首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 171 毫秒
1.
Urban villages are unique residential neighborhoods in urban areas in China. Roof tanks are their main form of water supply, and water quality deterioration might occur in this system because of poor hygienic conditions and maintenance. In this study, water samples were seasonally collected from an urban village to investigate the influence of roof tanks as an additional water storage device on the variation in the microbial community structure and pathogenic gene markers. Water stagnation in th...  相似文献   

2.
淡水资源短缺是干旱区农业可持续发展所面临的严峻问题,合理利用咸水灌溉是缓解淡水资源不足的重要手段.长期咸水灌溉会导致土壤盐分积累,进而影响氮素的转化和N_2O的排放.本研究通过10 a咸水灌溉试验,探究咸水灌溉对棉田土壤N_2O排放、反硝化细菌丰度和群落结构组成的影响.试验采用灌溉水盐度和施氮量两因子2×2随机区组设计,其中灌溉水盐度(以电导率表示)设置2个水平:0.35 dS·m~(-1)和8.04 dS·m~(-1),施氮量设2个水平:0 kg·hm~(-2)和360 kg·hm~(-2)(分别用SFN0、SHN0、SFN360和SHN360表示).结果表明,长期咸水滴灌棉田土壤盐分、含水量和NH~+_4-N含量显著增加,pH值、NO~-_3-N、有机质和全氮含量显著降低.咸水灌溉处理显著抑制N_2O排放,不施氮肥和施氮肥处理下分别较淡水灌溉降低45.19%和43.50%.氮肥施用显著增加N_2O排放,施肥处理N_2O排放较不施肥处理增加161%.不施肥条件下,咸水灌溉显著降低反硝化酶活性、nirK、nirS和nosZ基因丰度,α多样性.施肥条件下,咸水灌溉对nosZ型反硝化细菌的丰度无显著影响,但显著降低反硝化酶活性和nirK、nirS基因丰度.咸水灌溉和氮肥施用共同改变nirK、nirS和nosZ型反硝化细菌群落结构,灌溉水盐度对于反硝化细菌群落结构的影响要大于施肥.Lefse分析显示nirK、nirS和nsoZ型反硝化细菌差异物种随着灌溉水盐度的增加而增加,咸水灌溉显著改变反硝化细菌群落结构,导致优势种群数量增加.上述结果表明,长期咸水灌溉降低土壤N_2O排放,但会导致土壤盐分的持续上升,nosZ、nirK和nirS丰度的增加会促进N_2O排放.  相似文献   

3.
汪银龙  冯民权  董向前 《环境科学》2019,40(8):3596-3603
为了探明汾河下游水体中nir S型反硝化细菌群落结构组成及其与无机氮的相互影响关系,在分析河流9个水样水质指标的基础上,运用Illumina高通量测序技术对水样中的nir S型反硝化细菌群落结构和多样性进行诊断,并进行统计分析,解析水体nir S型反硝化细菌群落与无机氮之间的关系.结果表明,汾河下游无机氮污染严重,整体水质为Ⅴ类水标准.Shannon指数变化范围为3. 36~7. 54,说明该流域反硝化细菌群落多样性较高;水体中主导菌属相对丰度占总群落的89. 8%,分别为红细菌属Rhodobacter、假单胞菌属Pseudomonas和陶厄氏菌属Thauera; DO、p H值及无机氮含量是影响汾河下游水体反硝化细菌群落的主要因素;优势菌属红细菌属Rhodobacter、陶厄氏菌属Thauera与NO_3~--N、NO_2~--N呈负相关,与NH_4~+-N呈正相关,稷山、河津和入黄口这3处的主要菌属假单胞菌属Pseudomomas与NO_3~--N、NO_2~--N呈负相关,与NH_4~+-N呈正相关.汾河下游水体中nir S型反硝化细菌中的主要菌属促进了反硝化作用,对降低水体中硝态氮的含量有一定的影响.  相似文献   

