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1.
李晓强  董炜华  宋扬 《地理研究》2020,39(12):2842-2854
高速公路运营过程汽车尾气中的重金属长期在周围环境累积,使得周围环境处在不稳定的状态,影响路域农田土壤动物群落特征。本文垂直距离京哈高速公路德惠段南侧和北侧5 m、20 m、100 m、200 m和1600 m的玉米田依次划分了5条取样带。5月、8月和10月不同季节进行采集样品。测定了不同样带土壤重金属Ni、Cu、Zn、Cd、Hg和Pb含量,手捡法收集不同样带大型土壤动物。探究了大型土壤动物群落组成,结构对公路运营过程重金属累积的响应。结果表明:① 不同季节样带随着与高速公路距离增加,土壤综合污染指数逐渐减小,公路两侧5 m、20 m和100 m样带土壤动物个体数逐渐增加;② 公路运营过程中的重金属受气候因素和微地形因素影响,对大型土壤动物影响具有季节差异;③ 公路运营过程中的重金属Hg和Ni主要影响公路两侧不同样带大型土壤动物群落结构。  相似文献   

2.
基于16S rRNA高通量基因测序技术,对毛乌素沙地小叶锦鸡儿(Caragana microphylla)、柠条锦鸡儿(Caragana korshinskii)根系微域(即根系、根际土、根区土、灌丛间空白土)间的细菌群落多样性和结构差异性进行表征。本研究对各根系微域间细菌群落的Alpha多样性指数进行了单因素方差分析以及基于OTU水平的PCA分析,探究其在根系微域间Alpha和Beta多样性的层级变化,证实了有关植物根系微域生态位分化的报道,并发现锦鸡儿属植物根系微域间细菌群落的多样性和结构组成随着4个微域类型由外及内呈现出显著的层级差异性(P<0.05)。通过对优势细菌群组的结构组成分析,发现锦鸡儿属植物对特定细菌群组具有显著的向根系内筛选富集的作用(P<0.05)。这种植物通过根系微域对特定细菌群组的逐级筛选富集作用,是导致锦鸡儿属植物灌丛下不同生态位间细菌群落结构和组成发生层级变异的主要原因。  相似文献   

3.
The spatial heterogeneity of resources in desert and semi-arid shrubland appears to be important in determining higher soil bacteria abundance around plants than in soil without plant cover. Thus, these bacterial communities could be important contributors to nutrient cycling in arid ecosystems. Bacterial diversity from Chilean sclerophyllous matorral was determined by Terminal Restriction Fragment Length Polymorphism (T-RFLP). Soil samples associated with the actinorhizal plant Colletia hystrix, non-actinorhizal plants and interspace soil without plant cover, were collected in May and October. The non-actinorhizal and interspace soil differed significantly in their potassium content in May and pH in October. The T-RFLP analysis revealed differences in the bacterial community structure from the different habitats. The soil bacterial communities associated with plants were the most similar, whereas the interspace soil community differed in both sampling times. The factors that best explained the groupings were potassium and pH. The greatest diversity was observed in the interspace soil. The Microbial Community Analysis showed a significant proportion of T-RFs identified as Firmicutes and Proteobacteria. Likewise, spatial and temporal differences were observed in the main groups' abundance. The dominance of Firmicutes suggests that the sclerophyllous matorral could be a different ecosystem to other arid and semi-arid soils with respect to the bacterial community structure.  相似文献   

