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91.
Thiobencarb, a thiocarbamate herbicide, is widely used to control weeds in rice paddies. Screening for highly efficient thiobencarb-degrading bacteria is important for the bioremediation of thiobencarb-contaminated environments. The aim of this study was to isolate and identify highly efficient thiobencarb-degrading bacteria and to identify the degradation pathway and the degrading properties. The thiobencarb-degrading strain was isolated using methods of microbiological acclimation and enrichment and was then identified using a 16S rRNA phylogenetic analysis. The degrading properties of the isolated bacterium were determined by single-factor experiments, and the degradation products were identified using gas chromatography-mass spectrometry (GC-MS). A thiobencarb-degrading strain T2, which can utilize thiobencarb as the sole source of carbon for energy and growth, was isolated from paddy soil. Strain T2 degraded more than 98.3% of 0.4 mmol/L of thiobencarb within 36 h. It was preliminarily identified as Bacillus sp. T2 according to the 16S rRNA gene analysis and from its morphological, physiological, and biochemical characteristics. The metabolic products of the thiobencarb degradation for strain T2 were identified as 4-chlorobenzyl mercaptan, 4-chlorobenzaldehyde, and 4-chlorobenzoic acid by the GC-MS. Based on metabolite identification, it was speculated that thiobencarb degradation in strain T2 was initiated by the hydrolysis of the thioester bond to produce 4-chlorobenzyl mercaptan, which was further oxidized to 4-chlorobenzaldehyde and 4-chlorobenzoic acid. The thiobencarb degradation that was initiated by the hydrolysis of the thioester bond by strain T2 is a new metabolic pathway, which provides valuable research material and reliable experimental data for revealing the metabolic process and mechanism of thiobencarb microbial degradation in soil. The strain Bacillus sp. T2 has a very high degradation efficiency, suggesting it is a good prospect for microbial remediation in thiobencarb-polluted environments. © 2018 Science Press. All rights reserved.  相似文献   
92.
一株溶藻细菌对铜绿微囊藻生长的影响及其鉴定   总被引:7,自引:2,他引:5       下载免费PDF全文
从山东黄岛边某富营养化池塘中分离得到1株具有溶藻作用的菌株(J1),研究了其对铜绿微囊藻(Microcystis aeruginosa)的抑制效果、作用方式以及细菌培养基、菌株与铜绿微囊藻不同生长阶段等因素对溶藻效果的影响,并对该菌株进行了生理生化鉴定.结果表明,将牛肉膏蛋白胨培养基加入藻液,培养基与藻液的投放体积比为6%时,9d内对藻的生长无影响.将初始浓度为6×107 cfu/mL的菌液加入藻液,共培养第9d,铜绿微囊藻的去除率达87%以上.对数期的J1细菌具有较好的溶藻效果,作用于稳定期铜绿微囊藻的实验组,藻的去除率较低.J1通过分泌溶藻物质的间接作用方式抑制铜绿微囊藻的生长,且溶藻活性物质具有一定的热稳定性.根据生理生化及16S rDNA序列分析鉴定,菌株J1属于芽胞杆菌属(Bacillus).  相似文献   
93.
从收集自泉州洛江红树林保护区的400个沉积物土壤样品中,分离到18株苏云金芽孢杆菌(Bacillus thuringiensis,Bt).利用PCR-RFLP体系对Bt菌株杀虫晶体蛋白的基因型进行了鉴定,发现15株Bt含有cry1基因,4株含有cry2基因,有3株分别含有cry7、cry8、cry9基因.克隆了一个新型的cry2Ab基因,其编码蛋白与现有Cry2Ab型杀虫晶体蛋白的最高同源性为95%.  相似文献   
94.
