Epstein Files Full PDF

CLICK HERE
Technopedia Center
PMB University Brochure
Faculty of Engineering and Computer Science
S1 Informatics S1 Information Systems S1 Information Technology S1 Computer Engineering S1 Electrical Engineering S1 Civil Engineering

faculty of Economics and Business
S1 Management S1 Accountancy

Faculty of Letters and Educational Sciences
S1 English literature S1 English language education S1 Mathematics education S1 Sports Education
teknopedia

  • Registerasi
  • Brosur UTI
  • Kip Scholarship Information
  • Performance
Flag Counter
  1. World Encyclopedia
  2. Bacillati - Wikipedia
Bacillati - Wikipedia
From Wikipedia, the free encyclopedia
Kingdom of land bacteria

Bacillati
Scanning electron micrograph of Actinomyces israelii (Actinomycetota)
Scientific classification Edit this classification
Domain: Bacteria
Kingdom: Bacillati
(Gibbons & Murray 1978) Oren & Göker 2024
Type genus
Bacillus
Cohn 1872 (Approved Lists 1980)[2]
Phyla[1]
  • Actinomycetota
  • Armatimonadota
  • Bacillota
  • Chloroflexota
  • Cyanobacteriota
  • "Lithacetigenota"
  • Minisyncoccota
  • Mycoplasmatota
Synonyms
  • "Glidobacteria" Cavalier-Smith, 2006 (excluding Actinomycetota and Bacillota)
  • "Terrabacteria" Battistuzzi et al., 2004

Bacillati,[3] formerly known as "Terrabacteria", is a kingdom containing approximately two-thirds of prokaryote species, including those in the gram positive phyla (Actinomycetota and Bacillota) as well as the phyla Cyanobacteriota and Chloroflexota.[4][5]

It derives its name (terra = "land") from the evolutionary pressures of life on land. Bacillati possess important adaptations such as resistance to environmental hazards (e.g., desiccation, ultraviolet radiation, and high salinity) and oxygenic photosynthesis. Also, the unique properties of the cell wall in gram-positive taxa, which likely evolved in response to terrestrial conditions, have contributed toward pathogenicity in many species.[5] These results now leave open the possibility that terrestrial adaptations may have played a larger role in prokaryote evolution than currently understood.[4][5]

"Terrabacteria" (syn. Bacillati) was proposed in 2004 for Actinomycetota, Cyanobacteria, and Deinococcota[4] and was expanded later to include Bacillota and Chloroflexota.[5] Other phylogenetic analyses[6][7][8] have supported the close relationships of these phyla. Most species of prokaryotes not placed in "Terrabacteria" were assigned to the taxon "Hydrobacteria",[5] (which is also known as kingdom Pseudomonadati)[9] in reference to the moist environment inferred for the common ancestor of those species. Some molecular phylogenetic analyses[10][11] have not supported this dichotomy of Bacillati and Pseudomonadati, but the most recent genomic analyses,[7][8] including those that have focused on rooting the tree,[7] have found these two groups to be monophyletic.[7]

Bacillati and Pseudomonadati were inferred to have diverged approximately 3 billion years ago, suggesting that land (continents) had been colonized by prokaryotes at that time.[5] Together, Bacillati and Pseudomonadati form a large clade containing 97% of prokaryotes and 99% of all species of Bacteria known by 2009, and placed in the taxon "Selabacteria", in allusion to their phototrophic abilities (σέλας "light" in Greek).[12] Currently, the bacterial phyla that are outside of Bacillati + Pseudomonadati, and thus justifying the taxon "Selabacteria", are debated and may or may not include Fusobacteria.[5][7]

The name “Glidobacteria” [13] included some members of Bacillati but excluded the large gram positive groups, Bacillota and Actinomycetota, and is not supported by molecular phylogenetic data.[4][5][6][10][11][7][8] Moreover, the article naming Glidobacteria[13] did not include a molecular phylogeny or statistical analyses and did not follow the widely used three-domain system. For example, it claimed that eukaryotes split from Archaea very recently (~900 Mya), which is contradicted by the fossil record,[14] and that lineage of eukaryotes + Archaea was nested within Bacteria as a close relative of Actinomycetota.