4.
开垦对荒漠土壤微生物群落结构特征的影响   总被引:3,自引:3,他引:0  
王银亚  李晨华  马健 《中国沙漠》2017,37(3):514-522
以古尔班通古特沙漠南缘典型流域(玛纳斯河、吉木萨尔河、三工河、四工河、水磨河)的绿洲农田与毗邻荒漠土壤为研究对象,采用磷脂脂肪酸(PLFA)方法分析不同开垦年限的土壤微生物生物量、群落结构、多样性变化特征。结果表明:荒漠开垦后,土壤微生物总PLFA含量、真菌PLFA、细菌PLFA、革兰氏阳性菌(G+)和革兰氏阴性菌(G-)PLFA含量均显著增加。荒漠开垦5 a内,细菌PLFA与G-PLFA增长更强烈,使得真菌PLFA/细菌PLFA比值降低了48%,G+PLFA/G-PLFA比值(革兰氏阳性菌与革兰氏阴性菌的PLFA比值)降低了67%。但随着开垦年限的延长,这两个比值没有显著变化,表明与开垦年限相比,荒漠的开垦行为对土壤微生物群落结构有着更加强烈的影响。随着开垦年限的增加,土壤微生物群落多样性总体呈上升趋势。虽然荒漠在开垦50 a后多样性指数略有下降,但仍远高于荒漠土壤。土壤微生物总PLFA含量和大部分菌群PLFA含量与土壤电导率显著负相关,与全氮和有机碳显著正相关。荒漠在开垦过程中灌溉增加了土壤水分且降低了土壤盐分,全氮和有机碳含量增加,这些改变是土壤微生物群落变化的主要原因。荒漠开垦有助于提高土壤微生物PLFA含量、改善土壤微生物的群落结构、丰富土壤微生物群落多样性,有利于土壤质量的提高。  相似文献   

5.
海洋动物粪土是南极陆地生态系统养分的重要来源,粪土层细菌群落对南极苔原碳、氮循环过程起重要作用,但目前对南极海洋动物粪土层中细菌群落的变化特征却鲜有报道。本文采集了东南极四个企鹅、海豹粪土剖面样品,通过酶活性、微生物量碳、微生物熵、土壤呼吸和DNA浓度测定以及16 S r DNA-DGGE分析,探讨了粪土层中细菌群落变化特征及其与环境因子的关系。土壤转化酶、脲酶和磷酸酶活性、微生物量碳、土壤呼吸和微生物熵随深度增加而递减,而代谢熵增加,表明随深度增加,微生物生存环境恶劣,造成细菌丰度和酶分泌量减小,需更多有机碳进行能量代谢。土壤DNA浓度与pH、含水率、TOC、TN、微生物量碳、土壤呼吸以及酶活性呈高度正相关,表明这些因子对粪土层中细菌种群的丰度有重要影响。DGGE图谱分析证实:东南极海洋动物粪土中含丰富的细菌群落结构,随深度增加泳道带型数量和亮度递减,表明细菌多样性和丰度递减。聚类分析表明:四个剖面随深度泳道带型差异明显,细菌遗传相似性为46%,企鹅、海豹粪土细菌群落差异性尤为明显;发现四个粪土剖面中,细菌丰度与企鹅、海豹粪的相对含量呈协调一致性变化,且表层5cm粪土层细菌丰度最高,表明东南极企鹅和海豹排泄物对土壤中细菌群落多样性变化起重要作用。  相似文献   

6.
在科尔沁沙质放牧草地,人为的小面积实验放牧情况下,土壤动物群落结构随放牧强度的提高发生变化,主要体现在动物密度降低、群落丰富度减小。放牧强度提高时,土壤动物生物量、密度季节动态和多样性指数无明显变化规律,重度放牧下以上指标并不明显低于封育区。土壤动物优势类群对放牧扰动的响应各自不同。以相似性指数比较土壤动物对不同牧压的响应,结果为中度放牧区较接近封育区,而重牧区分异最大。  相似文献   

7.
为揭示干旱风沙区植被重建对土壤微生物群落结构的影响,以乌海至玛沁高速公路腾格里沙漠段生态防护体系的植被重建区土壤为研究对象,以流动沙丘为对照,运用高通量测序技术研究植被重建区土壤微生物群落结构随植被恢复重建的变化特征。结果表明:植被重建区与流沙区土壤微生物群落组成相似,均以放线菌门(58.53%~67.85%)、变形细菌门(16.53%~19.68%)等为优势类群;优势菌属包括诺卡氏菌属、甲基柔膜菌属、微红微球菌属和微枝型杆菌属。与流沙区对照相比,植被重建区显著增加了土壤大部分菌门相对丰度和多样性。植被恢复重建后土壤pH、电导率及盐分含量降低;土壤微生物量磷(MBP)、土壤微生物量碳(MBC)与土壤微生物量碳氮比(MBC:MBN)在植被重建区浅层土壤(0~5 cm、5~10 cm和10~20 cm)显著高于流沙区。因此,对于沙漠公路生态防护体系而言,植被重建能显著改善其浅层土壤养分状况、微生物相对丰度和多样性水平,是改善沙漠生态环境的重要措施。  相似文献   

