Literature DB >> 26542074

Temporal dynamics of the metabolically active rumen bacteria colonizing fresh perennial ryegrass.

Sharon A Huws1, Joan E Edwards2, Christopher J Creevey2, Pauline Rees Stevens2, Wanchang Lin2, Susan E Girdwood2, Justin A Pachebat2, Alison H Kingston-Smith2.   

Abstract

This study investigated successional colonization of fresh perennial ryegrass (PRG) by the rumen microbiota over time. Fresh PRG was incubated in sacco in the rumens of three Holstein × Friesian cows over a period of 8 h, with samples recovered at various times. The diversity of attached bacteria was assessed using 454 pyrosequencing of 16S rRNA (cDNA). Results showed that plant epiphytic communities either decreased to low relative abundances or disappeared following rumen incubation, and that temporal colonization of the PRG by the rumen bacteria was biphasic with primary (1 and 2 h) and secondary (4-8 h) events evident with the transition period being with 2-4 h. A decrease in sequence reads pertaining to Succinivibrio spp. and increases in Pseudobutyrivibrio, Roseburia and Ruminococcus spp. (the latter all order Clostridiales) were evident during secondary colonization. Irrespective of temporal changes, the continually high abundances of Butyrivibrio, Fibrobacter, Olsenella and Prevotella suggest that they play a major role in the degradation of the plant. It is clear that a temporal understanding of the functional roles of these microbiota within the rumen is now required to unravel the role of these bacteria in the ruminal degradation of fresh PRG. © FEMS 2015. All rights reserved. For permissions, please e-mail: journals.permissions@oup.com.

Entities:  

Keywords:  16S; RNA; bacteria; metagenome; microbiome; perennial ryegrass; rumen

Mesh:

Substances:

Year:  2015        PMID: 26542074     DOI: 10.1093/femsec/fiv137

Source DB:  PubMed          Journal:  FEMS Microbiol Ecol        ISSN: 0168-6496            Impact factor:   4.194


  35 in total

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4.  Temporal Metagenomic and Metabolomic Characterization of Fresh Perennial Ryegrass Degradation by Rumen Bacteria.

Authors:  Olga L Mayorga; Alison H Kingston-Smith; Eun J Kim; Gordon G Allison; Toby J Wilkinson; Matthew J Hegarty; Michael K Theodorou; Charles J Newbold; Sharon A Huws
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6.  A Systems Biology Approach Reveals Differences in the Dynamics of Colonization and Degradation of Grass vs. Hay by Rumen Microbes with Minor Effects of Vitamin E Supplementation.

Authors:  Alejandro Belanche; Charles J Newbold; Wanchang Lin; Pauline Rees Stevens; Alison H Kingston-Smith
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8.  Microbiomes attached to fresh perennial ryegrass are temporally resilient and adapt to changing ecological niches.

Authors:  Christopher J Creevey; Alison H Kingston-Smith; Sharon A Huws; Joan E Edwards; Wanchang Lin; Francesco Rubino; Mark Alston; David Swarbreck; Shabhonam Caim; Pauline Rees Stevens; Justin Pachebat; Mi-Young Won; Linda B Oyama
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9.  An Integrated Multi-Omics Approach Reveals the Effects of Supplementing Grass or Grass Hay with Vitamin E on the Rumen Microbiome and Its Function.

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