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      • SCIESCOPUSKCI등재

        Effect of Replacing Rolled Corn with Potato Pulp Silage in Grass Silage-based Diets on Nitrogen Utilization by Steers

        Aibibula, Y.,Okine, A.,Hanada, M.,Murata, S.,Okamoto, M.,Goto, M. Asian Australasian Association of Animal Productio 2007 Animal Bioscience Vol.20 No.8

        Three Holstein steers fitted with ruminal and duodenal cannulae were fed grass silage-based diets supplemented with potato pulp silage as a substitute for rolled corn at levels of 0%, 50% and 100% on a DM basis in a $3{\times}3$ Latin square design to investigate the effect of potato pulp silage on nitrogen (N) utilization in ruminants. Organic matter (OM) intake, and rumen and total tract digestibilities did not differ among treatment diets. Rumen and post-rumen starch digestibilities were similar among treatments, although starch intake decreased (p<0.01) with potato pulp supplementation. There were no significant differences (p>0.05) in ruminal N utilization and non-ammonia N supply to the duodenum of steers fed grass silage supplemented with potato pulp silage as a substitute for rolled corn. There were no treatment differences (p>0.05) in rumen pH, volatile fatty acid (VFA) concentration or the molar percentages of acetate and propionate. The ammonia-N concentration in rumen fluid tended to decrease (p<0.1) when rolled corn was substituted with potato pulp silage. Ether extract intake and post-ruminal digestibility significantly (p<0.01) decreased in steers fed diets containing potato pulp silage. Concentrations of total cholesterol and phospholipids in serum markedly decreased (p<0.01) with potato pulp silage supplementation without adversely affecting liver function. These data suggested that potato pulp silage has a similar value as rolled corn as an energy source for rumen microorganisms.

      • SCIESCOPUSKCI등재

        The Use of Fungal Inoculants in the Ensiling of Potato Pulp: Effect of Temperature and Duration of Storage on Silage Fermentation Characteristics

        Okine, A,Aibibula, Y.,Hanada, M.,Okamoto, M. Asian Australasian Association of Animal Productio 2007 Animal Bioscience Vol.20 No.2

        A $3{\times}3$ factorial design experiment was conducted to investigate the effect of temperature and duration of storage on the fermentation quality of potato pulp ensiled with two fungal inoculants under laboratory conditions. The inoculants, Rhizopus oryzae (R) and Amylomyces rouxii (A) were each added to potato pulp material to contain at least $1{\times}10^6$ CFU/g fresh matter, and silages without additives served as controls. The silages were stored under three temperature regimes; 4, 12 and $25^{\circ}C$. Three silos per treatment from every temperature regime were opened on days 7, 24 and 40 days after ensiling to investigate treatment effects on fermentation quality, starch and sugar concentrations. Increase in temperature and duration of storage had a positive significant effect (p<0.01) on the fermentation quality of potato pulp silage (PPS). The inoculants had little effect (p>0.05) on the fermentation quality of the silages. Sugar concentration in the silages decreased with increase in temperature (p<0.01) but increased (p<0.05) with progression of duration of storage. The fungal inoculants had no effect on starch degradation in PPS. The results suggest that storage temperature and duration of storage are more important in determining the rate of fermentation than addition of the fungal inoculants in PPS.

      • KCI등재

        Effect of dietary cotton stalk on nitrogen and free gossypol metabolism in sheep

        Halidai Rehemujiang,Aibibula Yimamu,Yong Li Wang 아세아·태평양축산학회 2019 Animal Bioscience Vol.32 No.2

        Objective: This study was to investigate the effects of dietary cotton stalk on nitrogen and free gossypol in sheep. Methods: Treatments included 25% cotton stalk (Treat 1), 50% cotton stalk (Treat 2), and a control (no cotton stalk). Six Xinjiang daolang wethers were cannulated at the rumen and duodenum and fed one of these diets. The effects of these diets on nitrogen and free gossypol absorption and metabolism were determined. Fifteen healthy Xinjiang daolang wethers were assessed for daily gain, tissue lesions, and free gossypol accumulation. Results: Dry matter intake decreased with increasing dietary cotton stalk. Total tract dry matter digestibility did not significantly differ among treatments. Dietary cotton stalk significantly decreased volatile fatty acids and increased ammonium nitrogen in the rumen. Nitrogen intake was significantly higher in Treat 2 than in the control or Treat 1. Nitrogen retention and free gossypol intake increased with dietary cotton stalk. Duodenal free gossypol flow did not increase, and free gossypol almost disappeared from the rumen. The free gossypol content of plasma and tissue was increased with dietary cotton stalk with liver free gossypol> muscle free gossypol>kidney free gossypol. Elevated dietary free gossypol decreased platelets, hemoglobin, and serum iron. Aspartate aminotransferase and γ-glutamyltransferase increased in Treat 2. With high long-term dietary cotton stalk intake, liver cells were swollen, and their nuclei dissolved. Renal cells were necrotic and the interstitia were enlarged. Conclusion: With short-term cotton stalk administration, only a small amount of free gossypol is retained in the body. In response to long-term or high free gossypol cotton stalk feeding, however, free gossypol accumulates in, and damages the liver and kidneys.

