Literature DB >> 23658352

Development of equations to estimate microbial contamination in ruminal incubation residues of forage produced under tropical conditions using 15N as a label.

P A S Machado1, S C Valadares Filho, E Detmann, S A Santos, R F D Valadares, C Ducatti, P P Rotta, L F Costa e Silva.   

Abstract

The objective of this study was to use (15)N to label microbial cells to allow development of equations for estimating the microbial contamination in ruminal in situ incubation residues of forage produced under tropical conditions. A total of 24 tropical forages were ruminal incubated in 3 steers at 3 separate times. To determine microbial contamination of the incubated residues, ruminal bacteria were labeled with (15)N by continuous intraruminal infusion 60 h before the first incubation and continued until the last day of incubation. Ruminal digesta was collected for the isolation of bacteria before the first infusion of (15)N on adaptation period and after the infusion of (15)N on collection period. To determine the microbial contamination of CP fractions, restricted models were compared with the full model using the model identity test. A value of the corrected fraction "A" was estimated from the corresponding noncorrected fraction by this equation: Corrected "A" fraction (A(CP)C) = 1.99286 + 0.98256 × A" fraction without correction (A(CP)WC). The corrected fraction "B" was estimated from the corresponding noncorrected fraction and from CP, NDF, neutral detergent insoluble protein (NDIP), and indigestible NDF (iNDF) using the equation corrected "B" fraction (B(CP)C) = -17.2181 - 0.0344 × fraction "B" without correction (B(CP)WC) + 0.65433 × CP + 1.03787 × NDF + 2.66010 × NDIP - 0.85979 × iNDF. The corrected degradation rate of "B" fraction (kd)was estimated using the equation corrected degradation rate of "B" fraction (kd(CP)C) = 0.04667 + 0.35139 × degradation rate of "B" fraction without correction (kd(CP)WC) + 0.0020 × CP - 0.00055839 × NDF - 0.00336 × NDIP + 0.00075089 × iNDF. This equation was obtained to estimate the contamination using CP of the feeds: %C = 79.21 × (1 - e(-0.0555t)) × e(-0.0874CP). It was concluded that A and B fractions and kd of CP could be highly biased by microbial CP contamination, and therefore these corrected values could be obtained mathematically, replacing the use of microbial markers. The percentage of contamination and the corrected apparent degradability of CP could be obtained from values of CP and time of incubation for each feed, which could reduce cost and labor involved when using (15)N.

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Year:  2013        PMID: 23658352     DOI: 10.2527/jas.2012-5636

Source DB:  PubMed          Journal:  J Anim Sci        ISSN: 0021-8812            Impact factor:   3.159


  3 in total

1.  Dietary protein reduction on microbial protein, amino acid digestibility, and body retention in beef cattle: 2. Amino acid intestinal absorption and their efficiency for whole-body deposition.

Authors:  L D S Mariz; P M Amaral; S C Valadares Filho; S A Santos; E Detmann; M I Marcondes; J M V Pereira; J M Silva Júnior; L F Prados; A P Faciola
Journal:  J Anim Sci       Date:  2018-03-06       Impact factor: 3.159

2.  Dietary protein reduction on microbial protein, amino acids digestibility, and body retention in beef cattle. I. Digestibility sites and ruminal synthesis estimated by purine bases and 15N as markers.

Authors:  Lays Débora Silva Mariz; Paloma de Melo Amaral; Sebastião de Campos Valadares Filho; Stefanie Alvarenga Santos; Marcos Inácio Marcondes; Laura Franco Prados; Marcos Vinícius Carneiro Pacheco; Diego Zanetti; Gustavo Chamon de Castro Menezes; Antonio P Faciola
Journal:  J Anim Sci       Date:  2018-06-04       Impact factor: 3.159

3.  Variability among Animals and Incubation Protocols for Ruminant In Situ Degradation Studies with Tropical Feeds.

Authors:  Amanda de Souza Assunção; Tadeu Eder da Silva; Daiana Quirino; Marcia de Oliveira Franco; Edenio Detmann
Journal:  Animals (Basel)       Date:  2022-07-26       Impact factor: 3.231

  3 in total

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