4.
李玉倩  马俊伟  高超  霍守亮  夏星辉 《环境科学》2021,42(10):4959-4967
反硝化是生态系统氮循环的关键过程.目前对于生态系统氮排放及反硝化细菌群落的研究大多基于人为影响显著的环境,对于人为干扰较低的自然生态系统的研究较少.本研究选取青藏高原黄河源区不同海拔(唐克、久治、玛多和达日)不同季节(春季和夏季)的高寒湿地植物根际与非根际土壤作为研究对象,采用15N同位素标记法测定反硝化速率,高通量测序技术测定nirS反硝化细菌群落组成及相对丰度,并探究环境因子(气温、海拔)和土壤理化性质(pH、土壤有机碳、铵态氮、硝态氮和亚硝态氮)对nirS型反硝化细菌群落的影响.结果表明,高寒湿地土壤反硝化速率范围为0.80~14.98 nmol·(g·h)-1,对总N2释放的贡献率为11.23%~71.16%.唐克、久治和达日的土壤样品,均呈现出根际土壤反硝化速率高于非根际的趋势(P<0.05).Proteobacteria是青藏高原高寒湿地植物根际和非根际土壤中主要的反硝化细菌门;在属水平上,各土壤样本中相对丰度最高的是一种未分类的变形杆菌(unclassified Proteobacteria,2.86%~29.41%),这表明主导青藏高原高寒湿地反硝化作用的可能有一些独特的未被鉴定的反硝化菌属,相对丰度其次为假单胞菌属(Pseudomonas,2.45%~26.52%)和贪铜菌属(Cupriavidus,0%~34.14%).基于距离的冗余分析结果表明,高寒湿地的反硝化细菌群落结构主要受到海拔、pH、NO2-含量影响(P<0.05);相关分析表明反硝化速率和Shannon指数与pH呈显著负相关(P<0.05),且主要反硝化菌群相对丰度受到温度和pH的影响.本研究结果可为进一步了解青藏高原高寒湿地这一特殊生境中的氮循环提供参考依据.  相似文献   

5.
Reservoirs have been served as the major source of drinking water for dozens of years. The water quality safety of large and medium reservoirs increasingly becomes the focus of public concern. Field test has proved that water-lifting and aeration system (WLAS) is a piece of effective equipment for in situ control and improvement of water quality. However, its intrinsic bioremediation mechanism, especially for nitrogen removal, still lacks in-depth investigation. Hence, the dynamic changes in water quality parameters, carbon source metabolism, species compositions and co-occurrence patterns of microbial communities were systematically studied in Jinpen Reservoir within a whole WLAS running cycle. The WLAS operation could efficiently reduce organic carbon (19.77%), nitrogen (21.55%) and phosphorus (65.60%), respectively. Biolog analysis revealed that the microbial metabolic capacities were enhanced via WLAS operation, especially in bottom water. High-throughput sequencing demonstrated that WLAS operation altered the diversity and distributions of microbial communities in the source water. The most dominant genus accountable for aerobic denitrification was identified as Dechloromonas. Furthermore, network analysis revealed that microorganisms interacted more closely through WLAS operation. Oxidation-reduction potential (ORP) and total nitrogen (TN) were regarded as the two main physicochemical parameters influencing microbial community structures, as confirmed by redundancy analysis (RDA) and Mantel test. Overall, the results will provide a scientific basis and an effective way for strengthening the in-situ bioremediation of micro-polluted source water.  相似文献   