In 2022, new rules were introduced for kingdom-level taxa of prokaryotes, and the same two authors who proposed those new rules, proposed new names in 2024.[3] They concluded that “the taxonomically preferable solution for bacterial kingdoms seems to be to accept the subdivision apparent in the study by Battistuzzi and Hedges,” with refinement.[5] The new (and only valid) name is kingdom Bacillati.[3]

Phylogeny

[edit]

The phylogenetic tree according to the phylogenetic analyses of Battistuzzi and Hedges (2009) is the following and with a molecular clock calibration.[4][5]

Recent molecular analyses have found roughly the following relationships including other phyla, whose relationships were uncertain.[15][16][17][18][19][20]

Bacillati
DST

Fusobacteriota (sometimes included in Gracilicutes)

Synergistota

Coprothermobacterota

Atribacterota

"Fervidibacteria"

Dictyoglomota

Caldisericota

Deinococcota

"Acetothermia"

Thermotogota

"Calescamantes"

"Pyropristinus"

Aquificota (sometimes included in Gracilicutes)

"Cyanobacteriota/Melainabacteria group"

"Margulisbacteria"

"Saganbacteria"

"Sericytochromatia"

Cyanobacteriota

"Melainobacteriota"

Bacillota (includes Mycoplasmatota)

Actinomycetota

"Dormibacteraeota"

Chloroflexota

"Eremiobacteraeota"

Armatimonadota

"Abditibacteriota"

On the other hand, Coleman et al.[7] named the clade composed of Thermotogota, Deinococcota, Synergistota and related as DST and furthermore the analysis suggests that ultra-small bacteria (CPR group) may belong to Bacillati being more closely related to Chloroflexota. According to this study the phylum Aquificota sometimes included belongs to Pseudomonadati and that the phylum Fusobacteriota can belong to both Bacillati and Pseudomonadati. The result was the following:[7]

Bacillati

"DST"

"Cyanobacteriota/Melainabacteria group"

Bacillota (includes Mycoplasmatota)

Actinomycetota

Armatimonadota

"Eremiobacteraeota"

"CPR"

"Dormibacteraeota"