8.
全球变化对草地土壤微生物群落多样性的影响研究进展   总被引:5,自引:0,他引:5  
全球变化对人类生存环境的影响已成为当前全世界共同关注的焦点。草地分布十分广泛, 且大多位于生态脆弱带, 对全球变化响应十分敏感。当前, 有关全球变化对草地生态系统影响的研究主要集中于地上植被部分, 对于生态系统物质循环关键参与者和草地碳源汇的重要调节者--土壤微生物的研究相对较少。本文综述了全球变化因子, 包括CO2浓度、气温、降水及氮沉降等因素及其交互作用对草地土壤微生物群落多样性影响的相关研究进展, 并在此基础上对当前研究中的一些不足之处进行剖析, 对未来研究需关注的问题和研究方向进行了讨论和展望。  相似文献   

9.
Patterns in soil bacterial communities, and the factors that determine them, have been little explored in arid and semi-arid environments. It is unclear to what extent the diversity and community composition of arid-land soil bacterial communities follow vegetation habitats, or conversely other relatively independent soil variables. It is also unclear whether the factors (e.g. pH) that contribute to variation in bacterial communities in some moister environments also operate on a local scale in semi-arid environments. To identify the main factors in shaping bacterial community structure in semi-arid environments, we sampled a mosaic of habitats under different vegetation, landscape and edaphic conditions in central Mongolia, including steppe, forest-steppe, and abandoned wheat field. Soil DNA was extracted and pyrosequenced for 16S rRNA gene identification. NMDS results showed that bacterial community structures are slightly different from one habitat to another. However, the similarity between communities both within and between habitats is determined more strongly by soil texture than by vegetation type and drainage conditions. Moreover, the relative abundances of certain phyla are correlated with specific soil properties such as salinity and soil texture, in ways that have not previously been found in semi-arid environments. Actinobacteria, for example, show a negative correlation with salinity and Bacteroidetes display a positive relationship with percentage silt and clay. It also appears that the most important environmental variables (soil texture and salinity) affecting the bacterial community within this semi-arid environment are different from those found in moister environments, with no detectable effect of pH.  相似文献   

10.
近年来,以对天然荒漠进行开垦和耕作为标志的人类活动加速了中国西北干旱荒漠区的绿洲化进程,但这种土地利用方式的改变对干旱荒漠土壤微生物群落特征的影响及其机理尚不清楚。本研究利用qPCR和Illumina Miseq高通量扩增子测序技术对新疆阿拉尔绿洲开垦5年的棉花田(FS)和毗邻的天然荒漠(ND)的土壤细菌、古菌和真菌群落的生物量、多样性和群落结构进行了对比研究,揭示了驱动荒漠土壤微生物群落结构演变的主要因子。结果表明:(1)荒漠开垦为农田后,土壤细菌和真菌群落的生物量显著增加,而古菌群落生物量显著降低;细菌群落多样性明显提高,古菌群落的Shannon多样性指数显著降低,而真菌群落多样性没有显著变化。(2)盐渍化荒漠具有不同于其他干旱荒漠的土壤微生物群落结构,开垦显著改变了其土壤细菌、古菌和真菌的群落结构。其中,放线菌门、绿弯菌门、酸杆菌门、螺旋体菌门和浮霉菌门细菌、乌斯古菌门和芽枝霉门真菌的相对丰度显著增加,而盐纳古菌门的相对丰度则显著降低。(3)土壤电导率(EC)、总有机碳(TOC)、全氮(TN)、全磷(TP)是影响细菌群落结构的关键因子;古菌群落结构的主要影响因子为植被盖度、地上生物量和丰富度、TP和AP;EC是影响真菌群落结构的关键因子。综上所述,盐渍化荒漠开垦后由于其原生植被群落、化学肥料的使用和土壤属性(EC、TP和AP)的改变不同程度地改变了荒漠土壤微生物群落特征。相对而言,细菌群落对土地利用方式的改变响应最为敏感,而古菌和真菌群落的多样性和结构则保持相对稳定。  相似文献   

