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1.
蔡婷  张珊  李鑫  向文良 《微生物学报》2023,63(7):2864-2879
【目的】探究土壤中四环素残留对土培黄豆芽的生长发育、根际微生物及营养品质的影响,为正确评估抗生素残留对蔬菜种植业的影响及制定土壤-蔬菜系统中抗生素污染防控策略提供理论基础。【方法】模拟土壤中不同四环素残留水平(0、25、50mg/kg),采用高效液相色谱(high performance liquid chromatography,HPLC)方法测定黄豆芽中的四环素残留量、理化方法测定黄豆芽的营养品质、高通量技术测定根际微生物群落。【结果】黄豆芽中四环素累积量随土壤中四环素残留量的增加而增加,累积量分布表现为根>下胚轴>子叶;四环素残留显著抑制黄豆芽的根和下胚轴的发育及其生物量、维生素C含量和抗氧化性,但增加了纤维素含量。在这些指标中维生素C含量的变化最显著,在黄豆芽生长第5天,25mg/kg和50mg/kg四环素残留组中,黄豆芽中维生素C含量较对照组分别降低41.35%和49.80%;此外,四环素残留显著影响黄豆芽根际微生物群落结构,尤其是与氮循环相关的属。其中,明显增加了不动杆菌属(Acinetobacter)和栖热菌属(Thermus)的相对丰度,减少了假黄色单胞菌属(Pseudoxanthomonas)和氢嗜菌属(Hydrogenophaga)的相对丰度。【结论】土壤中的四环素残留显著影响黄豆芽的生长发育、根际微生物群落结构以及维生素C等重要营养品质指标。  相似文献   

2.
目的 探索肠道益生菌在抗生素残留监测中的应用并建立牛奶中多种抗生素残留的微生物学筛检方法。方法 厌氧培养分离健康人肠道益生菌并用纸片扩散法检测其对四环素、红霉素、青霉素、庆大霉素、氯霉素和万古霉素的敏感性。根据药敏结果及产酸能力选择工作菌株。建立基于厌氧培养的益生菌抗生素残留筛检方法并优化实验条件,测定其对不同抗生素的检测限,通过测定加标模拟阳性和阴性样本计算方法的准确性。结果 短双歧杆菌A2可用于牛奶抗生素残留筛检。应用短双歧杆菌筛检牛奶中四环素、红霉素和青霉素的检测限分别为80 μg/L、40 μg/L和3 μg/L,检测加标四环素、红霉素和青霉素的牛奶样品准确性为100.0%、92.5%和90.0%,无假阴性结果。结论 应用益生菌的筛检方法敏感、简便,对环境和操作者友好,适用于监测牛奶中四环素、红霉素和青霉素等多种抗生素。  相似文献   

3.
植物硒吸收转化机制及生理作用研究进展   总被引:3,自引:0,他引:3  
硒是大多微生物、动物及人类的必要微量元素,但其在植物生长发育中的生理作用至今存在争议.较低浓度硒具有促进植物生长、提高植物耐受能力的功能,而大部分植物在高浓度下表现出中毒现象.随着人类对摄入硒及环境硒污染问题的认识加深,作物硒生物强化与硒污染植物修复问题引起重视,推动了对硒在植物中的吸收积累及代谢调控的研究.近年来对植物硒吸收及转化的研究表明,不同硒水平下植物对硒吸收积累及生理响应存在差异,土壤环境因素对植物硒吸收及转化具有重要影响,对高聚硒植物硒代谢研究逐渐揭示出硒在植物体内的转化过程和调控机理等.本文总结了目前硒生物强化与植物修复方面的研究进展,对环境中硒分布特点、植物硒吸收及其影响因素、植物体内硒转化及其过程调控关键酶,以及硒在植物中的生理作用等进行了综述,并对植物硒生理及分子机制未来研究方向进行展望.  相似文献   

4.
重金属在环境中的残留、累积常常引起一些环境问题Schroeder,1965;Lewis,1969;Nandi,1969;Tsuchiya,1969;Friberg,1974。在植物土壤系统中,由于重金属被土壤强烈吸附和固定,很容易在土壤中残留累积,引起生长的植物吸收过多的重金属而造成对人体健康的威胁(Friberg,1974;Lagerwerff,1972;Lisk,1972;Page,1973;Page,  相似文献   

