@ARTICLE{TreeBASE2Ref23622,
author = {Pieter De Maayer and Philip J Brumm and David A Mead and Don A Cowan},
title = {Comparative analysis of the Geobacillus hemicellulose utilization locus reveals a highly variable target for improved hemicellulolysis},
year = {2014},
keywords = {hemicellulose, Geobacillus, xylan, xylanases, arabinan, arabinases, arabinanases},
doi = {},
url = {http://},
pmid = {},
journal = {BMC Genomics},
volume = {},
number = {},
pages = {},
abstract = {Background: Members of the thermophilic genus Geobacillus can grow at high temperatures and produce a battery of thermostable hemicellulose hydrolytic enzymes, makes them ideal candidates for the bioconversion of biomass to value-added products. To date the molecular determinants for hemicellulose degradation and utilization have only been identified and partially characterized in one strain, namely Geobacillus stearothermophilus T-6, where they are clustered in a single genetic locus.
Results and Discussion: Using the G. stearothermophilus T-6 hemicellulose utilization locus as genetic marker, orthologous hemicellulose utilization (HUS) loci were identified in the complete and partial genomes of 17/24 Geobacillus strains. These HUS loci are localized on a common genomic island. Comparative analyses of these loci revealed extensive variability among the Geobacillus hemicellulose utilization systems, with only seven out of 41-68 proteins encoded on these loci conserved among the HUS+ strains. This translates into extensive differences in the hydrolytic enzymes, transport systems and metabolic pathways employed by Geobacillus spp. to degrade and utilize hemicellulose polymers.
Conclusions: The genetic variability among the Geobacillus HUS loci imply that they have variable capacities to degrade hemicellulose polymers, or that they may degrade distinct polymer, as are found in different plant species and tissues. The data from this study can can serve as a backbone for the genetic engineering of a Geobacillus strain(s) with an improved capacity to degrade and utilize hemicellulose. }
}
Taxa for matrix 42779 of Study 16328

Citation title:
"Comparative analysis of the Geobacillus hemicellulose utilization locus reveals a highly variable target for improved hemicellulolysis".

Study name:
"Comparative analysis of the Geobacillus hemicellulose utilization locus reveals a highly variable target for improved hemicellulolysis".

This study is part of submission 16328
(Status: Published).
Taxa
Return to matrix row view
| ID |
Taxon Label |
NCBI taxid |
uBIO namebankID |
| 2908357 |
Arundinella berteroniana |
|
3485342
|
| 2908366 |
Arundoclaytonia dissimilis |
318953
|
3485348
|
| 2908319 |
Bromuniola gossweileri |
318920
|
5982805
|
| 2908375 |
Calderonella sylvatica |
406082
|
3485545
|
| 2908326 |
Centotheca cf. lappacea GB362014 |
|
|
| 2908355 |
Centotheca lappacea |
66008
|
2671160
|
| 2908324 |
Centotheca lappacea MSV564 |
66008
|
2671160
|
| 2908368 |
Chasmanthium curvifolium |
318957
|
5982808
|
| 2908327 |
Chasmanthium latifolium |
38735
|
2661542
|
| 2908339 |
Chasmanthium laxum |
40583
|
2661543
|
| 2908335 |
Chasmanthium laxum var. sessiliflorum |
|
|
| 2908369 |
Chasmanthium nitidum |
|
|
| 2908353 |
Cyperochloa hirsuta |
57051
|
5955163
|
| 2908050 |
Danthonia spicata |
42048
|
2661619
|
| 2908325 |
Danthoniopsis dinteri |
79842
|
5832757
|
| 2908330 |
Danthoniopsis isalensis MSV1370 |
|
|
| 2908365 |
Danthoniopsis petiolata |
38682
|
5953508
|
| 2908361 |
Danthoniopsis pruinosa |
|
5832759
|
| 2908346 |
Digitaria sanguinalis |
121769
|
2660868
|
| 2908054 |
Eleusine indica |
29674
|
2661663
|
| 2908351 |
Eriachne stipacea |
|
5835157
|
| 2908349 |
Gynerium sagittatum |
42053
|
2662091
|
| 2908360 |
Ichnanthus pallens |
158109
|
2662094
|
| 2908340 |
Jansenella griffithiana |
|
|
| 2908362 |
Lecomtella madagascariensis |
|
8957434
|
| 2908344 |
Lophatherum gracile |
29683
|
3486176
|
| 2908378 |
Loudetia annua |
|
9296087
|
| 2908334 |
Loudetia arundinacea JMK241 |
|
|
| 2908332 |
Loudetia cf. simplex MSV1049 |
|
|
| 2908322 |
Loudetia filifolia MSV1368 |
|
|
| 2908342 |
Loudetia flavida MSV782 |
|
|
| 2908338 |
Loudetia lanata MSV1654 |
|
|
| 2908348 |
Loudetia simplex MSV595 |
318917
|
5843211
|
| 2908337 |
Megastachya cf. mucronata |
|
|
| 2908333 |
Megastachya cf. mucronata MCB10589 |
|
|
| 2908329 |
Megastachya cf. mucronata MSV941 |
|
|
| 2908341 |
Megastachya cf. mucronata RCH56 |
|
|
| 2908320 |
Merxmuellera macowanii |
42083
|
5953816
|
| 2908321 |
Neyraudia reynaudiana |
416032
|
2661878
|
| 2908328 |
Orthoclada laxa |
121782
|
3486420
|
| 2908035 |
Panicum virgatum |
38727
|
2661084
|
| 2908345 |
Phragmites australis |
29695
|
465973
|
| 2908373 |
Pohlidium petiolatum |
318925
|
5982806
|
| 2908336 |
Reynaudia filiformis |
|
10760119
|
| 2908377 |
Sorghum bicolor |
4558
|
4962526
|
| 2908358 |
Spartochloa scirpoidea |
59910
|
5955518
|
| 2908376 |
Steyermarkochloa angustifolia |
|
5411799
|
| 2908347 |
Thysanolaena latifolia |
318959
|
5413371
|
| 2908359 |
Trichopteryx dregeana RGD187 |
|
|
| 2908352 |
Tristachya betsileensis MSV1003 |
|
|
| 2908372 |
Tristachya biseriata |
42077
|
5858125
|
| 2908350 |
Tristachya humbertii MSV1369 |
|
|
| 2908374 |
Tristachya leucothrix |
221759
|
5896829
|
| 2908367 |
Tristachya nodiglumis JMK225 |
|
|
| 2908363 |
Tristachya superba L16741 |
179039
|
5896831
|
| 2908331 |
Zeugites americanus |
318960
|
5416393
|
| 2908323 |
Zeugites americanus var. mexicanus |
318963
|
10269750
|
| 2908356 |
Zeugites americanus var. pringlei |
318965
|
10269753
|
| 2908370 |
Zeugites capillaris |
318961
|
3487417
|
| 2908343 |
Zeugites hackelii |
318962
|
5416411
|
| 2908371 |
Zeugites munroanus |
318964
|
3487412
|
| 2908354 |
Zeugites pittieri |
38726
|
1856553
|
| 2908364 |
Zeugites sagittatus |
318966
|
5982809
|