Chloroflexota

References

[edit]
  1. ^ Parte, A.C., Sardà Carbasse, J., Meier-Kolthoff, J.P., Reimer, L.C. and Göker, M. (2020). List of Prokaryotic names with Standing in Nomenclature (LPSN) moves to the DSMZ. International Journal of Systematic and Evolutionary Microbiology, 70, 5607-5612; DOI: 10.1099/ijsem.0.004332
  2. ^ Bacillati in LPSN; Parte, Aidan C.; Sardà Carbasse, Joaquim; Meier-Kolthoff, Jan P.; Reimer, Lorenz C.; Göker, Markus (1 November 2020). "List of Prokaryotic names with Standing in Nomenclature (LPSN) moves to the DSMZ". International Journal of Systematic and Evolutionary Microbiology. 70 (11): 5607–5612. doi:10.1099/ijsem.0.004332.
  3. ^ a b c Göker, Markus; Oren, Aharon (2024-01-22). "Valid publication of names of two domains and seven kingdoms of prokaryotes". International Journal of Systematic and Evolutionary Microbiology. 74 (1). doi:10.1099/ijsem.0.006242. ISSN 1466-5026. PMID 38252124.
  4. ^ a b c d e Battistuzzi FU, Feijao A, Hedges SB (November 2004). "A genomic timescale of prokaryote evolution: insights into the origin of methanogenesis, phototrophy, and the colonization of land". BMC Evolutionary Biology. 4 44. doi:10.1186/1471-2148-4-44. PMC 533871. PMID 15535883.
  5. ^ a b c d e f g h i j Battistuzzi FU, Hedges SB (February 2009). "A major clade of prokaryotes with ancient adaptations to life on land". Molecular Biology and Evolution. 26 (2): 335–343. doi:10.1093/molbev/msn247. PMID 18988685.
  6. ^ a b Bern M, Goldberg D (May 2005). "Automatic selection of representative proteins for bacterial phylogeny". BMC Evolutionary Biology. 5 (1) 34. doi:10.1186/1471-2148-5-34. PMC 1175084. PMID 15927057.
  7. ^ a b c d e f g h Coleman GA, Davín AA, Mahendrarajah TA, Szánthó LL, Spang A, Hugenholtz P, et al. (May 2021). "A rooted phylogeny resolves early bacterial evolution". Science. 372 (6542) eabe0511. doi:10.1126/science.abe0511. hdl:1983/51e9e402-36b7-47a6-91de-32b8cf7320d2. PMID 33958449. S2CID 233872903.
  8. ^ a b c Léonard RR, Sauvage E, Lupo V, Perrin A, Sirjacobs D, Charlier P, et al. (February 2022). "Was the Last Bacterial Common Ancestor a Monoderm after All?". Genes. 13 (2): 376. doi:10.3390/genes13020376. PMC 8871954. PMID 35205421.
  9. ^ "Kingdom: Pseudomonadati".
  10. ^ a b Hug LA, Baker BJ, Anantharaman K, Brown CT, Probst AJ, Castelle CJ, et al. (April 2016). "A new view of the tree of life". Nature Microbiology. 1 (5) 16048. doi:10.1038/nmicrobiol.2016.48. PMID 27572647. S2CID 3833474.
  11. ^ a b Zhu Q, Mai U, Pfeiffer W, Janssen S, Asnicar F, Sanders JG, et al. (December 2019). "Phylogenomics of 10,575 genomes reveals evolutionary proximity between domains Bacteria and Archaea". Nature Communications. 10 (1) 5477. Bibcode:2019NatCo..10.5477Z. doi:10.1038/s41467-019-13443-4. PMC 6889312. PMID 31792218.
  12. ^ Battistuzzi FU, Hedges SB (2009). "Eubacteria". In Hedges SB, Kumar S (eds.). The Timetree of Life. New York: Oxford University Press. pp. 106–115.
  13. ^ a b Cavalier-Smith T (July 2006). "Rooting the tree of life by transition analyses". Biology Direct. 1 (1): 19. doi:10.1186/1745-6150-1-19. PMC 1586193. PMID 16834776.
  14. ^ Knoll AH (2003). Life on a Young Planet : The First Three Billion Years of Evolution on Earth - Updated Edition. Princeton University Press. ISBN 0-691-00978-3. OCLC 1303471348.