常明  孙启宏  周顺桂  倪晋仁 《生态环境》2010,26(6):1471-1477
化学杀虫剂的长期使用给生态环境造成了严重破坏,也使害虫种群的抗药性日益提高,生物杀虫剂以其"绿色环保"的特点引起人们的广泛关注。其中,苏云金芽孢杆菌(Bacillus thuringiensis)制剂是目前世界上产量最大、应用最广的生物杀虫剂。它对鳞翅目、双翅目、鞘翅目、螨类等许多有害昆虫有毒杀作用,而对人类、动物和农作物无害。长期以来,人们一直致力于苏云金芽孢杆菌发酵过程的研究,以期获得高毒效的生物杀虫剂产品。本文首先对苏云金芽孢杆菌发酵生产的各种影响因素进行了综合分析,将影响因素分为培养条件和培养基组分两类,得出最佳培养条件为温度:(30±1)℃,pH:7.0±0.1,搅拌速度:400~600r·min-1,通气量:1∶0.6~1.2(发酵培养基体积与每分钟通入空气的体积之比),接种时间:对数期初;最佳培养基配比为碳氮比:8~10∶1,无机盐含量:KH2PO4或K2HPO4为0.075%~0.2%;MgSO4·7H2O为0.075%~0.3%;CaCO3为0.075%~0.15%;MnSO4·H2O、FeSO4·7H2O各为0.002%。其次,对当前研究与工业化生产中的各种发酵工艺进行了评述,总结了现有发酵工艺的优缺点。在现有研究基础上,降低培养基原料成本、改进发酵工艺和采用基因学手段构建高效工程菌株将成为未来研究热点。  相似文献   
95.
Removal of Pb~(2+)and biodegradation of organophosphorus have been both widely investigated respectively. However, bio-remediation of both Pb~(2+)and organophosphorus still remains largely unexplored. Bacillus subtilis FZUL-33, which was isolated from the sediment of a lake, possesses the capability for both biomineralization of Pb~(2+)and biodegradation of acephate. In the present study, both Pb~(2+)and acephate were simultaneously removed via biodegradation and biomineralization in aqueous solutions.Batch experiments were conducted to study the influence of p H, interaction time and Pb~(2+)concentration on the process of removal of Pb2+. At the temperature of 25°C, the maximum removal of Pb~(2+)by B. subtilis FZUL-33 was 381.31 ± 11.46 mg/g under the conditions of p H 5.5, initial Pb~(2+)concentration of 1300 mg/L, and contact time of 10 min. Batch experiments were conducted to study the influence of acephate on removal of Pb~(2+)and the influence of Pb2+on biodegradation of acephate by B. subtilis FZUL-33. In the mixed system of acephate–Pb2+, the results show that biodegradation of acephate by B. subtilis FZUL-33 released PO43+, which promotes mineralization of Pb2+. The process of biodegradation of acephate was affected slightly when the concentration of Pb2+was below 100 mg/L. Based on the results, it can be inferred that the B. subtilis FZUL-33 plays a significant role in bio-remediation of organophosphorus-heavy metal compound contamination.  相似文献   
96.
红壤对磷有强大吸附固定力,磷肥易被土壤中活性铁、铝固定而使有效态磷转化为各种形态的非有效磷,从而大大降低磷肥的利用率。解磷菌能使土壤中难溶性或不溶性的磷转化为易于被植物吸收利用的磷。通过对江西鹰潭红壤分离筛选并经过紫外诱变获得一株性状稳定的高效解磷细菌Y8。经鉴定,菌株Y8为蜡状芽孢杆菌(Bacillus cereus)。通过与生产中应用的徐州华龙高效复合菌肥厂的解磷细菌X3相比,菌株Y8降解有机磷、溶解Ca3(PO4)2的能力均比较高,分别为155.3mg·L^-1和240.1mg·L^-1。研究各种理化因子对菌株Y8解磷能力的影响,确定了菌株Y8的最佳培养条件为葡萄糖20g·L^-1、NH4(SO4)21.5g·L^-1、pH7.0、温度为35℃,在该条件下菌株Y8溶解Ca3(PO4)2的量为295.6mg·L^-1。在江西鹰潭红壤稻田的施用试验表明,将菌株Y8制成微生物菌剂施用于水稻田可起到减施化肥的作用。  相似文献   
97.
