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31.
连续施用发酵猪粪对土壤中四环素抗性基因数量的影响   总被引:4,自引:0,他引:4  
为了研究连续施用发酵猪粪之后,土壤中抗性基因的数量以及发酵猪粪的施用量对土壤抗性基因的影响,采用实时荧光定量PCR方法,对稻麦轮作模式下连续6年施用4.5t/hm2和9.0t/hm2发酵猪粪的土壤进行了四环素抗性基因(TRGs)的检测和定量分析.在施用发酵猪粪的土壤中能够检测到9种TRGs.施用发酵猪粪显著增加了土壤中tet G、tet L、tet B(P)、tet O、tet W的绝对数量,其中tet B(P)、tet W、tet O的绝对数量受到了施肥用量的影响;而tet Z、tet C和tet S的绝对数量则没有受到施肥的影响.上述8种TRGs在同一施肥处理的0~5cm、5~10cm以及10~20cm土壤中的相对丰度分布均无显著差异.发酵猪粪的施用也显著增加了tet G、tet L、tet B(P)和tet O的相对丰度,但是仅有tet O的相对丰度受到了施肥用量的显著影响.本研究表明,在稻麦轮作模式下,农田土壤中的TRGs数量会受到发酵猪粪中残留TRGs的影响,连续施用该粪肥会显著增加土壤中tet G、tet L、tet B(P)和tet O的绝对数量和相对丰度.因此,需要优化畜禽粪堆肥发酵工艺,以减少抗性基因在粪肥中的残留.  相似文献   
32.
污水处理厂产生大量的剩余污泥中含有丰富的抗性基因,给环境带来了潜在风险。以城市污水处理厂的剩余污泥为研究对象,在不同初始p H(对照组、初始p H=3、5、7、9、11)下观察厌氧条件下,8种抗生素浓度以及四环素类抗性基因(tet A、tet G、tet L、tet M、tet O、tet Q、tet W、tet X)、磺胺类抗性基因(sul I、sul II)和Ⅰ类整合子(int I 1)的行为特征。研究结果显示,初始p H对抗生素的降解影响较小,污泥中总抗生素的平均去除率为42%。对照组及初始p H为3、5、7、9、11下的总四环素类抗性基因分别削减0.65 log、0.96 log、0.75 log、0.62 log、0.86 log和0.98 log。不同四环素类抗性基因表现相似,在初始p H=3和初始p H=11下部分抗性基因削减较多,特别是tet A、tet G、tet L、tet O和tet X。2种磺胺类抗性基因均无削减,浓度平均上升0.18log。相关性分析显示,总抗性基因与TN、NH3-N、TP、SCOD(溶解性COD)均存在显著相关性(P0.05)。上述研究结果为污泥厌氧消化中抗生素抗性基因减量条件提供参考依据。  相似文献   
33.
Amphibian metamorphosis provides a wonderful model to study the thyroid hormone (TH) signaling disrupting activity of environmental chemicals, with Xenopus laevis as the most commonly used species. This study aimed to establish a rapid and sensitive screening assay based on TH-response gene expression analysis using Pelophylax nigromaculatus, a native frog species distributed widely in East Asia, especially in China. To achieve this, five candidate TH-response genes that were sensitive to T3 induction were chosen as molecular markers, and T3 induction was determined as 0.2 nmol/L T3 exposure for 48 hr. The developed assay can detect the agonistic activity of T3 with a lowest observed effective concentration of 0.001 nmol/L and EC50 at around 0.118–1.229 nmol/L, exhibiting comparable or higher sensitivity than previously reported assays. We further validated the efficiency of the developed assay by detecting the TH signaling disrupting activity of tetrabromobisphenol A (TBBPA), a known TH signaling disruptor. In accordance with previous reports, we found a weak TH agonistic activity for TBBPA in the absence of T3, whereas a TH antagonistic activity was found for TBBPA at higher concentrations in the presence of T3, showing that the P. nigromaculatus assay is effective for detecting TH signaling disrupting activity. Importantly, we observed non-monotonic dose-dependent disrupting activity of TBBPA in the presence of T3, which is difficult to detect with in vitro reporter gene assays. Overall, the developed P. nigromaculatus assay can be used to screen TH signaling disrupting activity of environmental chemicals with high sensitivity.  相似文献   
34.