  15. ^ Anantharaman K, Brown CT, Hug LA, Sharon I, Castelle CJ, Probst AJ, et al. (October 2016). "Thousands of microbial genomes shed light on interconnected biogeochemical processes in an aquifer system". Nature Communications. 7 13219. Bibcode:2016NatCo...713219A. doi:10.1038/ncomms13219. PMC 5079060. PMID 27774985.
  16. ^ Matheus Carnevali PB, Schulz F, Castelle CJ, Kantor RS, Shih PM, Sharon I, et al. (January 2019). "Hydrogen-based metabolism as an ancestral trait in lineages sibling to the Cyanobacteria". Nature Communications. 10 (1) 463. Bibcode:2019NatCo..10..463M. doi:10.1038/s41467-018-08246-y. PMC 6349859. PMID 30692531.
  17. ^ Ji M, Greening C, Vanwonterghem I, Carere CR, Bay SK, Steen JA, et al. (December 2017). "Atmospheric trace gases support primary production in Antarctic desert surface soil". Nature. 552 (7685): 400–403. Bibcode:2017Natur.552..400J. doi:10.1038/nature25014. hdl:2440/124244. PMID 29211716. S2CID 4394421.
  18. ^ Tahon G, Tytgat B, Lebbe L, Carlier A, Willems A (July 2018). "Abditibacterium utsteinense sp. nov., the first cultivated member of candidate phylum FBP, isolated from ice-free Antarctic soil samples". Systematic and Applied Microbiology. 41 (4): 279–290. Bibcode:2018SyApM..41..279T. doi:10.1016/j.syapm.2018.01.009. PMID 29475572. S2CID 3515091.
  19. ^ Rinke C, Schwientek P, Sczyrba A, Ivanova NN, Anderson IJ, Cheng JF, et al. (July 2013). "Insights into the phylogeny and coding potential of microbial dark matter". Nature. 499 (7459): 431–437. Bibcode:2013Natur.499..431R. doi:10.1038/nature12352. hdl:10453/27467. PMID 23851394. S2CID 4394530.
  20. ^ Eloe-Fadrosh EA, Paez-Espino D, Jarett J, Dunfield PF, Hedlund BP, Dekas AE, et al. (January 2016). "Global metagenomic survey reveals a new bacterial candidate phylum in geothermal springs". Nature Communications. 7 10476. Bibcode:2016NatCo...710476E. doi:10.1038/ncomms10476. PMC 4737851. PMID 26814032.
  • v
  • t
  • e
Prokaryotes: Bacteria classification
Domain
Archaea
Bacteria
Eukaryota
(major groups
Metamonada
Discoba
Diaphoretickes
Hacrobia
Cryptista
Rhizaria
Alveolata
Stramenopiles
Plants
Amorphea
Amoebozoa
Opisthokonta
Animalia
Fungi
Mesomycetozoea)
Candidate Phyla
Radiation
  • "Elulimicrobiota"
    • "Elulimicrobia"
  • Minisyncoccota
    • "Absconditibacteria"
    • "Andersenbacteria"
    • "Berkelbacteria"
    • "Baikalibacteria"
    • "Dojkabacteriia"
    • "Doudnabacteria"
    • "Gracilibacteriia"
    • "Howlettbacteria"
    • "Katanibacteriia"
    • "Kazanbacteria"
    • "Microgenomatia"
    • Minisyncoccia
    • "Patescibacteriia"
    • "Saccharimonadia"
    • "Torokbacteria"
    • "Wirthbacteria"
Thermotogati
  • "Bipolaricaulota"
    • "Acetithermia"
    • "Bipolaricaulia"
  • Deinococcota
    • "Deinococcia"
"Synergistetes"
  • Atribacterota
    • Atribacteria
    • "Phoenicimicrobiia"
  • Synergistota
    • Synergistia
"Thermocalda"
  • Caldisericota
    • Caldisericia
  • Coprothermobacterota
    • Coprothermobacteria
  • Dictyoglomerota
    • Dictyoglomeria
  • "Lithacetigenota"
    • "Lithacetigenia"
  • Thermodesulfobiota
    • "Thermodesulfobiia"
  • Thermotogota
    • "Thermotogia"
  • "Zhurongbacterota"
Bacillati
  • Actinomycetota
    • Acidimicrobiia
    • Actinomycetes
    • "Aquicultoria"
    • Coriobacteriia
    • "Geothermincolia"
    • "Humimicrobiia"
    • Nitriliruptoria
    • Rubrobacteria
    • Thermoleophilia
  • Armatimonadota
    • "Abditibacteriia"
    • Armatimonadia
    • Chthonomonadia
