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1.
从海南热带植物园采集12种药用植物的根际土样,采用选择性分离方法,分离得到400株根际放线菌。使用5种活性筛选模型对分离菌株进行生物活性评价,154株放线菌在一个或多个活性筛选模型中显示为阳性,菌株初筛阳性率达38.5%;根据菌株形态特征并结合代谢产物的生物活性,从中挑选出28株菌进行16S rRNA基因序列分析,发现其分属于链霉菌属、诺卡氏菌属、小单孢菌属和野野村菌属。  相似文献   

2.
根结线虫放线菌及其生物防治活性研究   总被引:4,自引:0,他引:4  
从感染植物根部的根结线虫卵和雌虫中,分离得到放线菌20株。形态、细胞壁氨基酸组分和16S rRNA基因序列分析表明:分离菌株分属于链霉菌属(Streptomyces)、诺卡氏菌属(Nocardia)和假诺卡氏菌属(Pseudonocardia),其中链霉菌占80.0%。分离菌株对根结线虫Meloidogynespp.卵的平均寄生率、卵的孵化率、幼虫死亡率分别为54.1%、40.4%和26.2%。根据体外测试的结果,选择具有高致病力的3株链霉菌(1-17,2-6,9-47)和1株诺卡氏菌(5-1)进行温室番茄防效测试,其生防效率分别为31.4%、37.7%、56.4%和42.4%。  相似文献   

3.
广西山口红树林内生放线菌的分离、筛选及初步鉴定   总被引:5,自引:2,他引:5  
从广西山口国家红树林生态自然保护区采集8种真红树植物和5种半红树植物的根、茎、叶及胚轴等组织样品共计41份。经过表面消毒后粉碎,分别以几丁质、腐殖酸、木聚糖等作为主要营养及能量来源设计了8种分离培养基,从植物组织中分离得到118株放线菌。使用6种新药筛选模型对分离菌株进行了生理活性筛选,77株放线菌的发酵液样品在一个或多个药物筛选模型中显示为阳性,初筛阳性率为65.3%。对77株筛选阳性菌株进行的初步分类研究结果显示,其中44株属于链霉菌属,25株为小单孢属的菌株,3株属于糖丝菌属,3株为诺卡氏属菌株,1株是拟诺卡氏属菌株,1株是伦茨氏菌属的菌株。对一株在抗多重耐药检定菌HH22和降血脂模型上都显示出良好活性的菌株I07A-01824进行表型和基因型分析,确定I07A-01824为黄白链霉菌(Streptomyces albidoflavus)菌株。该研究显示,红树植物内生环境不仅仅孕育了丰富多样的内生放线菌,而且红树植物内生放线菌也是新型天然生理活性次级代谢产物的有效来源。  相似文献   

4.
【目的】研究药用植物南方红豆杉内生及根际土壤放线菌的多样性及其抑菌、抗肿瘤等重要生物活性并获得一些具有强抑制植物病原真菌以及抗肿瘤等重要生物活性的菌株。【方法】选择7种培养基从南方红豆杉及其根际土壤中分离放线菌,对链霉菌进行形态学分类,去重复后对其进行抑制植物病原真菌以及抗肿瘤活性的筛选并对高活性菌株进行初步鉴定。对部分菌株进行16S rRNA基因测序分析研究其多样性。【结果】研究共分离得到277株放线菌,经去重复后剩余111株放线菌,可归类到6个亚目、7个科、8个属。其中链霉菌可分为10个类群。生物活性研究结果显示:30.9%的菌株具有抑制植物病原真菌活性,其中6株放线菌对多种植物病原真菌显示了强的抑菌活性。分别有44.1%和33.3%的菌株对胃癌肿瘤细胞株SGC-7901和肺癌肿瘤细胞株NCI-H460的抑制率在40%以上。【结论】药用植物南方红豆杉及其根际土壤蕴含种类丰富的放线菌资源,具有良好的生物学活性。菌株KLBMP 2170具有显著的抑菌以及抗肿瘤活性,值得我们去进一步研究。  相似文献   