Piriformospora indica, a root-colonizing endophytic fungus of Sebacinales, promotes plant growth and confers resistance against biotic and abiotic stresses. In order to confirm the influence of P. indica on growth, proline, malondialdehyde (MDA), chlorophyll, and cadmium (Cd) amounts in Nicotiana tabacum under Cd stress, hydroponics, pot and field trials were conducted. The results showed that P. indica can store Cd in plant roots and reduce leaf Cd content, reduce the concentration of MDA, and increase the proline and chlorophyll content and the activities of catalase, peroxidase, and superoxide dismutase under hydroponic Cd stress. RT-PCR analysis showed that the relative expression level of genes Gsh2, TaPCS1, oas1, GPX, and Hsp70 in colonized plants was 4.3, 1.4, 2.9, 1.7, and 6.9 fold higher than in un-colonized plants respectively. Cd exposure significantly reduced un-colonized plants'' agronomic traits compared to P. indica-colonized ones. Our results suggested that P. indica can sequester Cd in roots, so that much less cadmium was transported to leaves, and the increased concentrations of antioxidant enzymes, pigments and proline contents, as well as the higher expression of stress-related phytochelatin biosynthesis genes in P. indica-inoculated plants, may also serve to protect N. tabacum plants against oxidative damage, enhancing Cd tolerance.  相似文献   
35.
环境雌激素对两栖动物的生殖内分泌干扰作用已引起关注,目前的研究主要集中在长期暴露对性腺分化和发育的影响。以雌二醇(E2,10 nmol·L-1)为模式化合物,以非洲爪蟾为实验动物,6月龄的幼蛙暴露6 d,研究雌激素对性腺和输卵管形态以及性二态性基因表达的影响。结果发现,6 d的E2暴露对精巢和卵巢的形态没有明显影响,但从组织学结构来看对卵和精子的发育有微弱的促进作用。E2能够明显地促进了雌性输卵管的发育,表现为输卵管变粗变弯曲。E2暴露显著抑制精巢和卵巢中性激素合成相关基因cyp11a1、3βHSD、Srd5α、ARO的表达,对cyp17的表达无影响,使脑中LHβ和FSHβ的表达下调;对性别分化和性腺发育相关基因Dax、AR、ERα、TFⅢA、TBPL2的表达均无影响,但能够促进卵巢中Sox3的表达;同时促进脑中Emi2的表达,抑制脑中Dmrt1的表达。因此,输卵管可作为敏感的形态指标,性腺中Srd5α、cyp11a1、3βHSD、ARO、Sox3和脑中LHβ、FSHβ、Dmrt1、Emi2可作为分子指标。以上结果可为后续建立评价化学品对两栖动物雌激素效应的短期试验方法提供参考。  相似文献   
36.
一株贫营养异养硝化-好氧反硝化菌的筛选及脱氮特性   总被引:5,自引:0,他引:5  
为了探究并优化菌剂应用于微污染水源水体修复的机制和条件,主要针对水库沉积物内筛选出的贫营养好氧反硝化菌进行了菌种鉴定及脱氮特性研究,考察菌株在不同环境条件下的脱氮效果,明确了该菌株的最适宜生长条件,并基于水库水体中贫营养条件对菌株进行水源水库原水的驯化培养试验研究,以期实现该菌株对微污染水源水库原水中氮源污染物的脱除,为原位投菌技术实际工程应用提供理论依据。从微污染水源水库沉积物中驯化筛分出一株高效异养硝化-好氧反硝化菌A14,通过扫描电镜观察、生理生化特征、16S rRNA基因测序和Biolog GenⅢ鉴定,确定该菌株为革兰氏阴性短杆菌,鉴定为皮特不动杆菌(Acinetobacter pittii)。在好氧条件下,菌株细胞内表达反硝化功能基因napA,以NO3-为唯一氮源进行反硝化作用时,36 h时NO3-去除率为78.89%。以NH4+为唯一氮源时,48 h NH4+去除率为95.25%,TN去除率达80.42%,TOC去除率达98.30%,表明该菌株具有异养硝化-好氧反硝化特性。在改变环境条件过程中,该菌株在以乙酸钠为碳源,温度为30℃,C/N为12,pH为7,接种量为10%时,NO3-去除率最高为86.62%,并且在10℃下脱氮率达到40.18%。在水源水库原水脱氮实验中,接种处理TN去除率为50.95%,NO3-去除率为80.25%。结果表明,菌株A14在微污染水源水体菌剂脱氮修复中具有良好的应用潜力。  相似文献   
37.
近年来,水产养殖病源弧菌污染及其耐药性问题备受关注,本研究首次采用宏基因组测序技术分析了海水养殖沉积物在大型海藻裂片石莼(12 g·L-1)与不同浓度(0、10、100、500 μg·L-1)土霉素作用3个月后,弧菌群落结构及其耐药基因变化特性.结果表明,经裂片石莼诱导培养后,沉积物中弧菌属相对丰度降低了0.22%,但对弧菌多样性和弧菌耐药基因含量提升明显.裂片石莼和土霉素复合压力下,100 μg·L-1土霉素对弧菌群落多样性及弧菌耐药基因影响最大,而500 μg·L-1对其影响最小.沉积物弧菌属共检测出21种耐药基因,多为BL1_fox、BL2be_per、BL2_veb等β-内酰胺类耐药基因.裂片石莼能减少耐药基因tetPB富集,而进一步添加土霉素能诱导产生VatB、BcrA耐药基因.此外,弧菌耐药基因迁移与转化还受弧菌群落结构变化影响.  相似文献   
38.