6.
选取石家庄市主城区4个典型景观水体作为研究对象,在对水体水质特征分析的基础上,运用Illumina高通量测序技术对景观水体中的nir S型反硝化细菌种群结构和多样性进行测定,探究春季景观水体水质与nir S型反硝化细菌群落的相互关系.结果表明,4个景观水体中氮素含量为4. 43~13. 83 mg·L-1,氮素污染较严重;基于三维荧光光谱的特征指数分析,4个景观水体均呈现出较强的自生源及弱腐殖质特征; Illumina高通量测序结果表明,不同景观水体中nir S型反硝化细菌大多为变形菌门,在优势菌属上差异显著; unclassified_Bacteria(53. 52%)、假单胞菌(Pseudomonas)(60. 48%)和红杆菌属(Rhodobacter)(46. 94%)分别为裕西、水上和长安公园水体中的优势菌属,unclassified_Bacteria(36. 19%)和unclassified_Proteobacteria(23. 44%)为世纪公园水体中的优势菌属;冗余分析(RDA)结果表明,裕西公园反硝化细菌主要受硝氮、总氮和溶解氧的影响,水上公园反硝化细菌受总磷的影响较大,长安公园反硝化细菌主要受氨氮和亚硝氮的影响,世纪公园反硝化受总磷、亚硝氮和氨氮的影响较大.综上表明,春季不同景观水体的水质以及nir S型反硝化细菌的群落结构差异显著,通过开展景观水体水质、反硝化群落以及影响因素的研究,有助于对城市水系的水质特征以及反硝化群落结构的认识,对基于该水质特征的高效反硝化菌剂的研发具有指导意义.  相似文献   

7.
磷作为一种重要的生命元素,对反硝化微生物的活性和功能有重要影响.反硝化功能基因nir K和nir S是编码亚硝酸还原酶的两种同工酶基因,但是,磷对具有同种功能的nir K和nir S型反硝化菌的调控是否存在差异尚不十分清楚.本文采集严重缺磷红壤性水稻土设置水稻盆栽试验,通过外源添加磷肥设置对照(CK,P:0 mg·kg-1),低磷(P1,P:15 mg·kg-1),高磷(P2,P:30 mg·kg-1)这3个磷添加水平,研究不同磷水平对水稻亚硝酸还原酶基因的组成与丰度的调控作用.结果表明,在长期缺磷土壤上施用磷肥对含亚硝酸还原酶基因nir K和nir S的细菌种群的调控作用有明显差异.不管是根际还是非根际土,含nir S的微生物种群均对施磷水平表现敏感,尤其是高磷(P2)水平,施磷可导致nir S丰度提高2~3倍,同时显著改变nir S型反硝化微生物的组成结构.相比之下,施磷后含nir K基因的微生物组成结构和丰度变异较小.与非根际土壤相比,高磷水平条件下根际土中nir S的基因拷贝数和群落结构均发生了显著变化,缺磷和低磷条件下水稻生长只引起根际土nir S种群组成结构发生显著变化,但其丰度与非根际无显著差异.但不同磷水平条件下nir K的基因丰度和组成结构在根际和非根际土之间几乎无显著变化.综上所述,在严重缺磷水稻土中加施磷肥会显著提高水稻根际和非根际土中nir K和nir S型反硝化菌数量,并改变其种群组成结构,且nir S比nir K型种群响应更敏感.不同磷水平条件下的水稻根系生长均显著改变了根际土壤中nir K和nir S种群组成结构,但除了在高磷水平条件下显著增加了nir S丰度外,对nir K和nir S丰度均影响较小.研究结果可为进一步深入探究施肥对土壤反硝化过程的影响提供理论依据.  相似文献   

8.
Aeolian dust particles arising from arid and semiarid zones are known to carry microbes by air currents. The effect of wind-borne bacteria on atmospheric bacterial population at various downwind distances from the dust source regions must be clarified, but has not yet been reported. This study monitored the bacterial abundance and community composition in outdoor aerosol samples in Beijing, China, which is close to the Asian dust source regions, and compared them with the results obtained in a distant region(Osaka, Japan).The Asian dust collected in Beijing contained(4 ± 3) × 10~4 bacterial cells/m~3, approximately~4 times higher than in Osaka. On 15 April 2015, Beijing experienced severe Asian dust events with a 1000-fold increase in bacterial abundance, relative to non-Asian dust days. Dominant bacterial phyla and classes in Asian dust collected in Beijing were Actinobacteria, Bacilli and Acidobacteria, and the bacterial community composition varied more widely than in Osaka.The bacterial community compositions differed between the Beijing and Osaka dusts, even for the same Asian dust events. These results indicated that aerosol bacterial communities nearer the dust source are more affected by eolian dust than their distant counterparts.  相似文献   

