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The Nutritional Implications of Differential Passage of Particles Through the Ruminant Alimentary Tract

Published online by Cambridge University Press:  14 December 2007

P. M. Kennedy
Affiliation:
CSIRO Division of Tropical Animal Production, Davies Laboratory, PMB Aitkenvale, Qld 4814, Australia
M. R. Murphy*
Affiliation:
CSIRO Division of Tropical Animal Production, Davies Laboratory, PMB Aitkenvale, Qld 4814, Australia
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Abstract

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Type
Research Article
Copyright
Copyright © The Nutrition Society 1988

References

REFERENCES

Allen, M. S. & Mertens, D. R. (1988). Evaluating constraints on fiber digestion by rumen microbes. Journal of Nutrition 118, 261270.CrossRefGoogle ScholarPubMed
Baldwin, R. L., Thornley, J. H. M. & Beever, D. E. (1987). Metabolism of the lactating cow. II. Digestive elements of a mechanistic model. Journal of Dairy Research 54, 107131.CrossRefGoogle ScholarPubMed
Bauchart, D., Legay-Carmier, F. & Doreau, M. (1987). Distribution des bactéries adhérentes en fonction de la taille des particules dans les contenus du rumen et du feuillet chez la vache laitière. (Distribution of adherent bacteria in relation to size of particles in rumen and omasal contents of the milking cow). Reproduction, Nutrition, Développement 27, 243245.CrossRefGoogle Scholar
Beever, D. E., Black, J. L. & Faichney, G. J. (19801981). Simulation of the effects of rumen function on the flow of nutrients from the stomach of sheep, part 2–assessment of computer predictions. Agricultural Systems 6, 221241.CrossRefGoogle Scholar
Beever, D. E., Osbourn, D. F., Cammell, S. B. & Terry, R. A. (1981). The effect of grinding and pelleting on the digestion of Italian ryegrass and timothy by sheep. British Journal of Nutrition 46, 357370.CrossRefGoogle ScholarPubMed
Beever, D. E. & Siddons, R. C. (1986). Digestion and metabolism in the grazing ruminant. In Control of Digestion and Metabolism in Ruminants, pp. 479497 [Milligan, L. P., Grovum, W. L. and Dobson, A., editors]. New Jersey: Reston.Google Scholar
Berger, L. L., Klopfenstein, T. J. & Britton, R. A. (1980). Effect of sodium hydroxide treatment on rate of passage and rate of ruminal fiber digestion. Journal of Animal Science 50, 745749.CrossRefGoogle ScholarPubMed
Campling, R. C. & Balch, C. C. (1961). Factors affecting the voluntary intake of food by cows. 1. Preliminary observations on the effect on the voluntary intake of hay, of changes in the amount of reticulorumen contents. British Journal of Nutrition 15, 523530.CrossRefGoogle Scholar
Campling, R. C. & Freer, M. (1962). The effect of specific gravity and size on the mean time of retention of inert particles in the alimentary tract of the cow. British Journal of Nutrition 16, 507518.CrossRefGoogle ScholarPubMed
Chai, K., Kennedy, P. M. & Milligan, L. P. (1984). Reduction in particle size during rumination in cattle. Canadian Journal of Animal Science 64, Suppl.339340.Google Scholar
Craig, W. M., Broderick, G. A. & Ricker, D. B. (1987). Quantitation of micro-organisms associated with the particulate phase of ruminal ingesta. Journal of Nutrition 117, 5662.CrossRefGoogle Scholar
Czerkawski, J. W. (1986). Degradation of solid feeds in the rumen: spatial distribution of microbial activity and its consequences. In Control of Digestion and Metabolism in Ruminants, pp. 158172 [Milligan, L. P., Grovum, L. W. and Dobson, A., editors]. New Jersey: Reston.Google Scholar
Davis, P. & Weston, R. H. (1986). The effect of alkali treatment of wheaten straw on palatability, feed intake and various aspects of digestion with sheep. Proceedings of the Nutrition Society of Australia 11, 168171.Google Scholar