11.
采用基于16S r DNA克隆文库的非培养方法和传统培养方法相结合的手段,对南极欺骗岛土壤细菌群落结构及多样性进行了初步分析。对来自16S r DNA克隆文库的118个阳性克隆进行测序和序列比对,结果显示细菌来自放线菌门(Actinobacteria)、变形杆菌门(Proteobacteria)和拟杆菌门(Bacteroidetes)3大门的39个操作分离单元(OTU),其中优势菌群为放线菌门和变形杆菌门,分别占65.25%和28.81%。放线菌门的主要优势属为鱼孢菌属(Sporichthya)、类诺卡式氏菌属(Nocardioides)、束缚菌属(Conexibacter)、Gaiella和节杆菌属(Arthrobacter)。变形杆菌门的主要优势属为鞘氨醇单胞菌属(Sphingomonas)、硫杆菌属(Thiobacillus)、寡养单胞菌属(Stenotrophomonas)和热单胞菌属(Thermomonas)。采用6种培养基对细菌进行培养和分离,共得到57株菌,来自放线菌门、变形杆菌门、拟杆菌门和厚壁菌门4大门的13个OTU,其中优势菌群为放线菌门和变形杆菌门,分别占57.89%和31.58%。优势属是放线菌门的节杆菌属(Arthrobacter)、雷夫松氏菌属(Leifsonia)和变形杆菌门的假单胞菌属(Pseudomonas)。本论文为研究欺骗岛土壤细菌多样性以及有益菌种资源的开发和利用奠定了基础。  相似文献   

12.
Root zone N management can reduce N fertilizer input and avoid nitrate pollution in greenhouse tomato production; however, little information is available on how reduced N affects soil microbes, especially dominant bacteria populations in long-term continuous greenhouse systems. This study investigated the effects of different combinations of N and straw on the population size of soil total bacteria and two dominant bacteria (Pseudomonas spp. and Bacillus spp.), and microbial community structure in a 6-year greenhouse tomato trial. The treatments were basal fertilizer (10 t ha-1 chicken manure; control), conventional high N treatment [600 kg N ha-1], conventional high N treatment with wheat straw, reduced N treatment [300 kg N ha-1 less than conventional], and reduced N treatment with wheat straw. Six years of reduced mineral N fertilization did not lead to a decrease in fruit yield. Both mineral N fertilizer and straw increased the numbers of soil bacteria (Bacillus spp. and Pseudomonas spp.) compared with the control, but the numbers were not affected by the amount of mineral N fertilizer (high vs reduced). Different denaturing gradient gel electrophoresis patterns were evidence that soil bacterial communities were changed by N treatments and straw application, but little difference in bacterial diversity was detected between high N and reduced N treatments. These results indicated that a reduction in N fertilizer input was possible in greenhouse tomato production and was beneficial in sustainable agriculture.  相似文献   

13.
No studies have examined the effect of experimental warming on the microbial biomass and community composition of soil in agricultural ecosystem on the Qinghai-Tibet Plateau. Thus it is unclear whether the influences of experimental warming on microbial communities in soil are related to warming magnitude in croplands on this Plateau. This study performed warming experiment (control, low- and high-level) in a highland barley system of the Lhasa River in May 2014 to examine the correlation between the response of microbial communities in soil to warming and warming magnitude. Topsoil samples (0-10 and 10-20 cm) were collected on September 14, 2014. Experimental warming at both low and high levels significantly increased soil temperature by 1.02 ℃ and 1.59 ℃, respectively at the depth of 15 cm. Phospho lipid fatty acid (PLFA) method was used to determine the microbial community in soil. The low-level experimental warming did not significantly affect the soil’s total PLFA, fungi, bacteria, arbuscular mycorrhizal fungi (AMF), actinomycetes, gram-positive bacteria (G+), gram-negative bacteria (G-), protozoa, the ratio of fungi to bacteria (F/B ratio), and ratio of G+ to G- (G+/G- ratio) at the 0-10 and 10-20 cm depth. The low-level experimental warming also did not significantly alter the composition of microbial community in soil at the 0-10 and 10-20 cm depth. The high-level experimental warming significantly increased total PLFA by 74.4%, fungi by 78.0%, bacteria by 74.0%, AMF by 66.9%, actinomycetes by 81.4%, G+ by 67.0% and G- by 74.4% at the 0-10 cm depth rather than at 10-20 cm depth. The high-level experimental warming significantly altered microbial community composition in soil at the 0-10 cm depth rather than at 10-20 cm depth. Our findings suggest that the response of microbial communities in soil to warming varied with warming magnitudes in the highland barley system of the Lhasa River.  相似文献   