9.
谢军  王子芳  王蓥燕  熊子怡  高明 《环境科学》2023,44(8):4565-4574
为明确化肥和有机肥配施生物炭对根际土壤反硝化细菌和反硝化势的影响,以柠檬根际土为研究对象,设置不施肥(CK)、化肥(CF)、有机肥(M)、化肥配施生物炭(CFBC)和有机肥配施生物炭(MBC)等5个处理,通过测定根际nirS型、nirK型和nosZ型反硝化菌群落特征、反硝化势和土壤环境因子,明确化肥和有机肥配施生物炭对根际反硝化作用的影响.结果表明,与CK相比,CF处理显著降低根际土壤反硝化势47.7%,M和MBC处理分别显著增加反硝化势的2 192.7%和1 989.9%; M和MBC处理显著增加nirS型和nosZ型反硝化菌的基因拷贝数,CF和CFBC处理显著降低nirS型和nosZ型反硝化菌基因拷贝数,而4个施肥处理均显著增加nirK型反硝化菌基因拷贝数.逐步回归分析结果表明:pH是nirS型反硝化菌丰度的主要影响因子,有机质(SOM)和铵态氮(NH+4-N)是nirK型反硝化菌的主要影响因子,pH、硝态氮(NO-3-N)和氮磷比(N/P)则是nosZ型反硝化菌的主要影响因子.偏最小二乘法分析...  相似文献   

10.
由"Candidatus Methylomirabilis oxyfera(M.oxyfera)"主导的亚硝酸盐型甲烷厌氧氧化过程(nitrite-dependent anaerobic methane-oxidizing,ndamo)是碳循环中新发现的一个过程.已有研究发现三峡库区消落带有n-damo菌的存在.为了解人类活动对n-damo菌群落结构的影响,对三峡库区受人类活动干扰程度不同的消落带n-damo菌群落进行了研究.结果表明,人为干扰水平高的小河消落带n-damo菌基因丰度(8.98×102~3.31×105copies·g~(-1))整体上要高于白家溪(4.72×102~5.32×104copies·g~(-1)).此外,淹水都会导致两个地点n-damo菌基因丰度的增加.白家溪的n-damo菌丰度与累积淹水时间呈线性正相关,而小河的n-damo菌丰度与土壤总氮显著负相关.系统发育树和多样性分析表明,淹水前白家溪和小河相近高程土壤n-damo菌群落结构比较类似,但淹水后出现较大差异;较低高程土壤的群落多样性要明显高于较高高程土壤.消落带土壤中的n-damo菌群落具有明显的时空异质性,且淹水会导致这种异质性增加.淹水和人类活动对于n-damo菌的多样性具有同等的重要性.这些结果表明,淹水和人类活动都会影响消落带土壤中n-damo菌群落结构,而人类活动可能进一步增加n-damo菌的丰度和多样性.  相似文献   

11.
This study profiled the bacterial community variations of water from four water treatment systems, including coagulation, sedimentation, sand filtration, ozonation-biological activated carbon filtration (O3-BAC), disinfection, and the tap water after the distribution process in eastern China. The results showed that different water treatment processes affected the bacterial community structure in different ways. The traditional treatment processes, including coagulation, sedimentation and sand filtration, reduced the total bacterial count, while they had little effect on the bacterial community structure in the treated water (before disinfection). Compared to the traditional treatment process, O3-BAC reduced the relative abundance of Sphingomonas in the finished water. In addition, ozonation may play a role in reducing the relative abundance of Mycobacterium. NaClO and ClO2 had different effects on the bacterial community in the finished water. The relative abundance of some bacteria (e.g. Flavobacterium, Phreatobacter and Porphyrobacter) increased in the finished water after ClO2 disinfection. The relative abundance of Mycobacterium and Legionella, which have been widely reported as waterborne opportunistic pathogens, increased after NaClO disinfection. In addition, some microorganisms proliferated and grew in the distribution system, which could lead to turbidity increases in the tap water. Compared to those in the finished water, the relative abundance of Sphingomonas, Hyphomicrobium, Phreatobacter, Rheinheimera, Pseudomonas and Acinetobacter increased in the tap water disinfected with NaClO, while the relative abundance of Mycobacterium increased in the tap water disinfected with ClO2. Overall, this study provided the detailed variation in the bacterial community in the drinking water system.  相似文献   