desBordes, C. K. & Welch, J. G. (1984). Influence of specific gravity on rumination and passage of indigestible particles. Journal of Animal Science 59, 470475.CrossRefGoogle Scholar
Dixon, R. M., Kennelly, J. J. & Milligan, L. P. (1983). Kinetics of [103Ru]phenanthroline and dysprosium particulate markers in the rumen of steers. British Journal of Nutrition 49, 463473.CrossRefGoogle ScholarPubMed
Doyle, P. T., Pearce, G. R. & Djajanegara, A. (1987). Intake and digestion of cereal straws. In Proceedings of the 4th AAAP Animal Science Congress, pp. 5962 [Reardon, T. F., Adam, J. L., Campbell, A. G. and Sumner, R. M. W., editors]. Hamilton: Organising Committee, 4th AAAP Animal Science Congress.Google Scholar
Dulphy, J. P. & Demarquilly, C. (1974). Etude du comportement alimentaire et mérycique de moutons recevant des fourrages verts haches. (Study of the alimentary behaviour and rhythms of sheep receiving chopped green forages.) Annales de Zootechnie 23, 193212.CrossRefGoogle Scholar
Egan, A. R. (1985). Factors affecting nitrogen requirement for ruminants and the roles of supplemental protein. In The Utilization of Fibrous Agricultural Residues as Animal Feeds, pp. 2533 [Doyle, P. T., editor]. Canberra: IDP.Google Scholar
Egan, J. K. & Doyle, P. T. (1984). A comparison of particulate markers for the estimation of digesta flow from the abomasum of sheep offered chopped oaten hay. Australian Journal of Agricultural Research 35, 279291.CrossRefGoogle Scholar
Egan, J. K. & Doyle, P. T. (1985). Effect of intraruminal infusion of urea on the response in voluntary food intake by sheep. Australian Journal of Agricultural Research 36, 483495.CrossRefGoogle Scholar
Ehle, F. R. (1984). Influence of feed particle density on particulate passage from rumen of Holstein cow. Journal of Dairy Science 67, 693697.CrossRefGoogle Scholar
Ehle, F. R. & Stern, M. D. (1984). Physical and chemical variables influencing particle passage and size reduction. In Modeling Ruminant Digestion and Metabolism, pp. 2733 [Baldwin, R. L. and Bywater, A. C., editors]. Davis: University of California.Google Scholar
Ehle, F. R. & Stern, M. D. (1986). Influence of particle size and density on particulate passage through alimentary tract of Holstein heifers. Journal of Dairy Science 69, 564568.CrossRefGoogle Scholar
Ellis, W. C., Matis, J. H. & Lascano, C. (1979). Quantitating ruminal turnover. Federation Proceedings 38, 27022706.Google ScholarPubMed
Elliott, R., Norton, B. W. & Ford, C. W. (1985). In vivo colonization of grass cell walls by rumen micro-organisms. Journal of Agricultural Science, Cambridge 105, 279283.CrossRefGoogle Scholar
Emanuele, S. M. & Staples, C. R. (1987). Effect of forage particle size on in situ digestion kinetics. Journal of Dairy Science 70, Suppl., 195.Google Scholar
Evans, E. W., Pearce, G. W., Burnett, J. & Pillinger, S. L. (1973). Changes in some physical characteristics of the digesta in the reticulo-rumen of cows fed once daily. British Journal of Nutrition 29, 357376.CrossRefGoogle ScholarPubMed
Faichney, G. J. (1986). The kinetics of particulate matter in the rumen. In Control of Digestion and Metabolism in Ruminants, pp. 173195 [Milligan, L. P., Grovum, W. L. and Dobson, A., editors]. New Jersey: Reston.Google Scholar
Faichney, G. J. & Boston, R. C. (1983). Interpretation of the faecal excretion pattern of solute and particle markers introduced into the rumen of sheep. Journal of Agricultural Science, Cambridge 101, 575581.CrossRefGoogle Scholar
Faichney, G. J. & White, G. A. (1988). Rates of passage of solutes, microbes and particulate matter through the gastro-intestinal tract of ewes fed at a constant rate throughout gestation. Australian Journal of Agricultural Research 39, 481492.Google Scholar