    • "Fervidibacteria"
    • Fimbriimonadia
    • "Heboniibacteriia"
    • "Zipacnadia"
  • Chloroflexota
    • "Caldilineia"
    • Chloroflexia
    • Dehalococcoidia
    • "Dormibacteria"
    • Ktedonobacteria
    • "Limnocylindria"
    • "Martimicrobiia"
    • "Poriflexia"
    • "Spiritibacteria"
    • "Tarhunnaeia"
    • "Uliximicrobiia"
  • "Sysuimicrobiota"
    • "Sysuimicrobiia"
  • Vulcanimicrobiota
    • Vulcanimicrobiia
    • "Xenobiia"
"Cyanoprokaryota"
  • Cyanobacteriota
    • Cyanophyceae
    • "Sericytochromatia"
    • Vampirovibrionophyceae
  • "Margulisiibacteriota"
    • "Marinamargulisbacteria"
    • "Riflemargulisbacteria"
    • "Saganbacteria"
    • "Termititenacia"
"Firmicutes"
  • Bacillota
    • "Bacillia"
  • Bacillota D
    • "Dethiobacteria"
    • Natranaerobiia
    • "Proteinivoracia"
  • Bacillota E
    • "Fermentithermobacillia"
    • Sulfobacillia
    • Symbiobacteriia
    • Thermaerobacteria
  • Bacillota G
    • "Hydrogenisporia"
    • Limnochordia
  • "Clostridiota"
    • "Clostridiia"
    • "Thermoanaerobacteria"
    • Thermosediminibacteria
  • "Desulfotomaculota"
    • "Carboxydocellia"
    • "Carboxydothermia"
    • "Dehalobacteriia"
    • Desulfitobacteriia
    • Desulfotomaculia
    • "Moorellia"
    • Peptococcia
    • Syntrophomonadia
    • "Thermacetogeniia"
    • Thermincolia
  • "Halanaerobiaeota"
    • "Halanaerobiia"
  • "Selenobacteria"
    • "Selenomonadia"
Pseudomonadati
"Sphingobacteria"
  • Bacteroidota
    • Bacteroidia
    • Chlorobiia
    • "Ignavibacteriia"
    • "Kapaibacteria"
    • "Kryptoniia"
    • Rhodothermia
  • Calditrichota
    • Calditrichia
  • "Cloacimonadota"
    • "Cloacimonadia"
  • "Cosmopoliota"
    • "Cosmopolitia"
  • "Delongiibacteriota"
  • "Edwardsiibacteriota"
  • "Effluvivivacota"
  • "Eiseniibacteriota"
  • "Electryoneota"
    • "Electryoneia"
    • "Tariuqbacteria"
  • "Fermentibacterota"
    • "Fermentibacteria"
  • Fibrobacterota
    • Chitinivibrionia
    • Fibrobacteria
    • "Raymondbacteriia"
  • Gemmatimonadota
    • Gemmatimonadia
    • "Glassbacteria"
  • "Hydrothermota"
    • "Hydrothermia"
    • "Stahlbacteria"
  • "Krumholzibacteriota"
    • "Krumholzibacteriia"
  • "Heilongiota"
    • "Heilongiia"
  • "Latescibacterota"
    • "Handelsmanbacteria"
    • "Latescibacteria"
  • "Marinisomatota"
    • "Marinisomatia"
  • "Zixiibacteriota"
  • "Zhuqueibacterota"
    • "Zhuqueibacteria"
"Planctobacteria"
  • "Abyssobacterota"
  • "Aerophobota"
    • "Aerophobia"
  • "Auribacterota"
    • "Ancaeobacteria"
    • "Auribacteria"
    • "Erginobacteria"
    • "Tritonobacteria"
  • Chlamydiota
    • Chlamydiia
  • "Desantisiibacteriota"
  • Elusimicrobiota
    • Elusimicrobiia
    • Endomicrobiia
  • Fidelibacterota
    • Fidelibacteria
  • "Firestoneibacteriota"
  • "Goldiibacteriota"
  • "Heilongiota"
  • "Hinthialibacterota"
    • "Hinthialibacteria"
  • "Hydrogenedentota"
    • "Hydrogenedentia"
  • "Omnitrophota"
    • "Omnitrophia"
    • "Velamenicoccia"
  • Planctomycetota
    • "Brocadiia"
    • "Phycisphaeria"
    • Planctomycetia
    • "Uabimicrobiia"
  • "Poribacteriota"
  • "Ratteibacteriota"
  • "Saltatorellota"
    • "Saltatorellae"
  • "Sumerlaeota"
    • "Sumerlaeia"
  • "Tangaroaeota"
  • "Tianyaibacteriota"
  • Verrucomicrobiota
    • Kiritimatiellia
    • Lentisphaeria
    • Verrucomicrobiia
"Proteobacteria"
  • Acidobacteriota
    • "Acidobacteriia"
