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317:"Genome-based phylogeny and taxonomy of the 'Enterobacteriales': proposal for Enterobacterales ord. nov. divided into the families Enterobacteriaceae, Erwiniaceae fam. nov., Pectobacteriaceae fam. nov., Yersiniaceae fam. nov., Hafniaceae fam. nov., Morganellaceae fam. nov., and Budviciaceae fam. nov"
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was largely based on 16S rRNA genome sequence analyses, which is known to have low discriminatory power and the results of which changes depends on the algorithm and organism information used. Despite this, the analyses still exhibited polyphyletic branching, indicating the presence of distinct
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Members of the family produce acid from N-acetylglucosamine and are negative for arginine dihydrolase, orthinine decarboxylase and lysine decarboxylase. These bacteria are catalase-positive, oxidase-negative, and do not produce hydrogen disulfide.
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into 7 novel families based on comparative genomic analyses and the branching pattern of various phylogenetic trees constructed from conserved genome sequences, 16S rRNA sequences and multilocus sequence analyses. Molecular markers, specifically
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protein and a hypothetical protein. These molecular signatures provide a reliable molecular means for distinguishing members of the family
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201:, referring the type genus of the family and the suffix "-aceae", an ending used to denote a family. Together,
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263:, as of 2021, contains eight validly published genera. Members of this family were originally members of the
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which largely consist of plant pathogens. This family is a member of the order
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International
Journal of Systematic and Evolutionary Microbiology
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Adeolu, M; Alnajar, S; Naushad, S; S Gupta, R (December 2016).
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refers to a family whose nomenclatural type is the genus
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236:(CSIs) that are specific this family in the proteins
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278:In 2016, Adeolu et al. proposed the division of
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256:Historical Systematics and Current Taxonomy
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184:. The type species of this family is
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248:from other families in the order
232:Genomic analyses identified four
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197:is derived from the Latin term
238:transcriptional activator RhaS
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275:subgroups within the family.
555:. You can help Knowledge by
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362:"Family: Pectobacteriaceae"
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285:conserved signature indels
234:conserved signature indels
617:Gammaproteobacteria stubs
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30:Scientific classification
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602:Gram-negative bacteria
551:-related article is a
336:10.1099/ijsem.0.001485
170:Gram-negative bacteria
252:and other bacteria.
549:Gammaproteobacteria
178:Gammaproteobacteria
67:Gammaproteobacteria
280:Enterobacteriaceae
272:Enterobacteriaceae
266:Enterobacteriaceae
91:Adeolu et al. 2016
24:Pectobacteriaceae
16:Family of bacteria
612:Pectobacteriaceae
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509:Open Tree of Life
488:pectobacteriaceae
448:Pectobacteriaceae
418:Pectobacteriaceae
410:Taxon identifiers
329:(12): 5575–5599.
261:Pectobacteriaceae
246:Pectobacteriaceae
203:Pectobacteriaceae
195:Pectobacteriaceae
161:Pectobacteriaceae
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207:Pectobacterium
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180:of the phylum
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371:2021-06-05
291:References
433:Q28735290
193:The name
134:Lonsdalea
120:Brenneria
475:11909050
462:10522583
427:Wikidata
345:27620848
83:Family:
53:Phylum:
47:Bacteria
43:Domain:
514:5998973
501:1903410
398:Biology
148:Sodalis
127:Dickeya
97:Genera
73:Order:
63:Class:
384:Portal
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268:family
217:": -->
166:family
164:are a
547:This
470:IRMNG
553:stub
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483:LPSN
457:GBIF
341:PMID
219:edit
158:The
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