5.
每种动物都有一定的地理分布范围和适宜其栖息的生活环境,其生态环境中有热、光、水等物理因子,还有植物等生物因子,但对动物来讲,起决定作用的是水、植物及与其关系密切的其他动物,其中一个因子发生变化,就可能引起其他因子的变化,导致环境的改变,终将引起动物在一定范围内迁移或死亡。对于东北虎来说,红松算是至关重要的影响因素。  相似文献   

6.
环境DNA技术在地下生态学中的应用   总被引:2,自引:0,他引:2  
于水强  王文娟  B. Larry Li 《生态学报》2015,35(15):4968-4976
地下生态过程是生态系统结构、功能和过程研究中最不确定的因素。由于技术和方法的限制,作为"黑箱"的地下生态系统已经成为限制生态学发展的瓶颈,也是未来生态学发展的主要方向。环境DNA技术,是指从土壤等环境样品中直接提取DNA片段,然后通过DNA测序技术来定性或定量化目标生物,以确定目标生物在生态系统中的分布及功能特征。环境DNA技术已成功用于地下生态过程的研究。目前,环境DNA技术在土壤微生物多样性及其功能方面的研究相对成熟,克服了土壤微生物研究中不能培养的问题,可以有效地分析土壤微生物的群落组成、多样性及空间分布,尤其是宏基因组学技术的发展,使得微生物生态功能方面的研究成为可能;而且,环境DNA技术已经在土壤动物生态学的研究中得到了初步应用,可快速分析土壤动物的多样性及其分布特征,更有效地鉴定出未知的或稀少的物种,鉴定土壤动物类群的幅度较宽;部分研究者通过提取分析土壤中DNA片段信息对生态系统植物多样性及植物分类进行了研究,其结果比传统的植物分类及物种多样性测定更精确,改变了以往对植物群落物种多样性模式的理解。同时,环境DNA技术克服传统根系研究方法中需要洗根、分根、只能测定单物种根系的局限,降低根系研究中细根区分的误差,并探索性地用于细根生物量的研究。主要综述了基于环境DNA技术的分子生物学方法在土壤微生物多样性及功能、土壤动物多样性、地下植物多样性及根系生态等地下生态过程研究中的应用进展。环境DNA技术对于以土壤微生物、土壤动物及地下植物根系为主体的地下生态学过程的研究具有革命性意义,并展现出良好的应用前景。可以预期,分子生物学技术与传统的生态学研究相结合将成为未来地下生态学研究的一个发展趋势。  相似文献   

7.
植物与动物一个明显的区别在于,大部分植物都是固定于某一特定的环境中生活,因此不仅对于植物本身的生长发育,而且植物对周围环境变化的反应都要求植物具备完整的调节控制系统,才能适应周围变化多端的环境。植物激素就是在这种调控系统中起决定作用的一系列信号传递分子。现在已经证实的植物激素  相似文献   

8.
单细胞组学技术在动物研究中已经得到广泛应用,但在植物学领域尤其是保卫细胞研究中还处于起步阶段。由保卫细胞构成的气孔承担着植物生命过程中水分散发及气体交换大门的作用。将单细胞组学技术应用到保卫细胞功能解析中将有助于了解保卫细胞参与的基本生理过程。该文综述了植物单细胞组学技术的发展、保卫细胞研究现状及单细胞组学技术在植物保卫细胞研究中的初步应用,为借助该技术解决植物生物学中保卫细胞发育、代谢及对环境胁迫响应等基本问题提供研究思路和方法。  相似文献   

9.
近年来,抗生素的环境污染问题已引起人们的广泛关注,其在环境中的残留可对水生态系统的结构和功能产生重要影响。迄今,盐酸四环素浓度和食物密度对轮虫生活史特征的影响研究尚未见报道。以萼花臂尾轮虫(Brachionus calyciflorus)为受试动物,研究了在不同斜生栅藻(Scenedesmus obliquus)密度下,不同浓度的盐酸四环素(Tetracycline hydrochloride)对萼花臂尾轮虫生活史特征的影响。结果表明,食物密度和盐酸四环素浓度对轮虫的生命期望、净生殖率、世代时间、内禀增长率、平均寿命和后代混交率,以及食物密度和盐酸四环素浓度间交互作用对除了内禀增长率外的其他5个统计学参数均具有显著影响。在各食物密度下,轮虫的特定年龄繁殖率高峰值随着盐酸四环素浓度的增加呈现先增加后降低的趋势;盐酸四环素对轮虫生长和繁殖参数的影响呈现"低促高抑"的特点。3个食物密度下,高浓度的盐酸四环素显著提高了萼花臂尾轮虫的后代混交率,且在1.0×10~6个/mL藻密度下毒物浓度与轮虫后代混交率间具有显著的剂量-效应关系。食物密度的高低显著影响盐酸四环素对萼花臂尾轮虫的毒性效应。  相似文献   