5.
【目的】从3种红树林植物根际沉积物中分离和鉴定放线菌,进行抑菌活性初筛获得目标菌株并研究其次级代谢产物。【方法】使用5种培养基对红树林植物根际沉积物放线菌进行分离,采用16S rRNA基因序列比对的方法研究沉积物中的放线菌多样性,结合抑菌活性筛选获得目标菌株后进行放大规模发酵和分离鉴定次级代谢产物,根据生物合成基因簇定位和分析对化合物的生物合成途径进行推导。【结果】从3种红树林植物根际沉积物中分离得到放线菌49株,包括链霉菌属(Streptomyces)31株、小单孢菌属(Micromonospora)14株、小双孢菌属(Microbispora)、链孢子囊菌属(Streptosporangium)、野野村氏菌属(Nonomuraea)和糖单孢菌属(Saccharomonospora)各1株。获得粗浸膏抑菌活性较好的菌株Streptomyces sp. SCSIO 40067,从中分离鉴定了6个α-吡喃酮类化合物:germicidin A–C、germicidin I和isogermicidin A–B,并首次报道了germicidin A的晶体结构。从菌株SCSIO 40067基因组...  相似文献   

6.
塔里木盆地荒漠盐碱生境土壤放线菌的初步研究   总被引:3,自引:0,他引:3  
采用常规方法研究了新疆塔里木盆地荒漠盐碱生境土壤放线菌区系、放线菌的耐盐、碱性及对植物病原真菌的拮抗性。结果表明:土壤放线菌区系较单一,仅分离到链霉菌属和拟诺卡氏菌属,其中以链霉菌属为主(98.57%),链霉菌可分10个类群,以白孢类群为优势类群。土壤含盐量愈高,链霉菌组成愈简单。放线菌的最适生长盐浓度多集中在6%~8%,最适生长pH集中在7~8。24株供试放线菌中,有4株中度嗜盐放线菌对供试靶标菌有拮抗性,占供试菌的16.67%。  相似文献   

7.
宁楚涵  李文彬  张晨  刘润进 《微生物学报》2019,59(10):2024-2037
【目的】旨在分离、筛选并鉴定体外具抑菌促生作用的定殖于植物根内和根围的放线菌,以期丰富放线菌种质资源,为研制植物病害生防菌剂提供技术依据。【方法】采用稀释涂布平板法分离盐碱地、湿地、工业污染土壤中优势植物根内及其根围中的放线菌;通过平板对峙试验筛选具有抑菌效应的菌株,进而采用Salkowski比色法、CAS平板检测法和无氮源培养法进一步检测抑菌菌株的促生作用;通过形态观测、生理生化特性检测及16SrRNA基因序列分析鉴定菌种。【结果】共分离到链霉菌属(Streptomyces)、诺卡氏菌属(Nocardia)和小单孢菌属(Micromonospora) 3属共283株定殖于植物根内和根围的放线菌,3个采样地中湿地数量最多,均为根围土根内;其中链霉菌属占总数的77%,可分为10个类群。经筛选获得7株抑菌活性和促生效应较强的菌株,其中菌株H6-1抑菌效应最大,其无菌发酵液对尖孢镰刀菌(Fusariumoxysporum)、禾谷镰刀菌(Fusariumgraminearum)、灰葡萄孢菌(Botrytis cinerea)、立枯丝核菌(Rhizoctoniasolani)、轮纹大茎点霉(Macrophomakawatsukai)和瓜类炭疽菌(Colletotrichumorbiculare)的抑制率分别为32.3%、42.6%、48%、72.2%、58.1%和60.5%;而D11-4菌株的促生作用最强,能产吲哚乙酸(22.3 mg/L)、产铁载体(晕圈直径25.2 mm)和固氮。经鉴定这7株放线菌是吸水链霉菌变种(Streptomyces angustmyceticus) H4-6、娄彻氏链霉菌(Streptomyces rochei) S2-2、浑圆链霉菌(Streptomycesglobosus)H6-1、(Streptomycesiakyrus)GD8-4、波卓链霉菌(Streptomyces bottropensis) GH8-6、(Streptomyces paradoxus) H8-2和(Streptomyces coralus) D11-4。【结论】三个生境中定殖于植物根内和根围的放线菌类群丰富且所筛选获得的7株放线菌具有生防潜力,值得进一步研发。  相似文献   