Antibiotic resistance is a sword of Damocles that hangs over humans. In regards to airborne antibiotic resistance genes (AARGs), critical knowledge gaps still exist in the identification of hotspots and quantification of exposure levels in different environments. Here, we have studied the profiles of AARGs, mobile genetic elements (MGEs) and bacterial communities in various atmospheric environments by high throughput qPCR and 16S rRNA gene sequencing. We propose a new AARGs exposure dose calculation that uses short-term inhalation (STI). Swine farms and hospitals were high-risk areas where AARGs standardised abundance was more abundant than suburbs and urban areas. Additionally, resistance gene abundance in swine farm worker sputum was higher than that in healthy individuals in other environments. The correlation between AARGs with MGEs and bacteria was strong in suburbs but weak in livestock farms and hospitals. STI exposure analysis revealed that occupational intake of AARGs (via PM10) in swine farms and hospitals were 110 and 29 times higher than in suburbs, were 1.5 × 104, 5.6 × 104 and 5.1 × 102 copies, i.e., 61.9%, 75.1% and 10.7% of the overall daily inhalation intake, respectively. Our study comprehensively compares environmental differences in AARGs to identify high-risk areas, and forwardly proposes the STI exposure dose of AARGs to guide risk assessment.  相似文献   
39.
Biofilm-producing bacteria can decrease Cd uptake in vegetables, but mechanisms underlying this effect are poorly characterized. In this study, two mutant strains B12ΔYwcc and B12ΔSlrR were constructed from a biofilm-producing Bacillus subtilis strain B12. Then, the impacts of strain B12 and its high biofilm-producing mutant strain B12ΔYwcc and low biofilm-producing mutant strain B12ΔSlrR on Cd availability and uptake in Chinese cabbage and the related mechanisms were investigated in the Cd-polluted soil. Strain B12 and its mutants B12ΔYwcc and B12ΔSlrR increased the dry biomasses of edible tissues by 54%–130% compared with the controls. Strain B12 and its mutant B12ΔYwcc reduced the soil available Cd content by 36%–50% and root and edible tissue Cd contents by 23%–50% compared with the controls. Furthermore, the mutant strain B12ΔYwcc reduced the edible tissue Cd content by 40% and increased the polysaccharide content by 23%, invertase activity by 139%, and gene copies of the cumA by 4.5-fold, epsA by 7.1-fold, and cadA by 4.3-fold, which were involved in Cd adsorption in the rhizosphere soils, respectively, compared with strain B12. The polysaccharide content and cumA, epsA, and cadA gene copy numbers showed significantly reverse correlations with the available Cd content. Notably, the mutant strain B12ΔYwcc showed better ability to colonize the vegetable root surface than strain B12. These findings demonstrated that the biofilm-overproducing mutant strain B12ΔYwcc increased the polysaccharide production and Cd-immobilizing related cumA, epsA, and cadA gene copies, resulting in lower Cd availability and accumulation in Chinese cabbage in the Cd-polluted soil.  相似文献   
40.
利用定向驯化高效石油降解菌系对石油污染土壤进行为期120 d原位修复,考察生物强化修复效果、土壤理化性质和酶活性的变化,结合宏基因组测序及生物信息学分析揭示其强化机制.结果表明,与空白对照组(Ctrl)相比,生物修复组(Exp-BT)总石油烃降解率显著提升,增幅达81.23%; 高效石油降解菌生物强化修复期间土壤pH变化稳定,体系氧化能力提高,电导率处于适宜农业活动范围内; 脂肪酶和脱氢酶在修复期间保持较高活性; 另对初始污染土壤样本(B0)、驯化所得高效石油降解菌系样本(GZ)和生物修复后土壤样本(BT)的分析显示,门水平上变形菌门与放线菌门相对丰度增加17.1%,属水平上NocardioidesAchromobacterGordoniaRhodococcus等丰度明显上升,COG和KEGG物种与功能贡献度分析证明以上菌属对石油烃降解有重要贡献; 修复后土壤中发现高丰度的石油烃相关代谢酶及5个降解基因:alkM、tamA、rubB、ladAalkB,分析表明外源石油烃降解菌群的引入增强了微生物相关酶的代谢活性与相应功能基因的表达.  相似文献   
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