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Effects of Particle Size of Ground Alfalfa Hay on Caecal Bacteria and Archaea Populations of Rabbits

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Journal PeerJ
Date 2019 Oct 23
PMID 31637140
Citations 2
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Abstract

This work was aimed to investigate the effects of the different particle size of ground alfalfa hay on caecal microbial and archeal communities of rabbits. One hundred-twenty New Zealand rabbits (950.3 ± 8.82 g) were allocated into four treatments, with five replicates in each treatment and six rabbits in each replicate. The particle sizes of the alfalfa meal in the four treatment diets were 2,500, 1,000, 100 and 10 µm respectively, while the other ingredients were ground through a 2.5 mm sieve. High-throughput sequencing technology was applied to examine the differences in bacteria and methanogenic archaea diversity in the caecum of the four treatment groups of rabbits. A total of 745,946 bacterial sequences (a mean of 31,081 ± 13,901 sequences per sample) and 539,227 archaeal sequences (a mean of 22,468 ± 2,443 sequences per sample) were recovered from twenty-four caecal samples, and were clustered into 9,953 and 2,246 OTUs respectively. A total of 26 bacterial phyla with 465 genera and three archaeal phyla with 10 genera were identified after taxonomic summarization. Bioinformatic analyses illustrated that Firmicutes (58.69% ∼ 68.50%) and Bacteroidetes (23.96% ∼ 36.05%) were the two most predominant bacterial phyla and Euryarchaeota (over 99.9%) was the most predominant archaeal phyla in the caecum of all rabbits. At genus level, as the particle size of alfalfa decreased from 2,500 to 10 µm, the relative abundances of ( < 0.001) and ( = 0.043) were increased and ( = 0.012) was increased first and then decreased when the alfalfa particle size decreased, while ( = 0.016), ( = 0.044), ( = 0.019), ( = 0.011) and ( = 0.021) were decreased. The relative abundance of was increased from 62.48% to 90.40% ( < 0.001), whereas the relative abundance of was reduced from 35.47% to 8.62% ( < 0.001). In conclusion, as the particle size of alfalfa meal decreased, both the bacterial and archaeal population in the caecum of rabbit experienced alterations, however archaea response earlier than bacteria to the decrease of alfalfa meal particle size.

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References
1.
Williams R, Peisajovich S, Miller O, Magdassi S, Tawfik D, Griffiths A . Amplification of complex gene libraries by emulsion PCR. Nat Methods. 2006; 3(7):545-50. DOI: 10.1038/nmeth896. View

2.
Cavicchioli R . Archaea--timeline of the third domain. Nat Rev Microbiol. 2010; 9(1):51-61. DOI: 10.1038/nrmicro2482. View

3.
Miller T, Wolin M . Methanosphaera stadtmaniae gen. nov., sp. nov.: a species that forms methane by reducing methanol with hydrogen. Arch Microbiol. 1985; 141(2):116-22. DOI: 10.1007/BF00423270. View

4.
Fang W, Fang Z, Zhou P, Chang F, Hong Y, Zhang X . Evidence for lignin oxidation by the giant panda fecal microbiome. PLoS One. 2012; 7(11):e50312. PMC: 3508987. DOI: 10.1371/journal.pone.0050312. View

5.
Wang C, Zhu Y, Li F, Huang L . The Effect of Lactobacillus isolates on growth performance, immune response, intestinal bacterial community composition of growing Rex Rabbits. J Anim Physiol Anim Nutr (Berl). 2017; 101(5):e1-e13. DOI: 10.1111/jpn.12629. View