8.
【目的】分离四川省各个地区川楝内生放线菌并研究其物种多样性。【方法】应用7种选择性分离培养基分离样品根、茎、叶、树皮和果实中的内生放线菌,采用16SrRNA基因RFLP分析代表菌株多样性。【结果】研究共获得403株内生放线菌。不同地点、不同植株部位、不同培养基分离得到的内生放线菌数目均有差异。广元采集的样品分离得到的数目最多,为86株;最少的是绵阳,仅有12株。从植物表皮中分离到148株放线菌,占获得菌株总数的36.7%;而从果中分离到31株,仅占获得菌株总数的7.6%;虽然从根部分离到的数量也很少,但是其出菌率却是最高的。5号和3号培养基的分离效果最为理想。16S rRNA基因RFLP分析结果显示所有供试菌株在68%的相似性上聚在一起,在84%的相似水平上分成了10个遗传类型。代表菌株的16SrRNA基因序列测定及系统发育分析结果表明:分离得到的放线菌包括4个属,分别是链霉菌属(Streptomyces)、北里孢菌属(Kitasatospora)、节杆菌属(Arthrobacter)、克里布所菌属(Kribbella)。其中,链霉菌是优势类群,占代表菌株数目的比例高达91%,而稀有放线菌的比例只有9%。【结论】研究发现的川楝内生放线菌主要属于链霉菌属(Streptomyces)、北里孢菌属(Kitasatospora)、节杆菌属(Arthrobacter)、克里布所菌属(Kribbella)。  相似文献   

9.
为寻找新型抗衰老药物,该文以海南西海岸红树林伴生植物为研究对象,采用9种不同培养基从7种伴生植物21份样品中分离纯化放线菌,通过PCR扩增,16S rRNA基因序列分析已纯化放线菌的多样性,利用秀丽隐杆线虫(Caenorhabditis elegans)模型筛选菌株来进行延缓衰老活性研究。结果表明:(1)从7种伴生植物21份样品中共分离到26株海洋放线菌,隶属于9科15属,分别为拟诺卡菌属、短状杆菌属、短小杆菌属、Demequina、戈登氏菌属、类诺卡氏菌属、Lysinimicrobium、细杆菌属、假诺卡氏菌属、微球菌属、原小单孢菌属、拟无枝酸菌属、Yimella、北里孢菌属和链霉菌属,其中链霉菌属为优势菌属。(2)经秀丽隐杆线虫模型筛选,发现有2株海洋放线菌的发酵粗提物具有延缓秀丽隐杆线虫衰老的作用。综上结果说明海南西海岸红树林伴生植物中含有丰富多样的药用放线菌资源,为海洋放线菌抗衰老研究奠定了基础。  相似文献   

10.
青海盐碱环境中具抗肿瘤活性放线菌的筛选和多样性研究   总被引:4,自引:1,他引:3  
从我国青海省采集盐碱土样或泥样,用添加1.0~3.0mol/L NaCl的GPY琼脂培养基和ISP2琼脂培养基分离到145株典型放线菌菌株。采用6种肿瘤细胞株对分离菌株的发酵产物进行体外筛选,得到26株抗肿瘤活性阳性菌株(17.9%),19株为拟诺卡氏属(Nocardiopsis)菌株,7株为链霉菌属(Streptomyces)菌株。在抗肿瘤活性、形态特征、生理生化特性和全细胞水解物氨基酸组分分析等实验结果的基础上,选取差异较大的8株抗肿瘤活性阳性菌株进行16S rRNA基因序列测定和系统发育多样性分析。结果表明,2株属于链霉菌属(Streptomyces)的1个已知物种和1个潜在新种;6株属于拟诺卡氏菌属(Nocardiopsis),可能代表该属的4个新种。研究表明青海盐碱环境中存在产生抗肿瘤活性物质的重要放线菌资源,也提示其中蕴藏着较丰富的微生物多样性。  相似文献   