Sustained cultivation of Bacillus thuringiensis (Bt) transgenic crops requires stable transgene expression under variable abiotic conditions. We studied the interactions of Bt toxin production and chronic ozone exposure in Bt cry1Ac-transgenic oilseed rape and found that the insect resistance trait is robust under ozone elevations. Bt Cry1Ac concentrations were higher in the leaves of Bt oilseed rape grown under elevated ozone compared to control treatment, measured either per leaf fresh weight or per total soluble protein of leaves. The mean relative growth rate of a Bt target herbivore, Plutella xylostella L. larvae was negative on Bt plants in all ozone treatments. On the non-transgenic plants, larval feeding damage was reduced under elevated ozone. Our results indicate the need for monitoring fluctuations in Bt toxin concentrations to reveal the potential of ozone exposure for altering dosing of Bt proteins to target and non-target herbivores in field environments experiencing increasing ozone pollution.  相似文献   
98.
一株耐镉细菌的分离及其富集Cd的机理   总被引:4,自引:0,他引:4  
从重金属镉污染土壤中筛选到一株对镉具有较强抗性和富集能力的细菌RC。经形态学观察和生理生化鉴定以及16SrDNA序列分析,RC为蜡状芽孢杆菌(Bacillus cereus)。在不同镉浓度液体培养条件下研究了菌体的生长曲线,并探讨了RC菌株对Zn、Cu的抗性,结果显示RC对不同重金属的抗性机制存在一定的差异。利用扫描电镜、透射电镜观察了镉在RC胞内外的沉积作用及分布情况,结果表明,在镉浓度为150 mg/L时菌体细胞壁及其内部可见大量的高电子密度颗粒,同时在菌体表面也有沉淀物附着。因此,胞内外沉积作用可能是该菌对高浓度镉的抗性和富集作用的重要途径。通过红外光谱探讨了RC积累镉前后细胞壁表面化学基团的变化情况,结果发现RC的细胞壁上参与积累作用的化学官能团主要有—OH、—NH、—CO和—CO—NH—等。  相似文献   
99.
碱性β-聚糖酶产生菌选育及产酶条件优化   总被引:4,自引:0,他引:4  
从碱性土样中分离到数十株产碱性β聚糖酶类的细菌,经摇瓶反复筛选后,得到一株碱性β聚糖酶产量较高的耐碱性细菌.经初步鉴定,属短小芽孢杆菌(Baciluspumilus).其纤维素酶作用的最适pH为7.6,最适θ为60℃,木聚糖酶的作用最适pH为9.0,最适θ为55℃.该菌的最适生长pH为8.0,最适产酶θ为28~32℃.木聚糖与山梨糖分别是木聚糖酶和纤维素酶的良好诱导物.以麸皮为碳源,产酶的最适浓度为5%.添加尿素和(NH4)2SO4为氮源可提高纤维素酶酶活2倍,木聚糖酶酶活1倍.发酵周期为60h,纤维素酶酶活最高可达1.21IUmL-1,木聚糖酶酶活可达43IUmL-1.  相似文献   
100.
不同土壤胶质芽孢杆菌生理生化特征及其解钾活性   总被引:1,自引:0,他引:1  
利用土壤矿物为K源的硅酸盐细菌选择性培养基,从我国部分省市土壤中筛选到30株胶质芽孢杆菌Bacillus muci-laginosus,以辽宁菌种保藏中心胶质芽孢杆菌LICC10201(编号K31)为参照菌株,对其生理生化特性、耐盐性、耐酸碱性、温度敏感性及解K能力等生物学特性进行了测定.结果表明,30株胶质芽孢杆菌菌体均为杆状,产生椭圆至圆形芽孢.其中K3、K9、K19、K31为短杆状,30株菌株均为G~-.NH_4~+、NO_3~-为良好N源,且能在无N培养基上生长.菌株K5、K12和K31解K能力较强,释放的K比不加菌液对照分别增加2.39倍、2.28和2.27倍;K5、K11、K26、K31在w=3%NaCl的培养基上能生长;在25~30℃范围内供试胶质芽孢杆菌均能良好生长;以上试验数据可为将来微生物肥料的研制提供必要的依据.  相似文献   
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