    • "Aminicenantia"
    • Blastocatellia
    • "Fischerbacteria"
    • "Guanabaribacteriia"
    • "Holophagia"
    • "Polarisedimenticolia"
    • Thermoanaerobaculia
    • Vicinamibacteria
  • "Acidulidesulfobacteriota"
    • "Acidulodesulfobacteriia"
  • Aquificota
    • Aquificia
  • Bdellovibrionota
    • Bacteriovoracia
    • Bdellovibrionia
  • "Binatota"
    • "Binatia"
  • "Calescibacteriota"
    • "Calescibacteriia"
  • Campylobacterota
    • "Campylobacteria"
    • Desulfurellia
  • "Canglongiota"
    • "Canglongiia"
  • Chrysiogenota
    • Chrysiogenia
  • "Dadaibacteriota"
    • "Dadabacteria"
  • Deferribacterota
    • "Deferribacteria"
  • "Deferrimicrobiota"
    • "Deferrimicrobiia"
  • "Deferrisomatota"
    • Deferrisomatia
  • "Leptospirillaeota"
    • "Leptospirillia"
  • "Lernaellota"
    • "Lernaellia"
  • "Methylomirabilota"
    • "Methylomirabilia"
  • "Moduliflexota"
    • "Moduliflexia"
  • Myxococcota
    • "Bradymonadia"
    • "Kuafubacteriia"
    • Myxococcia
    • Polyangiia
  • "Nitrosediminicolota"
  • Nitrospinota
    • Nitrospinia
  • Nitrospirota
    • Nitrospiria
    • Thermodesulfovibrionia
  • "Oligoflexaeota"
    • Oligoflexia
  • Pseudomonadota
    • "Anaeropigmentatia"
    • "Caulobacteria"
    • Magnetococcia
    • "Mariprofundia"
    • "Pseudomonadia"
  • "Schekmaniibacteriota"
  • Desulfobacterota G
    • Syntrophorhabdia
  • "Tectimicrobiota"
    • "Entotheonellia"
  • Thermosulfidibacterota
    • Thermosulfidibacteria
  • Thermodesulfobacteriota
    • "Anaeroferrophilia"
    • Desulfarculia
    • "Desulfatiglandia"
    • Desulfobaccia
    • Desulfobacteria
    • Desulfobulbia
    • "Desulfofervidia"
    • Desulfomonilia
    • Desulfovibrionia
    • Desulfuromonadia
    • Dissulfuribacteria
    • Syntrophobacteria
    • Syntrophia
    • "Thermodesulfobacteriia"
    • "Zymogenia"
Incertae sedis
  • "Babelota"
    • "Babeliae"
  • Fusobacteriota
    • Fusobacteriia
  • "Lindowiibacteriota"
  • "Macinerneyibacteriota"
    • "Macinerneyibacteriia"
  • "Muiribacteriota"
    • "Muiribacteriia"
    • "Ozemibacteria"
    • "Wallbacteriia"
  • Spirochaetota
    • "Brevinematia"
    • "Brachyspirae"
    • "Exilispiria"
    • "Leptospiria"
    • Spirochaetia
Incertae sedis
  • "Qinglongiota"
    • "Qinglongiia"
  • "Salinosulfoleibacteria"
  • "Teskebacteria"
GTDB 10-RS226; LTP_10_2024
Taxon identifiers
Terrabacteria
  • Wikidata: Q873914
  • Wikispecies: Terrabacteria group
  • LPSN: terrabacteria
  • Open Tree of Life: 5913658
Retrieved from "https://teknopedia.ac.id/w/index.php?title=Bacillati&oldid=1332384403"
Categories:
  • Bacteria taxa
  • Bacterial nomenclature
  • Kingdoms (biology)
Hidden categories:
  • Articles with short description
  • Short description is different from Wikidata
  • Articles with 'species' microformats
  • Taxonbars desynced from Wikidata

  • indonesia
  • Polski
  • العربية
  • Deutsch
  • English
  • Español
  • Français
  • Italiano
  • مصرى
  • Nederlands
  • 日本語
  • Português
  • Sinugboanong Binisaya
  • Svenska
  • Українська
  • Tiếng Việt
  • Winaray
  • 中文
  • Русский
Sunting pranala
url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url url
Pusat Layanan

UNIVERSITAS TEKNOKRAT INDONESIA | ASEAN's Best Private University
Jl. ZA. Pagar Alam No.9 -11, Labuhan Ratu, Kec. Kedaton, Kota Bandar Lampung, Lampung 35132
Phone: (0721) 702022
Email: pmb@teknokrat.ac.id