10.
根际土壤动物及其对植物生长的影响   总被引:1,自引:0,他引:1  
朱永恒  李克中  陆林 《生态学杂志》2012,31(10):2688-2693
土壤动物是根际土壤生物的重要组成部分,对于营养物质的转化、储存和释放,土壤微生物的调节及土壤理化性质的改变都发挥着积极作用,最终影响地上植物生长及其生产力。本文综述了土壤动物在根际土壤生态系统中的作用、根际土壤动物与土壤微生物之间的关系、根际土壤动物对植物生长的影响等。就目前根际土壤动物及其对植物生长的影响研究中亟待解决的一些问题进行了探讨,并提出今后应加强研究的方向。  相似文献   

11.
抗生素在环境中的转归及其生态毒性   总被引:68,自引:2,他引:66  
王冉  刘铁铮  王恬 《生态学报》2006,26(1):265-270
抗生索被长期大量地用于人和动物的疾病治疗,并以亚治疗剂量添加于动物饲料长期用于动物疾病的预防和促进生长,大部分抗生紊不能完全被机体吸收,而有高达85%以上抗生素以原形或代谢物形式经由病人和畜禽粪尿排人环境,经不同途径对土壤和水体造成污染。最近研究显示在城市废水和表面水中检测到了抗生索的存在。但关于抗生素在环境中的分布、迁移和稳定性等的研究资料很少。环境中的抗生素会对环境生态系统包括细菌、水生生物、土壤生物和植物等产生危害,并产生大量耐药菌,对人类健康构成威胁。为评估抗生素在环境中潜在的危害,就抗生素在环境中的分布、转归及对环境和人的危害等方面进行综述,并对今后的研究方向作了探索。  相似文献   

12.
Veterinary antibiotics in the aquatic and terrestrial environment   总被引:1,自引:0,他引:1  
The fate of antibiotics in the environment, and especially antibiotics used in animal husbandry, is subject to recent studies and the issue of this review. The assumed quantity of antibiotics excreted by animal husbandry adds up to thousands of tonnes per year. Administered medicines, their metabolites or degradation products reach the terrestrial and aquatic environment by the application of manure or slurry to areas used agriculturally, or by pasture-reared animals excreting directly on the land, followed by surface run-off, driftage or leaching in deeper layers of the earth. The scientific interest in antimicrobially active compounds in manure and soil, but also in surface and ground water, has increased during the last decade. On the one side, scientific interest has focused on the behaviour of antibiotics and their fate in the environment, on the other hand, their impact on environmental and other bacteria has become an issue of research. Analytical methods have now been developed appropriately and studies using these new techniques provide accurate data on concentrations of antimicrobial compounds and their residues in different organic matters. Some antibiotics seem to persist a long time in the environment, especially in soil, while others degrade very fast. Not only the fate of these pharmaceuticals but their origin as well is an object of scientific interest. Besides human input via wastewater and other effluents, livestock production has been recognised as a source of contamination. One main concern with regard to the excessive use of antibiotics in livestock production is the potential promotion of resistance and the resulting disadvantages in the therapeutic use of antimicrobials. Since the beginning of antibiotic therapy, more and more resistant bacterial strains have been isolated from environmental sources showing one or multiple resistance. There have been several attempts to use antibiotic resistance patterns in different bacteria as indicators for various sources of faecal pollution. This review gives an overview of the available data on the present use of veterinary antibiotics in agriculture, on the occurrence of antibiotic compounds and resistant bacteria in soil and water and demonstrates the need for further studies.  相似文献   

13.
Plant litter: Its dynamics and effects on plant community structure   总被引:8,自引:0,他引:8  
We discuss the dynamics of plant litter, the effects of litter on the chemical and physical environment, the direct and indirect effects of plant litter on plant populations and communities, and different adaptative traits that may be related to litter accumulation. The production of litter depends primarily on the site productivity, but other properties of the environment, as well as chance, may introduce important variation. The existence of time lags between the production of plant organs and their transformation into litter appears as a relevant character of litter dynamics seldom included in models. Herbivory, and other processes that destroy biomass or reduce productivity, may reduce the amount of litter produced. The destruction of litter encompasses a complex of interactions. The main processes, including physical and chemical degradation, consumption by invertebrates and decomposition, are differentially affected by the environment and by the physical and chemical characteristics of the litter itself. The relative importance of those processes varies among systems. Litter alters the physical and chemical environment directly and indirectly. The decomposition of litter may release both nutrients and phytotoxic substances into the soil. The physical changes produced by litter also alter the activity of decomposers, resulting in an indirect effect on the chemical environment. The accumulated litter intercepts light, shading seeds and seedlings, and reduces the thermal amplitude in the soil. By reducing maximum soil temperatures, and creating a barrier to water vapor diffusion, litter reduces evaporation from the soil. However, litter may also diminish water availability when it retains a large proportion of rainfall. Litter creates a physical barrier for seedling and sprout emergence and to seeds reaching the soil.  相似文献   