12.
Candidatus Accumulibacter has been identified as dominant polyphosphate-accumulating organisms(PAOs) in enhanced biological phosphorus(P) removal(EBPR) from wastewater.This study revealed the relevance of community structure, abundance and seasonal population dynamics of Candidatus Accumulibacter to process operation of wastewater treatment plants(WWTPs) in China using ppk1 gene as phylogenetic marker. All sludge samples had properties of denitrifying P removal using nitrate as an electron acceptor.Accumulibacter abundance in the anaerobic-anoxic-oxic(A~2O) process was the highest(26%of total bacteria), and higher in winter than in summer with a better EBPR performance.Type-II was the dominant Accumulibacter in all processes, and type-I accounted for a small proportion of total Accumulibacter. The abundance of Clade-IIC as the most dominant clade reached 2.59 × 10~9 cells/g MLSS and accounted for 87.3% of total Accumulibacter. Clade IIC mainly contributed to denitrifying P removal. Clades IIA, IIC and IID were found in all processes, while clade-IIF was only found in oxidation ditch process through phylogenetic analysis. High proportion of clade IID to total Accumulibacter led to poor performance of aerobic P-uptake in inverted A~2O process. Therefore, Accumulibacter clades in WWTPs were diverse, and EBPR performance was closely related to the clade-level community structures and abundances of Accumulibacter.  相似文献   

13.
Antibiotic resistance genes (ARGs) as emergence contaminations have spread widely in the water environment. Wild fish may be recipients and communicators of ARGs in the water environment, however, the distribution and transmission of ARGs in the wild fish and relevant water environment were rarely reported. Here, we have profiled ARGs and bacterial communities in wild freshwater fish and relevant water in a peri-urban river using high-throughput qPCR and 16S rRNA gene sequence. A total of 80 and 220 unique ARG subtypes were identified in fish and water samples. Fish and water both showed significant ARG seasonal variations (P < 0.05). The highest absolute abundance of ARGs in fish and water occurred in summer (1.32 × 109 copies per g, on average) and autumn (9.04 × 106 copies per mL), respectively. In addition, the bipartite network analysis showed that 9 ARGs and 1 mobile genetic element continuously shared in fish and water. Furthermore, bacteria shared in fish and water were found to significantly correlate with shard ARGs. The findings demonstrate that bacteria and ARGs in fish and water could interconnect and ARGs might transfer between fish and water using bacteria as a spreading medium.  相似文献   

14.
Drinking water quality deteriorates from treatment plant to customer taps, especially in the plumbing system. There is no direct evidence about what the differences are contributed by plumbing system. This study compared the water quality in the water main and at customer tap by preparing a sampling tap on the water main. The biomass was quantified by adenosine triphosphate (ATP) and the microbial community was profiled by 454 pyrosequencing. The results showed that in distribution pipes, biofilm contributed >94% of the total biomass, while loose deposits showed little contribution (< 2%) because of the low amount of loose deposits. The distribution of biological stable water had minor effects on the microbiocidal water quality regarding both quantity (ATP 1 ng/L vs. 1.7 ng/L) and community of the bacteria. Whereas the plumbing system has significant contribution to the increase of active biomass (1.7 ng/L vs. 2.9 ng/L) and the changes of bacterial community. The relative abundance of Sphingomonas spp. at tap (22%) was higher than that at water main (2%), while the relative abundance of Pseudomonas spp. in tap water (15%) was lower than that in the water from street water main (29%). Though only one location was prepared and studied, the present study showed that the protocol of making sampling tap on water main offered directly evidences about the impacts of plumbing system on tap water quality, which makes it possible to distinguish and study the processes in distribution system and plumbing system separately.  相似文献   

