A Whiff of Tax­on­omy – Ver­ru­co­mi­cro­bia, The Bac­te­r­ial Warthogs


We oc­ca­sion­ally post very brief tax­o­nomic pieces on se­lected bac­te­r­ial groups. Be warned that we may not be fully at­ten­tive to the taxon level and may mix up gen­era and higher taxa.

by Elio

A Ver­ru­comi­cro­bium. Source

Un­like warthogs, likely to be con­sid­ered beau­ti­ful only by their mother, the Ver­ru­comi­cro­bia  (ver­ruca means "wart, thus the warty bac­te­ria; more about this later) have con­sid­er­able ap­peal, be it mor­pho­log­i­cal, phys­i­o­log­i­cal, or eco­log­i­cal. This is yet an­other phy­lum that owes its recog­ni­tion to nu­cleic acid tech­nol­ogy. Al­though few of its mem­bers have been cul­ti­vated, 16S rRNA stud­ies have con­firmed that they are widely dis­trib­uted in many en­vi­ron­ments, such as fresh wa­ter, oceans, soils, and even ver­te­brate fe­ces.  Some are host-as­so­ci­ated, their hosts in­clud­ing hu­mans and, just be­cause you need to know it, their pro­por­tion in the gut of ground squir­rels in­creases as they hi­ber­nate. There are no known pathogens in this group al­though sus­pi­cion has arisen.

(A) Glyco­gen is seen in the oth­er­wise elec­tron light par­ti­cles abun­dantly present in the cy­to­plasm. (B) Zoom-in of the boxed-in area in (A).  Scale bars, 100μm. Source

If you fa­vor un­usual and won­drous forms of life, this is a group of or­gan­isms for you. Some are au­totrophs that grow at high tem­per­a­ture acidic en­vi­ron­ments by ox­i­diz­ing methane. Re­mark­ably, when they stop grow­ing, they fill up with glyco­gen to the tune of 36% of their dry weight.   Among the strangest of the Ver­ru­comi­cro­bia are the epixeno­somes ("ex­ter­nal alien bod­ies") that we fea­tured in an early post. These bac­te­ria cling to the sur­face of cer­tain cil­i­ates and, in re­sponse to yet un­known stim­uli, morph into os­ten­ta­tiously long fil­a­ments con­sist­ing of tubu­lin-like pro­teins.  Oth­ers in this phy­lum are en­dosym­bionts of ne­ma­todes. Search for more and you will find it: en­ter Ver­ru­comi­cro­bia in PubMed and you get 15 pages of ref­er­ences. To add to their tan­ta­liz­ing prop­er­ties, they have been placed in the mono­phyletic PVC su­per­phy­lum, along with the equally cu­ri­ous Planc­to­mycetes and the Chlamy­diae. This is in the realm of con­tro­versy and dis­cus­sion; some think­ing that in this group some miss­ing links be­tween proks and euks are to be found.

Now for their mor­phol­ogy. They are not called "warty" be­cause they cause warts, but be­cause they sport wart-like bumps on their sur­face.  No­tably, these pro­tru­sions are of­ten in the same plane, mak­ing the cells looked like scal­loped pan­cakes. What ser­vice do these odd struc­tures per­form for their cells? Hard to say, but they al­ter the hy­dro­dy­namic prop­er­ties and change the sur­face to vol­ume ra­tio.  Ver­ru­comi­cro­bia now fig­ure promi­nently in stud­ies of bac­te­r­ial tubu­lin. For in­stance, Btub A and Btub, the clos­est ho­mologs to eu­kary­otic tubu­lins, were dis­cov­ered in a mem­ber of this group, Pros­the­cobac­ter. We have it on this blog be­fore, in an ar­ti­cle by Daniel Haeusser en­ti­tled Tubu­lins in the Ver­ru­comi­cro­bial Closet.  So, doesn't it seem rea­son­able that such pro­teins may play a role in ver­ru­comi­cro­bial mor­pho­gen­e­sis? Stay tuned, as surely more is com­ing.  But even now, the Ver­ru­comi­cro­bia make for good cock­tail hour con­ver­sa­tion.

 

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3 Comments
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barry
13 years ago

i don't un­der­stand that warthoggy pic­ture. the source you list is very con­fus­ing. what's the hairs com­ing off of the warts?
ok, i found him: Ver­ru­comi­cro­bium spin­osum:
http://microbewiki.kenyon.edu/index.php/Verrucomicrobium
but what are the 'fim­briae' com­ing out of it? what are they made of and what do they do? that i cant find.
Elio replies:
The struc­tures stick­ing out of the "warts" are in­deed pili (or fim­briae), struc­tures that are of­ten in­volved in bac­te­r­ial ad­he­sion to sur­faces.

barry
13 years ago

p.s. It was while i was writ­ing a sum­mary of a eu­plo­tid­ium pa­per, that i found your blog, while search­ing for im­ages!
all very cu­ri­ous stuff!

bks
13 years ago

I was also sur­prised by the mor­pho­log­i­cal com­plex­ity of the bac­te­ria de­scribed here. The be­hav­ior of the epixeno­somes seems, to the am­a­teur eye, to go a bit be­yond chemo­taxis. I'm go­ing to have to find a dif­fer­ent cock­tail hour.
–bks