11.
Prolonged use of broad-spectrum antibiotics has led to the emergence of drug-resistant pathogens, both in medicine and in agriculture. New threats such as biological warfare have increased the need for novel and efficacious antimicrobial agents. Natural habitats not previously examined as sources of novel antibiotic-producing microorganisms still exist. One such habitat is the rhizosphere of desert shrubs. Here, we show that one desert shrub habitat, the rhizosphere of desert big sagebrush (Artemisia tridentata) is a source of actinomycetes capable of producing an extensive array of antifungal metabolites. Culturable microbial populations from both the sagebrush rhizosphere and nearby bulk soils from three different sites were enumerated and compared, using traditional plate-count techniques and antibiotic activity bioassays. There were no statistical differences between the relative numbers of culturable non-actinomycete eubacteria, actinomycetes and fungi in the rhizosphere versus bulk soils, but PCR amplification of the 16S rRNA gene sequences of the total soil DNA and denaturing gradient gel electrophoresis showed that the community structure was different between the rhizosphere and the bulk soils. A high percentage of actinomycetes produced antimicrobials; and the percentage of active producers was significantly higher among the rhizosphere isolates, as compared with the bulk soil isolates. Also, the rhizosphere strains were more active in the production of antifungal compounds than antibacterial compounds. 16S rRNA gene sequence analysis showed that sagebrush rhizospheres contained a variety of Streptomyces species possessing broad spectrum antifungal activity. Scanning electron microscopy studies of sagebrush root colonization by one of the novel sagebrush rhizosphere isolates, Streptomyces sp. strain RG, showed that it aggressively colonized young sagebrush roots, whereas another plant rhizosphere-colonizing strain, S. lydicus WYEC108, not originally isolated from sagebrush, was a poor colonizer of the roots of this plant, as were two other Streptomyces isolates from forest soil. These results support the hypothesis that the rhizosphere of desert big sagebrush is a promising source of habitat-adapted actinomycetes, producing antifungal antibiotics.  相似文献   

12.
A total of 445 actinomycete isolates were obtained from 16 medicinal plant rhizosphere soils. Morphological and chemotaxonomic studies indicated that 89% of the isolates belonged to the genus Streptomyces, 11% were non-Streptomycetes: Actinomadura sp., Microbispora sp., Micromonospora sp., Nocardia sp, Nonomurea sp. and three isolates were unclassified. The highest number and diversity of actinomycetes were isolated from Curcuma mangga rhizosphere soil. Twenty-three Streptomyces isolates showed activity against at least one of the five phytopathogenic fungi: Alternaria brassicicola, Collectotrichum gloeosporioides, Fusarium oxysporum, Penicillium digitatum and Sclerotium rolfsii. Thirty-six actinomycete isolates showed abilities to produce indole-3-acetic acid (IAA) and 75 isolates produced siderophores on chrome azurol S (CAS) agar. Streptomyces CMU-PA101 and Streptomyces CMU-SK126 had high ability to produced antifungal compounds, IAA and siderophores.  相似文献   

13.
于基成  刘秋  邵阳  刘长建  闫建芳  齐小辉 《生态学报》2014,34(20):5896-5906
以大肠杆菌、金黄色葡萄球菌和尖孢镰刀枯萎病菌作为测试靶目标,采用9种分离培养基从大连海域13个不同采样点的海洋沉积物样品中分离到165株海洋链霉菌。从165株海洋放线菌中筛选到对金黄色葡萄球菌具有抑制活性的菌株85株,占总菌株数的51.5%;对大肠杆菌具有抑制活性的菌株27株,占总菌株数的16.4%;对尖孢镰刀枯萎病菌具有抑制活性的菌株仅有6株,占总菌株数的3.6%。因此,海洋链霉菌的活性更多地表现为对细菌的抗性,尤其对革兰氏阳性细菌具有更高的抑制活性。对其中具有抑制活性或形态独特的菌株进行了16S r DNA序列分析,并构建系统发育树,显示活性海洋链霉菌具有丰富的种类多样性和广谱抗菌活性。同种海洋链霉菌与土壤链霉菌活性比较结果也表明,海洋链霉菌多表现抗革兰氏阳性细菌活性。  相似文献   