14.
开垦年限对黑土农田土壤微环境产生影响,土壤微生物的功能多样性发生变化。于2019年7月在黑龙江省黑河市黑土区采集不同土层(0~10 cm、10~20 cm、20~30 cm)开垦98 a、50 a和10 a的黑土农田土壤,采用Biolog-Eco微平板法研究开垦年限对黑土农田土壤微生物的活性、功能多样性和微生物对不同碳源的利用情况的影响。结果表明,开垦98 a的农田土壤微生物活性最强。农田土壤微生物群落组成及功能多样性开垦98 a >开垦10 a >开垦50 a。开垦年限和土层深度影响黑土农田土壤微生物对碳源的利用能力。在0~10 cm层中,土壤微生物对碳源的利用程度最高。主成分分析结果表明,黑土农田土壤中的微生物主要利用的是糖类和氨基酸类。  相似文献   

15.
In semi-arid areas of China, gravel and sand mulch is a farming technique with a long history. In this study, a sample survey was conducted on long term gravel sand mulch observational fields in the Northwest Loess Plateau to determine the effects of long term mulch on soil microbial and soil enzyme activities. We found that after long term gravel-sand mulch, compared with bare ground, soil organic matter, alkali nitrogen, conductivity decreased, while pH and soil moisture increased. Urease, saccharase and catalase decreased with increased mulch thickness, while alkaline phosphatase was reversed. The results of Illumina MiSeq sequencing shows that after gravel-sand mulch, the bacterial and fungal community structure was different from bare land, and the diversity was reduced. Compared with bare land, the bacteria Proteobacteria and Acidobacteria abundance increased with increased thickness, and Actinobacteria was opposite. Also, at the fungal genus level, Fusarium abundance was significantly reduced, and Remersonia was significantly increased, compared with bare land. Redundancy analysis (RDA) revealed that soil environmental factors were important drivers of bacterial community changes. Overall, this study revealed some of the reasons for soil degradation after long term gravel-sand mulch. Therefore, it is recommended that the addition of exogenous soil nutrients after long term gravel-sand can help improve soil quality.  相似文献   

16.
湿地生态系统土壤微生物研究进展   总被引:9,自引:0,他引:9  
裴希超  许艳丽  魏巍 《湿地科学》2009,7(2):181-186
微生物是湿地生态系统不可缺少的成员,对湿地生态系统中物质转化、能量流动起着重要作用.综述了国内外湿地土壤微生物研究的现状,总结了湿地土壤微生物研究主要的几个方面,包括土壤微生物的群落结构研究、代谢活性研究和生态学功能的研究.对天然湿地土壤微生物群落、功能以及多样性研究提出了展望.  相似文献   

17.
以黑河中游人工绿洲边缘天然草地及其转变的人工梭梭灌木林(21 a)、人工杨树林(28 a)、人工樟子松林(33 a)和农田(开垦27 a和100 a)为研究对象,基于6种研究样地中小型土壤动物群落的调查数据,采用多变量排序和通径分析等方法,研究了土地利用/覆被变化与管理措施对中小型土壤动物群落及其主要类群演变的耦合效应。主要结果是:①将天然草地转变为未实施管理措施的人工梭梭灌木林后并未引起土壤动物群落组成、数量和物种多样性的显著变化,而转变为实施管理措施的杨树和樟子松人工林及农田后,导致了土壤动物群落组成、数量和物种多样性的变异,证实了土地覆被变化对中小型土壤动物群落的作用及其效应受管理措施的强烈调控。②土壤动物群落的演变过程受土地覆被变化与灌溉和施肥管理的共同影响,其中灌溉的贡献率最大,是关键驱动因子。③不同土壤动物类群对土地覆被变化和管理耦合作用的响应不同。灌溉对跳虫、甲螨和革螨的个体数量和物种丰富度的直接影响和总效应最大;施肥对辐螨的个体数量和物种丰富度的直接影响和总效应最大;灌溉和施肥对稀有类群的个体数量和物种丰富度的直接影响和总效应均较大,具同等重要的作用。结论是,土地覆被变化与管理耦合作用通过改变土壤水文和生态环境条件驱动了中小型土壤动物群落的演变过程。  相似文献   

