Targeted metagenomics using next generation sequencing in laboratory diagnosis of culture negative endophthalmitis

被引:13
作者
Mishra, Deepanshi [1 ]
Satpathy, Gita [1 ,2 ]
Chawla, Rohan [3 ]
Paliwal, Daizy [4 ]
Panda, Subrat Kumar [4 ]
机构
[1] All India Inst Med Sci, Dr RP Ctr Ophthalm Sci, Ocular Microbiol, New Delhi, India
[2] All India Inst Med Sci, Dept Microbiol, New Delhi, India
[3] All India Inst Med Sci, Dr RP Ctr Ophthalm Sci, Vitreo Retinal Serv, New Delhi, India
[4] All India Inst Med Sci, Dept Pathol, New Delhi, India
关键词
Metagenomics; Next generation sequencing; Endophthalmitis; Operational taxonomic units; CLINICAL MICROBIOLOGY; CARE CENTER; INFECTION; BACTERIAL; REGIONS; PROFILE; TESTS;
D O I
10.1016/j.heliyon.2021.e06780
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
To study the feasibility of 16S rRNA metagenomics using next generation sequencing (NGS) along with broad range PCR assay for 762 bp region of 16S rRNA gene with Sanger's sequencing, in microbial diagnosis of culture negative endophthalmitis. Vitreous fluid from 16 culture negative and one culture positive endophthalmitis patients, admitted to a tertiary care hospital were processed for targeted metagenomics. NGS of 7 variable regions of 16S rRNA gene was done using Ion Torrent Personal Genome Machine (PGM). Sequence data were analyzed using Ion Reporter software using QIIME and BLSATN tools and Greengenes and NCBI-Genbank databases. Bacterial genome sequences were detected in 15 culture negative and culture positive vitreous specimens. The sequence reads varied between 25,245-540,916 with read length between 142bp-228bp and coverage depth was 41.0X and 81.2X. Operational taxonomic unit (OTUs) of multiple bacterial genera and species were detected in 13 culture negative vitreous specimens and OTUs of a single bacterial species were detected in 2 culture negative and 1 culture positive specimens; one negative specimen had no bacterial DNA. Maximum numbers of OTUs detected by NGS for a bacterial species from any vitreous specimen was the one which was detected and identified by Sanger's sequencing in broad range PCR. All the bacteria were belonging to clinically relevant species. Broad range PCR with sequencing failed to identify bacteria from 5 of the 16 (31.25%) culture negative vitreous specimens. Metagenomics could detect and identify bacterial pathogens in 15 of the 16 culture negative vitreous specimen's up to species level. With rapidly decreasing cost, metagenomics has a potential to be used widely in endophthalmitis diagnosis, in which culture negativity is usually high.
引用
收藏
页数:6
相关论文
共 50 条
  • [1] Encephalitis diagnosis using metagenomics: application of next generation sequencing for undiagnosed cases
    Brown, Julianne R.
    Bharucha, Tehmina
    Breuer, Judith
    JOURNAL OF INFECTION, 2018, 76 (03) : 225 - 240
  • [2] Next-Generation Sequencing Supports Targeted Antibiotic Treatment for Culture Negative Orthopedic Infections
    Kullar, Ravina
    Chisari, Emanuele
    Snyder, James
    Cooper, Christopher
    Parvizi, Javad
    Sniffen, Jason
    CLINICAL INFECTIOUS DISEASES, 2023, 76 (02) : 359 - 364
  • [3] Next-Generation Sequencing for the Diagnosis of Challenging Culture-Negative Endocarditis
    Kolb, Manon
    Lazarevic, Vladimir
    Emonet, Stephane
    Calmy, Alexandra
    Girard, Myriam
    Gaia, Nadia
    Charretier, Yannick
    Cherkaoui, Abdessalam
    Keller, Peter
    Huber, Christoph
    Schrenzel, Jacques
    FRONTIERS IN MEDICINE, 2019, 6
  • [4] Next-generation sequencing for laboratory diagnosis of infectious diseases
    Lau, Susanna K. P.
    Woo, Patrick C. Y.
    EXPERT REVIEW OF MOLECULAR DIAGNOSTICS, 2024, 24 (12) : 1051 - 1052
  • [5] Microbiological diagnosis of endophthalmitis using nanopore targeted sequencing
    Huang, Qiong
    Fu, Aisi
    Wang, Yiyan
    Zhang, Jie
    Zhao, Wanxu
    Cheng, Yang
    CLINICAL AND EXPERIMENTAL OPHTHALMOLOGY, 2021, 49 (09) : 1060 - 1068
  • [6] Targeted next generation sequencing for elbow periprosthetic joint infection diagnosis
    Flurin, Laure
    Wolf, Matthew J.
    Greenwood-Quaintance, Kerryl E.
    Sanchez-Sotelo, Joaquin
    Patel, Robin
    DIAGNOSTIC MICROBIOLOGY AND INFECTIOUS DISEASE, 2021, 101 (02)
  • [7] DIAGNOSIS OF INHERITED CARDIAC DISORDERS USING TARGETED NEXT GENERATION SEQUENCING PANELS
    Lee, Hyunjoo
    Jung, Se Yong
    Jung, Jo Won
    Choi, Jae Young
    Eun, Lucy Youngmin
    Oh, Jiyoung
    Lee, Jin-Sung
    MOLECULAR GENETICS AND METABOLISM, 2019, 126 (03) : 311 - 312
  • [8] DIAGNOSIS OF INHERITED CARDIAC DISORDERS USING TARGETED NEXT GENERATION SEQUENCING PANELS
    Lee, Hyunjoo
    Jung, Se Yong
    Jung, Jo Won
    Choi, Jae Young
    Eun, Lucy Youngmin
    Oh, Jiyoung
    Lee, Jin-Sung
    MOLECULAR GENETICS AND METABOLISM, 2019, 127 (03) : 282 - 282
  • [9] Targeted next generation sequencing for molecular diagnosis of Usher syndrome
    María J Aparisi
    Elena Aller
    Carla Fuster-García
    Gema García-García
    Regina Rodrigo
    Rafael P Vázquez-Manrique
    Fiona Blanco-Kelly
    Carmen Ayuso
    Anne-Françoise Roux
    Teresa Jaijo
    José M Millán
    Orphanet Journal of Rare Diseases, 9
  • [10] Targeted next-generation sequencing for the genetic diagnosis of dysferlinopathy
    Shin, Ha Young
    Jong, Hoon
    Han, Joo Hyung
    Park, Hyung Jun
    Lee, Jung Hwan
    Kim, So Won
    Kim, Seung Min
    Park, Young-Bun
    Kim, Dae-Seong
    Bang, Duhee
    Lee, Min Goo
    Lee, Ji Hyun
    Choi, Young-Chul
    NEUROMUSCULAR DISORDERS, 2015, 25 (06) : 502 - 510