Fioramonti, J. & Bueno, L. (1988). Hormonal control of gut motility in ruminants and non-ruminants and its nutritional implications. Nutrition Research Reviews 1, pp. 169188.CrossRefGoogle ScholarPubMed
Forsberg, C. W. & Lam, K. (1977). Use of adenosine 5′-triphosphate as an indicator of the microbiota biomass in rumen contents. Applied and Environmental Microbiology 33, 528537.CrossRefGoogle ScholarPubMed
Freer, M. & Dove, H. (1984). Rumen degradation of protein in sunflower meal, rapeseed meal and lupin seed placed in nylon bags. Animal Feed Science and Technology 11, 87101.CrossRefGoogle Scholar
Froetschel, M. A., Croom, W. J. Jr, Hagler, W. M. Jr, Argenzio, R. A., Liacos, J. A. & Broquist, H. P. (1987). Effects of slaframine on ruminant digestive function: liquid turnover rate and fermentation patterns in sheep and cattle. Journal of Animal Science 64, 12411248.CrossRefGoogle ScholarPubMed
Fujihara, T. (1980). The eating and rumination behaviour in sheep fed only grass diets in either the fresh or dried form. Journal of Agricultural Science, Cambridge 95, 729732.CrossRefGoogle Scholar
Gates, R. N., Klopfenstein, T. J., Waller, S. S., Stroup, W. W., Britton, R. A. & Anderson, B. F. (1987). Influence of thermo-ammoniation on quality of warm-season grass hay for steers. Journal of Animal Science 64, 18211834.CrossRefGoogle Scholar
Gerson, T., King, A. S. D., Kelly, K. E. & Kelly, W. J. (1988). Influence of particle size and surface area on in vitro rates of gas production, lipolysis of triacylglycerol and hydrogenation of linoleic acid by sheep rumen digesta or Ruminococcus flavefaciens. Journal of Agricultural Science, Cambridge 110, 3137.CrossRefGoogle Scholar
Grovum, W. I. (1986). The control of motility of the ruminoreticulum. In Control of Digestion and Metabolism in Ruminants, pp. 1840 [Milligan, L. P., Grovum, W. L. and Dobson, A., editors]. New Jersey: Reston.Google Scholar
Harrison, D. G. & McAllan, A. B. (1980). Factors affecting microbial growth yields in the reticulo-rumen. In Digestive Physiology and Metabolism in Ruminants, pp. 205226 [Ruckebusch, Y. and Thivend, P., editors]. Lancaster: MTP Press.CrossRefGoogle Scholar
Hobson, P. N. (1987). A model of some aspects of microbial degradation of particulate substrates. Journal of Fermentation Technology 4, 431439.CrossRefGoogle Scholar
Hooper, A. P. (1984). Change in functional specific gravity in forages. PhD Thesis, University of Vermont.Google Scholar
Hooper, A. P. & Welch, J. G. (1985). Effects of particle size and forage composition on functional specific gravity. Journal of Dairy Science 68, 11811188.CrossRefGoogle Scholar
Hunt, C. W., Paterson, J. A., Zinn, G. M. & Williams, J. E. (1984). Effect of particle length and sodium hydroxide treatment of wheat straw on site and extent of digestion by lambs. Journal of Animal Science 58, 14541460.CrossRefGoogle Scholar
Jaster, E. H. & Murphy, M. R. (1983). Effects of varying particle size of forage on digestion and chewing behaviour of dairy heifers. Journal of Dairy Science 66, 802810.CrossRefGoogle ScholarPubMed
Kay, R. N. B., Engelhardt, W. von & White, R. G. (1980). The digestive physiology of wild ruminants. In Digestive Physiology and Metabolism in Ruminants, pp. 743761 [Ruckebusch, Y. and Thivend, P., editors]. Lancaster: MTP Press.CrossRefGoogle Scholar
Kennedy, P. M. (1985 a). Effect of rumination on reduction of particle size of rumen digesta by cattle. Australian Journal of Agricultural Research 36, 819828.CrossRefGoogle Scholar
Kennedy, P. M., Christopherson, R. J. & Milligan, L. P. (1986). Digestive responses to cold. In Control of Digestion and Metabolism in Ruminants, pp. 285306. [Milligan, L. P., Grovum, W. L. and Dobson, A., editors]. New Jersey: Reston.Google Scholar
King, K. W. & Moore, W. E. C. (1957). Density and size as factors affecting passage rate of ingesta in the bovine and human digestive tracts. Journal of Dairy Science 40, 528536.CrossRefGoogle Scholar