18.
生物土壤结皮对荒漠昆虫多样性的影响   总被引:10,自引:6,他引:4  
生物土壤结皮广泛分布在干旱半干旱地区与寒区荒漠,是荒漠生态系统的主要组成和景观特征之一,其重要性已被大量的研究报道所证实。然而,关于生物土壤结皮与昆虫种类多样性之间关系的研究却很少。本文以腾格里沙漠东南缘的沙坡头地区半固定沙丘柠条-油蒿群落和固定沙丘柠条-油蒿群落为观测样地,选择具有不同类型生物土壤结皮分布的植被群落为观测样方。昆虫的调查采用100 m×100 m的样方,利用样筐和网捕法收集昆虫,记录昆虫数量,采集标本在室内进行鉴定。结果表明:与无结皮覆盖的植被区相比,生物土壤结皮在地表的覆盖显著地增加了昆虫的多样性和种的丰富度,其中以苔藓和地衣为主的结皮覆盖的植被样方中昆虫种的多样性和丰富度显著地高于以蓝藻和藻类为主的结皮样方。生物土壤结皮对荒漠昆虫多样性的贡献可能是由于稳定了土表、改善了植被系统中的土壤环境,为昆虫,特别是幼虫阶段提供相对适宜的土壤生境或部分食物来源。  相似文献   

19.
In order to investigate the general tendency of soil microbial community responses to fertilizers, a meta-analysis approach was used to synthesise observations on the effects of inorganic and organic fertilizer addition (N: nitrogen; P: phosphorus; NP: nitrogen and phosphorus; PK: phosphorus and potassium; NPK: nitrogen, phosphorus and potassium; OF: organic fertilizer; OF+NPK: organic fertilizer plus NPK) on soil microbial communities. Among the various studies, PK, NPK, OF and OF+NPK addition increased total phospholipid fatty acid (PLFA) by 52.0%, 19.5%, 334.3% and 58.3%, respectively; while NP, OF and OF+NPK addition increased fungi by 5.6%, 21.0% and 8.2%, respectively. NP, NPK and OF addition increased bacteria by 6.4%, 9.8% and 13.3%, respectively; while NP and NPK addition increased actinomycetes by 7.0% and 14.8%, respectively. Addition of ammonium nitrate rather than urea decreased gram-negative bacteria (G -). N addition increased total PLFA、bacteria and actinomycetes in croplands, but decreased fungi and bacteria in forests, and the F/B ratio in grasslands. NPK addition increased total PLFA in forests but not in croplands. The N addition rate was positively correlated with the effects of N addition on gram-positive bacteria (G +) and G -. Therefore, different fertilizers appear to have different effects on the soil microbial community. Organic fertilizers can have a greater positive effect on the soil microbial community than inorganic fertilizers. The effects of fertilizers on the soil microbial community varied with ecosystem types. The effect of N addition on the soil microbial community was related to both the forms of nitrogen that were added and the nitrogen addition rate.  相似文献   

20.
Microbes inhabiting the desert respond sensitively to environmental changes and may be an indicator for changes in the desert ecosystem.Hypolithic microbial communities in the desert play a vital role in ecosystem processes such as soil formation and organic matter accumulation.This study investigated and compared the culturable bacterial community structure and diversity in hypolithic and peripheral soils,and the interaction between bacteria and environmental factors.The bacteria were isolated using four different kinds of media and identified by 16S rRNA gene-sequence analysis.The numbers of culturable bacteria in the hypolithic and peripheral soils ranged from 3.0×104 to 3.6×105 CFU/g and from 6.5×104 to 5.3×105 CFU/g,respectively,indicating that the bacteria number in peripheral soil was higher than that in hypolithic soil.A total of 98 species belonging to 34 genera were identified,among which Arthrobacter,Bacillus,and Streptomyces were found dominantly and widely distributed.The community of culturable bacteria had obvious sample specificity,and the diversity in hypolithic soil was higher than that in peripheral soil.On the regional scale,the distribution of culturable bacteria and the environmental factors showed regular changes.On the local scale,the high heterogeneity of the hypolithic environment determined the specificity of the number and species of culturable bacteria.  相似文献   

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