15.
布吉河丰水期总细菌和氨氧化细菌的定性和定量研究   总被引:4,自引:1,他引:3  
孙海美  白姣姣  孙卫玲  邵军 《环境科学》2012,33(8):2691-2700
河流中微生物的数量和群落结构能在一定程度上反映水环境状况.氨氧化细菌驱动的硝化作用是氮素转化的主要机制,为了解氮素污染河流中氨氧化细菌的群落组成及数量,采用变性梯度凝胶电泳(denaturing gradient gel electrophoresis,DGGE)和Real-time PCR技术分析了布吉河丰水期不同断面水样中总细菌和氨氧化细菌的群落结构以及数量变化.结果表明,水样中总细菌(16S rRNA)和氨氧化细菌(16S rRNA)数量变化范围分别为4.73×1010~3.90×1011copies.L-1和5.44×106~5.96×108copies.L-1.冗余度分析表明影响微生物数量和群落结构的水环境因子不同:对于总细菌,与其数量显著相关的环境因子是硝氮(P<0.05),与其群落结构显著相关的环境因子是氮素(三氮)和金属(Mn和Zn)(P<0.05);对于氨氧化细菌(ammonia-oxidizing bacteria,AOB),与其数量显著相关的是氨氮和Zn(P<0.05),与其群落组成显著相关的是氨氮、Mn和Zn(P<0.05).测序结果表明在布吉河水样中微生物属于变形菌门(Proteobacterium)的Epsilon-Proteobacteria、Gamma-Proteobacteria、Beta-Proteobacteria和Delta-Proteobacteria这4个纲,氨氧化细菌与Nitrosomonas sp.和Nitrosospira sp.属的细菌相似度较高,且Nitrosospira sp.为优势菌属.由于污染影响,布吉河上游和下游微生物群落结构明显不同.  相似文献   

16.
苏南水库硅藻群落结构特征及其控制因素   总被引:11,自引:8,他引:3  
为了解我国东南湿润区丘陵山地型水库硅藻的群落结构特征和控制因素,于2015年6月硅藻水华敏感期对苏南地区18座水库的浮游植物群落结构和水质进行调查,分析了营养盐、水深、库容等因素与硅藻及其它浮游生物的关系.结果表明,硅藻达到轻度水华水平(硅藻细胞含量介于100~1 000万cells·L~(-1))的水库有10座,对供水和景观功能产生明显影响;苏南地区水库普遍处于中营养和富营养水平,总氮浓度普遍偏高,磷及营养状态指数与硅藻生物量的关系密切;苏南地区水库中的浮游植物在数量上以蓝藻门中的席藻为主,在生物量上则以硅藻门、绿藻门和蓝藻门为主,其中硅藻门浮游植物平均占总浮游植物生物量的46.8%,是浮游植物异常增殖的主要门类;硅藻门中,主要是针杆藻、小环藻、曲壳藻和直链藻这4个种属占优,特别是针杆藻和小环藻,平均占硅藻总生物量的51.6%和21.4%;较深的水体,利于硅藻成为主要优势藻门;较大的水库流域库容比和较高总磷水平会导致水库营养水平和叶绿素浓度增加,促进浮游植物从硅藻门向绿藻门、蓝藻门演替,增加藻类危害的风险.因此,对于该地区水库,需要加强流域管理,并且针对水库自身的特点,包括水深、流域库容比等,确定其特定的富营养化控制策略,从而减少硅藻等藻类水华发生的风险,提升水源地水质安全保障能力.  相似文献   

17.
本研究开展了蓝藻产2-MIB功能基因mic的qPCR定量分析,对上海水源水库中的mic基因进行长期调研.结果表明,在长江水源水库和黄埔江水源水库中mic基因都有检出.在夏季其丰度达到峰期,基因拷贝数达到10~7~10~8 copies·L~(-1).分析表明mic基因拷贝数与蓝藻、伪鱼腥藻细胞密度、2-MIB浓度之间均存在相关性.因此通过mic基因定量进而推断水中产嗅生物总量的方法,可代替繁琐、重现性低的显微镜镜检过程.应用中还需更多实践,结合其他指标改进准确度.  相似文献   

