeraceae could be a useful way in the remediation of heavy metal polluted environment.  相似文献   
18.
The use of filamentous fungi in bioremediation of heavy metal contamination has been developed recently. This research aims to observe the capability of filamentous fungi isolated from forest soil for bioremediation of mercury contamination in a substrate. Six fungal strains were selected based on their capability to grow in 25 mg/L Hg2+-contaminated potato dextrose agar plates. Fungal strain KRP1 showed the highest ratio of growth diameter, 0.831, thus was chosen for further observation.Identification based on colony and cell morphology carried out by 18S rRNA analysis gave a 98%match to Aspergillus flavus strain KRP1. The fungal characteristics in mercury(Ⅱ) contamination such as range of optimum pH, optimum temperature and tolerance level were 5.5–7 and 25–35℃ and 100 mg/L respectively. The concentration of mercury in the media affected fungal growth during lag phases. The capability of the fungal strain to remove the mercury(Ⅱ) contaminant was evaluated in 100 mL sterile 10 mg/L Hg2+-contaminated potato dextrose broth media in 250 mL Erlenmeyer flasks inoculated with 108spore/mL fungal spore suspension and incubation at 30℃ for 7 days. The mercury(Ⅱ) utilization was observed for flasks shaken in a 130 r/min orbital shaker(shaken) and nonshaken flasks(static) treatments. Flasks containing contaminated media with no fungal spores were also provided as control. All treatments were done in triplicate. The strain was able to remove 97.50%and 98.73% mercury from shaken and static systems respectively. A. flavus strain KRP1 seems to have potential use in bioremediation of aqueous substrates containing mercury(Ⅱ) through a biosorption mechanism.  相似文献   
19.
采用真菌分离纯化的方法从某重金属污染土壤中筛选分离出一株能够耐受并吸附二价镉、锌离子(Cd(Ⅱ)、Zn(Ⅱ))的真菌菌株LP-20。考察不同修复时间以及土壤p H值对固定化效率的影响。固定化效率以反应前后的镉锌有效态含量(利用TCLP提取液提取法测定)变化衡量。根据ITS(Internal transcribed spacer)r RNA基因测序结果,菌株LP-20属于Trichoderma spirale。LP-20对于Cd(Ⅱ)的固定效果普遍优于Zn(Ⅱ),并且对Cd(Ⅱ)的固定时间(10 d)少于对Zn(Ⅱ)的固定时间(20 d)。LP-20对于Cd(Ⅱ)和Zn(Ⅱ)的固定作用的最适宜p H范围为3~5。发现能够对土壤中镉锌离子具有良好固定化效果的真菌菌株对于发展土壤重金属污染的原位无毒无害化治理技术具有重要的实际意义。  相似文献   
20.
室内模拟研究了农田土壤中酞酸酯(PAEs)含量、土壤基础呼吸量和真菌数量在PAEs降解过程中的变化。试验设对照(CK)、接种(JZ)和补种(BZ)3种处理,补接种的PAEs降解真菌(棒束梗霉属F3、芽枝状枝孢F4和爪哇正青霉F9)以每种2%的接种量加入土中,补种量与接种量相同,补种周期为20 d。结果表明,3种处理对土壤PAEs都有一定的降解作用,但接种和补种处理的土壤中4种复合PAEs总降解率分别比对照处理高出46.53%和51.54%。在试验周期内,补种处理的土壤麦角固醇含量维持在2.5~3.0μg/g,表明真菌数量稳定,而对照处理的土壤麦角固醇含量表现为先升高随后逐渐降低的趋势,60 d时下降到1.9μg/g;3种处理的土壤基础呼吸量也均呈下降趋势。因此,接种真菌可提高土壤PAEs的降解效率,而补种措施是保持土壤中真菌数量稳定的有效方法。  相似文献   
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