14.
由废弃地整理复垦形成的耕地存在土壤有机质和有效养分低、土壤板结、微生物活性弱和土壤耕作性状不良等问题,快速、有效地提高土壤肥力质量是全面提升该类耕地质量和生产性能的重要组成部分.本文通过田间小区试验研究了城郊有机废弃物对新复垦耕地土壤培肥的综合效果,并比较了不同类型城郊有机废弃物在培育耕地质量方面的差异.试验设置了施用等量猪粪、鸡粪、水稻秸秆、蔬菜收获残留物、城市污泥、沼渣、猪粪/水稻秸秆堆肥、生活垃圾堆肥和对照(不施有机肥)9个处理(年用量30 t·hm-2),连续进行3年的定点试验.结果表明: 施用任何有机物对改善土壤肥力均有明显的作用.其中,提升土壤碳库管理指数以施用猪粪、鸡粪、猪粪/水稻秸秆堆肥、水稻秸秆和沼渣的效果最为显著;增加土壤水稳定性团聚体和降低土壤容重以施用猪粪/水稻秸秆堆肥和沼渣的效果最佳;施用污泥、猪粪/水稻秸秆堆肥和生活垃圾堆肥可增强土壤保蓄能力;施用猪粪、鸡粪和猪粪/水稻秸秆堆肥对增加土壤有效态养分的效果最为明显;各类有机物均显著提高了土壤微生物数量和酶活性.长期施用污泥、生活垃圾堆肥及畜禽粪存在着土壤重金属污染的风险,但短期施用对土壤环境质量影响不明显.总体上,对土壤肥力的改善效果由大至小依次为:猪粪/水稻秸秆堆肥>鸡粪>猪粪>沼渣>生活垃圾堆肥>水稻秸秆>城市污泥>蔬菜收获残留物;对土壤的相对污染程度由大至小为:城市污泥>生活垃圾堆肥>猪粪>鸡粪>沼渣>猪粪/水稻秸秆堆肥>蔬菜收获残留物>水稻秸秆.  相似文献   

15.
The uncomposted faeces of dairy cow are usually stacked on cow breeding farms, dried under natural conditions and then used as cow bedding material or they may be continuously piled up. However, no information is available to evaluate variations in the human and animal pathogen genes and antibiotic resistance during the accumulation of fresh faeces of dairy cow to manure. Here, we present the metagenomic analysis of fresh faeces and manure from a dairy farm in Ning Xia, showing a unique enrichment of human and animal pathogen genes and antibiotic resistance genes (ARGs) in manure. We found that manure accumulation could significantly increase the diversity and abundance of the pathogenic constituents. Furthermore, pathogens from manure could spread to the plant environment and enphytotic pathogens could affect the yield and quality of crops during the use of manure as a fertilizer. Levels of virulence genes and ARGs increased with the enrichment of microbes and pathogens when faeces accumulated to manure. Accumulated manure was also the transfer station of ARGs to enrich the ARGs in the environment, indicating the ubiquitous presence of environmental antibiotic resistance genes. Our results demonstrate that manure accumulation and usage without effective manure management is an unreasonable approach that could enrich pathogenic microorganisms and ARGs in the environment. The manure metagenome structure allows us to appreciate the overall influence and interaction of animal waste on water, soil and other areas impacted by faecal accumulation and the factors that influence pathogen occurrence in products from dairy cows.  相似文献   