Lee, J. A. & Pearce, G. R. (1984). The effectiveness of chewing during eating on particle size reduction of roughages by cattle. Australian Journal of Agricultural Research 35, 609618.CrossRefGoogle Scholar
Leedle, J. A., Bryant, M. P. & Hespell, R. B. (1982). Diurnal variations in bacterial numbers and fluid parameters in ruminal contents of animals fed low- or high-forage diets. Applied and Environmental Microbiology 44, 402412.CrossRefGoogle ScholarPubMed
Lindberg, J. E. (1985). Estimation of rumen degradability of feed proteins with the in sacco technique and various in vitro methods: a review. Acta Agriculturae Scandinavica 25, Suppl., 6497.Google Scholar
Luginbuhl, J.-M., Pond, K. R., Russ, J. C. & Tolley, E. A. (1984). A method for describing the weight distribution of particles from sieved forage. In Techniques in Particle Size Analysis of Feed and Digesta in Ruminants, pp. 5761 [Kennedy, P. M., editor]. Edmonton: Canadian Society of Animal Science.Google Scholar
McBride, B. W., Milligan, L. P. & Turner, B. V. (1984). Endoscopic observations of digesta transfer from the reticulo-rumen to omasum of cattle. Canadian Journal of Animal Science 64, Suppl., 8485.CrossRefGoogle Scholar
McLeod, M. N. (1986). Physical and biological factors controlling the reduction of feed particles in the ruminant. PhD Thesis, University of Queensland.Google Scholar
McSweeney, C. S. & Kennedy, P. M. (1987). Comparative nutrition of cattle and swamp buffaloes given a rice straw-based diet. 3. Forestomach motility. In Herbivore Nutrition Research, pp. 169170 [Rose, M., editor]. Brisbane: Australian Society of Animal Production.Google Scholar
Martz, F. A. & Belyea, R. L. (1986). Role of particle size and forage quality in digestion and passage by cattle and sheep. Journal of Dairy Science 69, 19962008.CrossRefGoogle ScholarPubMed
Mertens, D. R. & Ely, L. O. (1979). A dynamic model of fibre digestion and passage in the ruminant for evaluating forage quality. Journal of Animal Science 49, 10851095.CrossRefGoogle Scholar
Mertens, D. R. & Ely, L. O. (1982). Relationship of rate and extent of digestion to forage utilization – a dynamic model evaluation. Journal of Animal Science 54, 895905.CrossRefGoogle Scholar
Moseley, G. & Jones, J. R. (1984). The physical digestion of perennial ryegrass (Lolium perenne) and white clover (Trifolium repens) in the foregut of sheep. British Journal of Nutrition 52, 381390.CrossRefGoogle ScholarPubMed
Murphy, M. R., Baldwin, R. L. & Ulyatt, M. J. (1986). An update of a dynamic model of ruminant digestion. Journal of Animal Science 62, 14121422.CrossRefGoogle ScholarPubMed
Murphy, M. R. & Nicoletti, J. M. (1984). Potential reduction of forage and rumen digesta particle size by microbial action. Journal of Dairy Science 67, 12211226.CrossRefGoogle Scholar
Netemeyer, D. T., Bush, L. J. & Owens, F. N. (1980). Effect of particle size of soybean meal on protein utilization in steers and lactating cows. Journal of Dairy Science 63, 574578.CrossRefGoogle Scholar
Nocek, J. E. & Kohn, R. A. (1987). Initial particle form and size on change in functional specific gravity of alfalfa and timothy hay. Journal of Dairy Science 70, 18501863.CrossRefGoogle Scholar
Olubobokun, J. A., Kennedy, D. W. & Craig, W. M. (1987). Quantity and effect of microorganisms associated with rumen particles on forage digestibility. Journal of Animal Science 64, Suppl., 453.Google Scholar
Orpin, C. G. (1980). Quantitative aspects of the association of rumen bacteria with plant particles in vitro. Society for General Microbiology Quarterly 7, 174175.Google Scholar
Orpin, C. G. (19831984). The role of ciliate protozoa and fungi in the rumen digestion of plant cell walls. Animal Feed Science and Technology 10, 121143.CrossRefGoogle Scholar