      • SCIESCOPUSKCI등재

        Variations in Conjugated Linoleic Acid Concentrations in Cows Milk, Depending on Feeding Systems in Different Seasons

        Zunong, Maimaijiang,Hanada, Masaaki,Aibibula, Yimamu,Okamoto, Meiji,Tanaka, Keiichi Asian Australasian Association of Animal Productio 2008 Animal Bioscience Vol.21 No.10

        Variations in conjugated linoleic acid (CLA) concentrations in Holstein dairy cows milk, depending on feeding systems in different seasons was investigated. Milk samples were collected from Holstein dairy cows, which either grazed for whole days (WG), only daylight hours (TG), or were offered a total mixed ration (TMR) and experienced no grazing (NG), from April to December of 2005. In April, November and December, the cows in TG and WG treatments received grass silage and some concentrate, while from May to October, the cows grazed on temperate pasture. The cows in NG treatment received the TMR throughout the season. The major fatty acid obtained in the pastures was linolenic acid. There was no significant difference in the pasture's linolenic acid concentrations from May to September, but there was a significant decrease in October. However, the linolenic acid concentrations obtained in the pasture were always much higher than those obtained from the TMR. Linoleic acid was also the major fatty acid in the TMR, but these concentrations were higher in the TMR than in the pasture. There was no significant difference in milk cis9trans11CLA (c9t11CLA) concentrations between the three feeding systems while the cows were fed on conserved pasture in April, November and December. Although c9t11CLA concentrations were lower in the TMR, it was found that the cows which grazed in fresh pasture experienced significantly higher concentrations of c9t11CLA in their milk than those which received only TMR. It was also found that cows in the WG treatment experienced higher c9t11CLA concentrations than those in the TG treatment. In the WG and TG treatments, c9t11CLA concentrations were highest in June, after which, they gradually decreased (p<0.01) until October. For the NG treatment, there was no significant change in the concentrations of c9t11CLA (p>0.05) with season. Overall, trans11C18:1 and c9t11CLA were greatly influenced by season, with higher variation in the WG treatment than in the TG treatment and no variation in the NG treatment.

      • Effect of Fat Supplement Containing Docosahexaenoic Acid and Medium Chain Fatty Acid on Milk Production and Milk Fatty Acid Profiles of Dairy Cows fed Grass Silage Based Diet

        Maimaijiang Zunong,Masaaki Hanada,Yimamu Aibibula,Meiji Okamoto 한국초지조사료학회 2009 한국초지조사료학회 학술대회논문집 Vol.2009 No.08

        In resent year there has been research on benefits of conjugated linoleic acid (CLA) and docosahexaenoic acid (DHA) for human health. The effect of a fat supplement made from seaweeds meal plus palm olein meal (FS) and replacement of concentrate on milk production, and milk fatty acid (FA) profiles of dairy cows fed grass silage based diets was evaluated. Ten Holstein lactating cows were divided into a two groups. The cows in a group were fed concentrate at 40% on TDN basis (control). The cows in another group (Treatment) were supplemented 0.5㎏/day/cow of FS as a substitute for 2㎏/day/cow of concentrate. The medium chain fatty acids and DHA content of FS were 345 ㎎/g DM and 35 ㎎/g DM, respectively. Total DMI, DM digestibility and milk production as well as milk composition did not differ between the two groups. The intake of ether extract was higher (P<0.01) in Treatment than control group (1.1 ㎏/day/cow vs. 1.3 ㎏/day/cow). The short and medium chain of FA in the milk did not differ between two groups. The trans11C18:1vaccenic acid, cis9trans11CLA and C18:3 concentrations in the milk were higher (P<0.01) in Treatment than control group(1.88 g/100gFA vs. 1.03 g/100gFA, 0.93 g/100gFA vs. 0.51 g/100gFA and 0.48 g/100gFA vs. 0.48 g/100gFA). However, the C18:2 concentration in the milk was lower (P<0.05) in Treatment than Control group (1.38 g/100gFA vs.1.17 g/100gFA). There were detected 0.13 g/100gFA of DHA in the milk in Treatment group. Results indicated that addition of the FS has the potential of increasing CLA and DHA in cow's milk.

      • SCIESCOPUSKCI등재

        Potential Water Retention Capacity as a Factor in Silage Effluent Control: Experiments with High Moisture By-product Feedstuffs

        Razak, Okine Abdul,Masaaki, Hanada,Yimamu, Aibibula,Meiji, Okamoto Asian Australasian Association of Animal Productio 2012 Animal Bioscience Vol.25 No.4

        The role of moisture absorptive capacity of pre-silage material and its relationship with silage effluent in high moisture by-product feedstuffs (HMBF) is assessed. The term water retention capacity which is sometimes used in explaining the rate of effluent control in ensilage may be inadequate, since it accounts exclusively for the capacity of an absorbent incorporated into a pre-silage material prior to ensiling, without consideration to how much the pre-silage material can release. A new terminology, 'potential water retention capacity' (PWRC), which attempts to address this shortcoming, is proposed. Data were pooled from a series of experiments conducted separately over a period of five years using laboratory silos with four categories of agro by-products (n = 27) with differing moisture contents (highest 96.9%, lowest 78.1% in fresh matter, respectively), and their silages (n = 81). These were from a vegetable source (Daikon, Raphanus sativus), a root tuber source (potato pulp), a fruit source (apple pomace) and a cereal source (brewer's grain), respectively. The pre-silage materials were adjusted with dry in-silo absorbents consisting wheat straw, wheat or rice bran, beet pulp and bean stalks. The pooled mean for the moisture contents of all pre-silage materials was 78.3% (${\pm}10.3$). Silage effluent decreased (p<0.01), with increase in PWRC of pre-silage material. The theoretical moisture content and PWRC of pre-silage material necessary to stem effluent flow completely in HMBF silage was 69.1% and 82.9 g/100 g in fresh matter, respectively. The high correlation (r = 0.76) between PWRC of ensiled material and silage effluent indicated that the latter is an important factor in silage-effluent relationship.

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