14.
Red soils, which are widely distributed in tropical and subtropical regions of southern China, are characterized by low organic carbon, high content of iron oxides, and acidity and, hence, are likely to be ideal habitats for acidophilic actinomycetes. However, the diversity and biosynthetic potential of actinomycetes in such habitats are underexplored. Here, a total of 600 actinomycete strains were isolated from red soils collected in Jiangxi Province in southeast China. 16S rRNA gene sequence analysis revealed a high diversity of the isolates, which were distributed into 26 genera, 10 families, and 7 orders within the class Actinobacteria; these taxa contained at least 49 phylotypes that are likely to represent new species within 15 genera. The isolates showed good physiological potentials for biosynthesis and biocontrol. Chemical screening of 107 semirandomly selected isolates spanning 20 genera revealed the presence of at least 193 secondary metabolites from 52 isolates, of which 125 compounds from 39 isolates of 12 genera were putatively novel. Macrolides, polyethers, diketopiperazines, and siderophores accounted for most of the known compounds. The structures of six novel compounds were elucidated, two of which had a unique skeleton and represented characteristic secondary metabolites of a putative novel Streptomyces phylotype. These results demonstrate that red soils are rich reservoirs for diverse culturable actinomycetes, notably members of the families Streptomycetaceae, Pseudonocardiaceae, and Streptosporangiaceae, with the capacity to synthesize novel bioactive compounds.  相似文献   

15.
Marine actinomycetes provide a rich source of structurally unique and bioactive secondary metabolites. Numerous genera of marine actinomycetes have been isolated from marine sediments as well as several sponge species. In this study, 16 different species of Caribbean sponges were collected from four different locations in the coastal waters off Puerto Rico in order to examine diversity and bioactive metabolite production of marine actinomycetes in Caribbean sponges. Sediments were also collected from each location, in order to compare actinomycete communities between these two types of samples. A total of 180 actinomycetes were isolated and identified based on 16S rRNA gene analysis. Phylogenetic analysis revealed the presence of at least 14 new phylotypes belonging to the genera Micromonospora, Verruscosispora, Streptomyces, Salinospora, Solwaraspora, Microbacterium and Cellulosimicrobium. Seventy-eight of the isolates (19 from sediments and 59 from sponges) shared 100 % sequence identity with Micromonospora sp. R1. Despite having identical 16S rRNA sequences, the bioactivity of extracts and subsequent fractions generated from the fermentation of both sponge- and sediment-derived isolates identical to Micromonospora sp. R1 varied greatly, with a marked increase in antibiotic metabolite production in those isolates derived from sponges. These results indicate that the chemical profiles of isolates with high 16S rRNA sequence homology to known strains can be diverse and dependent on the source of isolation. In addition, seven previously reported dihydroquinones produced by five different Streptomyces strains have been purified and characterized from one Streptomyces sp. strain isolated in this study from the Caribbean sponge Agelas sceptrum.  相似文献   

16.
Endophytic actinomycetes were isolated from Combretum latifolium Blume (Combretaceae),Western Ghats of Southern India and identified by its characteristic culture morphology and molecular analysis of 16S rRNA gene sequences. In this survey of endophytic actinomycetes, a total of 117 isolates representing 9 different genera of endophytic actinomycetes were obtained using four different isolation media and several of them seemed to be novel taxa. Streptomyces genera (35%) was the most frequently isolated strains, followed by Nocordiopsis (17%) and Micromonospora (13%). ISP-4 medium recovered more isolates (47%) when compared to rest of the media used. Preliminary antibacterial activity of the isolates was carried out by confrontation test. Ethyl acetate fraction of selected isolates in disc diffusion assay exhibited broad spectrum antimicrobial activity against test human pathogens. All Streptomyces spp. strains displayed significant antimicrobial activity against test pathogens. Strain CLA-66 and CLA-68 which are Nocordipsis spp. inhibited both bacterial and fungal pathogens where as other isolates inhibited atleast three test human pathogens in disc diffusion assay. Antimicrobial screening of endophytic actinomycetes from this host may represent a unique potential niche for antimicrobial compounds of industrial and pharmaceutical applications. This work is the first comprehensive report on incidence of potential endophytic actinomycetes inhabiting C. latifolium Blume.  相似文献   