16.
Crop production in red soil areas may be limited by Al toxicity. A possible alternative to ameliorate Al toxicity is the application of such organic manure as crop straw and animal manure. A pot experiment was conducted to investigate the effects of organic materials on the alleviation of Al toxicity in acid red soil. Ground wheat straw, pig manure or CaCO3 were mixed with the soil and incubated, at 85% of water holding capacity and 25 degrees C, for 8 weeks. After the incubation, 14 seedlings of mung bean (Phaseolus aures Roxb) were allowed to grow for 12 days. Results showed that application of organic material or CaCO3 increased soil pH and decreased soil monomeric inorganic Al concentrations. Growth of mung bean seedling was improved sustantially by the application of organic material or CaCO3. Pig manure or wheat straw was more effective in ameliorating Al toxicity than was CaCO3. Mung bean plants receiving pig manure or wheat straw contained relatively high concentrations of P, Ca and K in their leaves. It is suggested that the beneficial effect of organic manure on mung bean is likely due to decreasing concentrations of monomeric inorganic Al concentrations in soil solution and improvement of mineral nutrition.  相似文献   

17.
彭燕  蔡俊鹏 《微生物学通报》2008,35(5):0809-0814
每年有大量来自工业、农业、养殖业和城市污水处理厂的废水被排入到水环境中, 因此, 地球上的水环境面临大量来自生活废水、工农业废水、非法排放的废水及其它废水的污染物质(如抗生素、杀虫剂、除草剂、烃等)的严重挑战, 特别是近年来随着集约化养殖的发展, 废水污染问题日益突出, 并且随着分析手段的进步, 能够检测到被排入水环境中的化学污染物质也越来越多, 这些化学污染物对水环境中的生物产生有害影响。但是, 微生物在污染控制上具有许多重要的作用。因此, 本文对微生物在水环境污染物降解中的应用进行了评论。结果表明微生物主要是应用在水产养殖水中, 而在其它的水体系(如河、湖、海)的应用较少。  相似文献   

18.
This study was conducted to evaluate and compare the effectiveness of two organic amendments [poultry manure (PM) and poultry manure biochar (PMB)] for the degradation of petroleum hydrocarbons in contaminated soils by barley plant at three levels of total petroleum hydrocarbons (TPHs) during 5 months under greenhouse conditions. TPHs removal efficiency and microbial respiration were shown to be higher at soil-cultivated plant than at uncultivated soil and in lowest level of contamination rather than other levels of contamination and at organic amendment treatment than unamended soil. Soil microbial respiration and TPHs degradation in the rhizosphere of barley increased by 15.64 and 12.74% for PM-amended treatment and 28.07 and 26.83% for PMB-amended treatment, respectively, in the 4% TPHs level compared with unamended treatment. Comparison of two amendments showed that in PMB treatment soil, highest dry weight, microbial respiration, and TPHs degradation potential were observed.  相似文献   

19.
洞庭湖湿地土壤环境及其对退田还湖方式的响应   总被引:1,自引:0,他引:1  
刘娜  王克林  谢永宏  杨刚  段亚锋 《生态学报》2011,31(13):3758-3766
土壤物理、化学和生物学特性是构成土壤环境的主要组分,综合影响湿地生态系统的调蓄功能和演替恢复。本文以农田(水田和旱地)和自然湿地系统(苔草地和芦苇地)为对照,以3种退田还湖生态系统(种植杨树、芦苇和自然恢复)为研究对象,采用主成分和聚类分析,探索湿地土壤总体环境与生态系统演替过程的相关性。研究结果表明,土壤总体环境与生态系统恢复有很好的一致性。退田还湖为自然水域后,土壤环境的恢复接近于自然湿地系统,在3种退田还湖方式中恢复最好;杨树林地对土壤环境的恢复效果优于人工芦苇地,在一定程度上对湿地土壤环境有所改善,特别是对土壤有机质积累、土壤粘粒形成等过程的改善,但是其土壤环境与苔草等自然湿地发育的土壤仍然有较大差异;因子重要性分析表明水文情势是控制湿地土壤环境恢复的决定性因素,其次是人类干扰强度和方式。  相似文献   

20.
每年有大量来自工业、农业、养殖业和城市污水处理厂的废水被排入到水环境中,因此,地球上的水环境面临大量来自生活废水、工农业废水、非法排放的废水及其它废水的污染物质(如抗生素、杀虫剂,除草剂、烃等)的严重挑战,特别是近年来随着集约化养殖的发展,废水污染问题日益突出,并且随着分析手段的进步,能够检测到被排入水环境中的化学污染物质也越来越多,这些化学污染物对水环境中的生物产生有害影响.但是,微生物在污染控制上具有许多重要的作用.因此,本文对微生物在水环境污染物降解中的应用进行了评论.结果表明微生物主要是应用在水产养殖水中,而在其它的水体系(如河、湖、海)的应用较少.  相似文献   

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