Owens, F. N. & Goetsch, A. L. (1986). Digesta passage and microbial protein synthesis. In Control of Digestion and Metabolism in Ruminants, pp. 196226 [Milligan, L. P., Grovum, W. L. and Dobson, A., editors]. New Jersey: Reston.Google Scholar
Pearce, G. R. & Moir, R. J. (1964). Rumination in sheep. 1. The influence of rumination and grinding upon the passage and digestion of food. Australian Journal of Agricultural Research 15, 635644.CrossRefGoogle Scholar
Pharr, L. D., Colvin, H. W. Jr & Noland, P. R. (1967). Rumen motility of sheep as affected by the physical form of oat hay. Journal of Animal Science 26, 414417.CrossRefGoogle Scholar
Playne, M. J., Echevarria, M. G. & Megarrity, R. G. (1978). Release of nitrogen, sulphur, phosphorus, calcium, magnesium, potassium and sodium from four tropical hays during their digestion in nylon bags in the rumen. Journal of the Science of Food and Agriculture 29, 520526.CrossRefGoogle ScholarPubMed
Pond, K. R., Ellis, W. C. & Akin, D. E. (1984). Ingestive mastication and fragmentation of forages. Journal of Animal Science 58, 15671574.CrossRefGoogle Scholar
Pond, K. R., Ellis, W. C., Lascano, C. E. & Akin, D. E. (1987). Fragmentation and flow of grazed coastal bermudagrass through the digestive tract of cattle. Journal of Animal Science 65, 609618.CrossRefGoogle ScholarPubMed
Poppi, D. P., Hendricksen, R. E. & Minson, D. J. (1985). The relative resistance to escape of leaf and stem particles from the rumen of cattle and sheep. Journal of Agricultural Science, Cambridge 105, 914.CrossRefGoogle Scholar
Poppi, D. P., Minson, D. J. & Ternouth, J. H. (1981). Studies of cattle and sheep eating leaf and stem fractions of grasses. III. The retention time in the rumen of large feed particles. Australian Journal of Agricultural Research 32, 123137.CrossRefGoogle Scholar
Poppi, D. P., Norton, B. W., Minson, D. J. & Hendricksen, R. E. (1980). The validity of the critical size theory for particles leaving the rumen. Journal of Agricultural Science, Cambridge 94, 275280.CrossRefGoogle Scholar
Reid, C. S. W. (1984). The progress of solid feed residues through the rumino-reticulum, the ins and outs of particles. In Ruminant Physiology, Concepts and Consequences, pp. 7984 [Baker, S. K., Gawthorne, J. M., Mackintosh, J. B. and Purser, D. B., editors]. Nedlands: University of Western Australia.Google Scholar
Reid, C. S. W. (1986). Digestive physiology; the challenges today and tomorrow. In Control of Digestion and Metabolism in Ruminants, pp. 540557 [Milligan, L. P., Grovum, W. L. and Dobson, A., editors]. New Jersey: Reston.Google Scholar
Robinson, P. H., Tamming, S. & Van Vuuren, A. M. (1987). Influence of declining level of feed intake and varying the proportion of starch in the concentrate on milk production and whole tract digestibility in dairy cows. Livestock Production Science 17, 1935.CrossRefGoogle Scholar
Robles, A. Y., Belyea, R. L., Martz, F. A. & Weiss, M. F. (1980). Effect of particle size upon digestible cell wall and rate of in vitro digestion of alfalfa and orchardgrass forages. Journal of Animal Science 51, 783790.CrossRefGoogle ScholarPubMed
Siciliano-Jones, J. & Murphy, M. R. (1986 a). Passage of inert particles varying in length and specific gravity through the postruminal digestive tract of steers. Journal of Dairy Science 69, 23042311.CrossRefGoogle ScholarPubMed
Siciliano-Jones, J. & Murphy, M. R. (1986 b). Relationship of particle size to true and functional specific gravity of various feedstuffs. Journal of Dairy Science 69, Suppl., 191.Google Scholar
Sniffen, C. J. & Robinson, P. H. (1987). Microbial growth and flow as influenced by dietary manipulation. Journal of Dairy Science 70, 425441.CrossRefGoogle Scholar