18.
Disinfectants are commonly applied to control the growth of microorganisms in drinking water distribution systems. However, the effect of disinfection on drinking water microbial community remains poorly understood. The present study investigated the impacts of different disinfectants (chlorine and chloramine) and dosages on biofilm bacterial community in bench-scale pipe section reactors. Illumina MiSeq sequencing illustrated that disinfection strategy could affect both bacterial diversity and community structure of drinking water biofilm. Proteobacteria tended to predominate in chloraminated drinking water biofilms, while Firmicutes in chlorinated and unchlorinated biofilms. The major proteobacterial groups were influenced by both disinfectant type and dosage. In addition, chloramination had a more profound impact on bacterial community than chlorination.  相似文献   

19.
分层型水库藻类季相演替的细菌种群驱动机制   总被引:3,自引:3,他引:0  
浮游藻类和水体中的细菌是水生食物网的组成部分,在淡水生态系统的结构和功能中发挥着关键作用.然而,对于水库当中藻类和细菌群落如何互作及其对变化的环境条件的响应研究却较少.本文以李家河水库为研究对象,采用16S rDNA高通量测序技术和共生网络分析方法,分析了藻类种群时空演替与细菌群落的生态互作关系.结果表明,在藻类群落结构中,硅藻和绿藻也为全年优势门类,且在8月,蓝藻取代硅藻成为第二大优势门类,平均相对丰度为30.13%.DNA测序分析表明,变形菌门、放线菌门和拟杆菌门为全年优势细菌,其中变形菌门在7月达到全年最大相对丰度71.68%.酸杆菌门和异常球菌-栖热菌门作为稀有类群,其相对丰度最大分别为10.20%和5.56%.共生网络分析表明,藻类与细菌之间的关系以正相关居多,表明二者之间的互作关系可能以互利共生为主.Methylotenera作为关键节点,与小球藻呈显著正相关.柵藻作为藻类群落中的关键节点,与甲基杆菌属、Solitalea和红育菌属等多种细菌显著负相关.RDA分析表明,藻类和细菌群落的演替受到水温、pH和电导率的显著调控,环境因子对藻类和细菌群落变异解释分别为93.1%和90%.本研究结果将为深水型水源水库生态系统中藻菌互作关系的微生态驱动机制提供科学依据.  相似文献   

20.
随着全球气候变化的不断加剧,大气CO2浓度呈明显增加趋势,这将间接影响土壤-植物-微生物系统的氮循环过程.为研究典型水稻土壤反硝化细菌对CO2浓度升高的响应规律和机制,借助水稻密闭培养箱,运用实时荧光定量聚合酶链式反应(Real-Time qPCR)分子技术,设置不施氮(0 mg/kg)和常规施氮(100 mg/kg)2个处理,研究CO2倍增对水稻不同生长期土壤关键反硝化功能细菌(narG、nirK和nirS型)丰度的影响.结果表明:①在2种施氮水平,CO2倍增显著促进了水稻分蘖期、孕穗期、扬花期和成熟期水稻根系生长(增幅为2.96%~28.4%)、地上部生物量增加(增幅为7.1%~107.3%)以及成熟期籽粒干质量的增加(增幅为19.5%和38.0%),具有显著的增产效应.②反硝化细菌丰度对CO2倍增的响应与生育期及施氮水平有关,CO2倍增在2个施氮水平均抑制分蘖期反硝化细菌的繁殖,显著增加孕穗期反硝化细菌数量;在水稻扬花期,CO2倍增促进了施氮处理narG和nirS型反硝化细菌数量的增加,在成熟期抑制未施氮处理下narG、nirK和nirS型反硝化细菌的生长.另外,narG、nirK、nirS型反硝化细菌丰度整体表现为narG > nirS > nirK,且随水稻的生长,其在成熟期的丰度均呈降低趋势.nirK和nirS基因同属亚硝酸还原酶,但nirS基因丰度高于nirK,且对CO2倍增和施氮的响应有所差异.研究显示,CO2倍增可显著增加水稻生长和产量,不同施氮水平对稻田土壤反硝化细菌丰度的影响存在差异.   相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号