17.
A total of 74 actinomycete isolates were cultivated from two marine sponges, Geodia barretti and Phakellia ventilabrum collected at the same spot at the bottom of the Trondheim fjord (Norway). Phylogenetic analyses of sponge-associated actinomycetes based on the 16S rRNA gene sequences demonstrated the presence of species belonging to the genera Streptomyces, Nocardiopsis, Rhodococcus, Pseudonocardia and Micromonospora. Most isolates required sea water for growth, suggesting them being adapted to the marine environment. Phylogenetic analysis of Streptomyces spp. revealed two isolates that originated from different sponges and had 99.7% identity in their 16S rRNA gene sequences, indicating that they represent very closely related strains. Sequencing, annotation, and analyses of the genomes of these Streptomyces isolates demonstrated that they are sister organisms closely related to terrestrial Streptomyces albus J1074. Unlike S. albus J1074, the two sponge streptomycetes grew and differentiated faster on the medium containing sea water. Comparative genomics revealed several genes presumably responsible for partial marine adaptation of these isolates. Genome mining targeted to secondary metabolite biosynthesis gene clusters identified several of those, which were not present in S. albus J1074, and likely to have been retained from a common ancestor, or acquired from other actinomycetes. Certain genes and gene clusters were shown to be differentially acquired or lost, supporting the hypothesis of divergent evolution of the two Streptomyces species in different sponge hosts.  相似文献   

18.
Phytophthora drechsleri damping-off is one of the most important diseases of cucumber (Cucumis sativus). Salinity is a serious problem for crop production and affects diversity and activity of soil microorganisms. Application of salt-tolerant biocontrol agents may be beneficial in order to protect plants against pathogenic fungi in saline soils. In this study, a total of 717 Streptomyces isolates were isolated from the rhizosphere of cucumber, out of which two isolates showed more than 70% inhibitory effect against P. drechsleri and had cellulase activity in the presence and absence of NaCl. In a greenhouse experiment, two Streptomyces isolates with the highest antagonistic activity, strains C 201 and C 801, reduced seedling damping-off of cucumber caused by P. drechsleri by 77 and 80%, respectively, in artificially infested soils. Strain C 201 increased dry weight of seedlings up to 21% in greenhouse experiments. Phylogenetic analyses of 16S rRNA gene sequence reveals that strains C 201 and C 801 are closely related to S. rimosus and S. monomycini respectively. Increased activity of polyphenol oxidase (PPO) and peroxidase (POX) enzymes in Streptomyces-treated plants proved the biocontrol-induced systemic resistance (ISR) in cucumber plants against P. drechsleri.  相似文献   

19.
The Biodiversity of Actinomycetes in Lake Baikal   总被引:1,自引:0,他引:1  
Terkina  I. A.  Drukker  V. V.  Parfenova  V. V.  Kostornova  T. Ya. 《Microbiology》2002,71(3):346-349
The taxonomic analysis of 107 actinomycete strains isolated from the bottom sediments and water of Lake Baikal showed that most of the water isolates belong to the genus Streptomyces and most of the sediment isolates belong to the genus Micromonospora. In the sediments, the number of actinomycetes increased with depth (down to 200 m). Eight Streptomyces isolates were identified to a species level.  相似文献   

20.
Actinobacteria from special habitats are of interest due to their producing of bioactive compounds and diverse ecological functions. However, little is known of the diversity and functional traits of actinobacteria inhabiting coastal salt marsh soils. We assessed actinobacterial diversity from eight coastal salt marsh rhizosphere soils from Jiangsu Province, China, using culture-based and 16S rRNA gene high throughput sequencing (HTS) methods, in addition to evaluating their plant growth-promoting (PGP) traits of isolates. Actinobacterial sequences represented 2.8%–43.0% of rhizosphere bacterial communities, as determined by HTS technique. The actinobacteria community comprised 34 families and 79 genera. In addition, 196 actinobacterial isolates were obtained, of which 92 representative isolates were selected for further 16S rRNA gene sequencing and phylogenetic analysis. The 92 strains comprised seven suborders, 12 families, and 20 genera that included several potential novel species. All representative strains were tested for their ability of producing indole acetic acid (IAA), siderophores, 1-aminocyclopropane-1-carboxylate deaminase (ACCD), hydrolytic enzymes, and phosphate solubilization. Based on the presence of multiple PGP traits, two strains, Streptomyces sp. KLBMP S0051 and Micromonospora sp. KLBMP S0019 were selected for inoculation of wheat seeds grown under salt stress. Both strains promoted seed germination, and KLBMP S0019 significantly enhanced seedling growth under NaCl stress. Our study demonstrates that coastal salt marsh rhizosphere soils harbor a diverse reservoir of actinobacteria that are potential resources for the discovery of novel species and functions. Moreover, several of the isolates identified here are good candidates as PGP bacteria that may contribute to plant adaptions to saline soils.  相似文献   

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