Sutherland, T. M. (1987). Particle separation in the forestomachs of sheep. In Aspects of Digestive Physiology in Ruminants, pp. 4373 [Dobson, A., editor]. Ithaca: Cornell University Press.Google Scholar
Thiago, L. R. L., Kellaway, R. C. & Leibholz, J. (1979). Kinetics of forage digestion in the rumen. Annales de Recherches Vétérinaires 10, 329331.Google ScholarPubMed
Udén, P. (1988). The effect of grinding and pelleting hay on digestibility, fermentation rate, digesta passage and rumen and faecal particle size in cows. Animal Feed Science and Technology 19, 145157.CrossRefGoogle Scholar
Ulyatt, M. J., Dellow, D. W., John, A., Reid, C. S. W. & Waghorn, G. C. (1986). Contribution by chewing during eating and rumination to the clearance of digesta from the reticulorumen. In Control of Digestion and Metabolism in Ruminants, pp. 498515 [Milligan, L. P., Grovum, W. L. and Dobson, A., editors]. New Jersey: Reston.Google Scholar
Ulyatt, M. J., Waghorn, G. C., Reid, C. S. W. & Monro, J. (1984). Effect of intake and feeding frequency on feeding behaviour and quantitative aspects of digestion in sheep fed chaffed lucerne hay. Journal of Agricultural Science, Cambridge 102, 645657.CrossRefGoogle Scholar
Van Soest, P. J. (1982). Nutritional Ecology of the Ruminant. Corvallis: O & B Books.Google Scholar
Waghorn, G. C., Reid, C. S. W., Ulyatt, M. J. & John, A. (1986). Feed comminution, particle composition and distribution between the four compartments of the stomach in sheep fed chaffed lucerne hay at two feeding frequencies and intake levels. Journal of Agricultural Science, Cambridge 106, 287296.CrossRefGoogle Scholar
Welch, J. G. (1982). Rumination, particle size and passage from the rumen. Journal of Animal Science 54, 885894.CrossRefGoogle Scholar
Welch, J. G. (1986). Physical parameters of fiber affecting passage from the rumen. Journal of Dairy Science 69, 27502754.CrossRefGoogle ScholarPubMed
Welch, J. G. (1987). Return of particles from the omasum to the rumen. Journal of Animal Science 64, Suppl., 458.Google Scholar
Weston, R. H. (1982). Animal factors affecting feed intake. In Nutritional Limits to Animal Production from Pastures, pp. 183198 [Hacker, J. B., editor]. Farnham Royal: Commonwealth Agricultural Bureaux.Google Scholar
Weston, R. H. (1984). Rumen digesta load in relation to voluntary feed consumption and rumination in roughagefed young sheep. Canadian Journal of Animal Science 64, Suppl., 324325.CrossRefGoogle Scholar
Weston, R. H. (1989). Factors limiting the intake of feed by sheep. XV. Voluntary feed consumption and digestion in lambs fed chopped roughage diets varying in quality. Australian Journal of Agricultural Research 40, (In the Press.)Google Scholar
Weston, R. H. & Kennedy, P. M. (1984). Various aspects of reticulorumen digestive function in relation to diet and digesta particle size. In Techniques in Particle Size Analysis of Feed and Digesta in Ruminants, pp. 117 [Kennedy, P. M., editor]. Edmonton: Canadian Society of Animal Science.Google Scholar
Weston, R. H., Lindsay, J. R. & Peter, D. W. (1989). Factors limiting intake of feed by sheep. XIV. Comparisons of voluntary feed consumption and various transactions in the alimentary tract between lambs and sheep fed roughage diets. Australian Journal of Agricultural Research 40, (In the Press.)Google Scholar
Worrell, M. A., Clanton, D. C., Stroup, W. W. & Nichols, J. T. (1986). Effect of harvest date on meadow hay quality. II. Particle size degradation and particulate passage from the rumen of growing cattle. Journal of Animal Science 63, 15381546.CrossRefGoogle Scholar
Wyburn, R. S. (1980). The mixing and propulsion of the stomach contents of ruminants. In Digestive Physiology and Metabolism in Ruminants, pp. 3551 [Ruckebusch, Y. and Thivend, P., editors]. Lancaster: MTP Press.CrossRefGoogle Scholar