• Title/Summary/Keyword: Haylage

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Development of a Fermented TMR for Pigs Using Bale-Wrapping System (랩-베일을 이용한 양돈용 TMR 발효사료 제조 시스템 개발)

  • Kim, Hyuck-Joo;Yu, Byeong-Kee;Lee, Sunghyoun;Yu, Ji-Su;Seo, Hyoung-Duk
    • Journal of Animal Environmental Science
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    • v.20 no.3
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    • pp.105-116
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    • 2014
  • In this study, we developed a fermented TMR producing system which could a continuous operation of baling and wrapping the mixed TMR. The baling part has fixed chamber of dia. 900 mm and width 900 mm. And the the turn-table type wrapping part is very compact compared to conventional one in market. The test result were: The absorbed power of the prototype in working was 9.0~15.7 kW. The combined baling and wrapping performance was over 20 bales/hr. The leakage in the process was around 1.9 kg for making a 350 kg TMR bale. The diameter of wrapped TMR bale was 900~950 mm, and its weight was 350 kg in average. Therefore the density was $718kg/m^3$, and it was very high density to the inputted TMR. The pH of the fermented TMR was 5.0~5.6 which was similar to the fermented haylage, also the TMR had no butyric acid's odor.

Characterising Forages for Ruminant Feeding

  • Dynes, R.A.;Henry, D.A.;Masters, D.G.
    • Asian-Australasian Journal of Animal Sciences
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    • v.16 no.1
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    • pp.116-123
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    • 2003
  • Forages are the most important feed resource for ruminants worldwide, whether fed as pastures, forage crops or conserved hay, silage or haylage. There is large variability in the quality of forages so measurement and prediction of feeding value and nutritive value are essential for high levels of production. Within a commercial animal production system, methods of prediction must be inexpensive and rapid. At least 50% of the variation in feeding value of forages is due to variation in voluntary feed intake. Identification of the factors that constrain voluntary feed intake allows these differences to be managed and exploited in forage selection. Constraints to intake have been predicted using combinations of metabolic and physical factors within the animal while simple measurements such as the energy required to shear the plant material are related to constraints to intake with some plant material. Animals respond to both pre- and post-ingestive feedback signals from forages. Pre-ingestive signals may play a role in intake with signals including taste, odour and texture together with learned aversions to nutrients or toxins (post-ingestive feedback signals). The challenge to forage evaluation is identification of the factors which are most important contributors to these feedback signals. Empirical models incorporating chemical composition are also widely used. The models tend to be useful within the ranges of the datasets used in their development but none can claim to have universal application. Mechanistic models are becoming increasingly complex and sophisticated and incorporate both feed characteristics and use of biochemical pathways within the animal. Improvement in utilisation through the deliberate selection of pasture plants for high feeding value appears to have potential and has been poorly exploited. Use of Near Infrared Reflectance Spectroscopy is a simple method that offers significant potential for the preliminary screening of plants with genetic differences in feeding value. Near Infrared Reflectance Spectroscopy will only be as reliable as the calibration sets from which the equations are generated.

Effects of Feeding High Forage Diets and Supplemental Fat on Feed Intake and Lactation Performance in Dairy Cows

  • Abdullah, M.;Young, J.W.;Tyler, H.D.;Mohiuddin, G.
    • Asian-Australasian Journal of Animal Sciences
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    • v.13 no.4
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    • pp.457-463
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    • 2000
  • Fifty mid-lactation Holstein cows were used in a six-week feeding trial to study effects of high-forage, high-fat diets on dry matter intake and production performance. Cows were divided into 10 replicates, each consisting of five cows. Each cow was assigned to a control (diet 1) or one of the four experimental diets (high-forage (75%), high-fat (7.5%) (diet 2); high-forage, medium-fat (5%) (diet 3); medium forage (65%), high-fat (diet 4); medium-forage, medium-fat (diet 5)), or a control diet containing about 50% forage and 2% fat. All diets were isonitrogenous (17.7% crude protein). The forage mixture consisted of 20% alfalfa hay, 40% alfalfa haylage, and 40% com silage. Supplemental fat included 80% rumen-protected fat and 20% yellow grease. Dry matter intake was decreased (p<0.01) in cows fed experimental diets (18.4, 20.9, 19.9, and 22.6 kg for cows fed diets 1-4, respectively vs. 27.5 kg for cows fed the control diet). Daily milk production was lower (p<0.05) for cows consuming experimental diets (30.5, 31.3, 31.0, and 32.5 kg for cows fed greater for cows consuming experimental diets (1.74, 1.55, 1.60, and 1.53 kg milk/kg dry matter intake for cows fed diets 1-4, respectively, vs. 1.26 kg milk/kg dry matter intake for cows fed the control diet).

Callus Induction and Plant Regeneration Efficiency According to Tissue Culture Conditions in Teff grass (Eragrostis) (테프그라스 조직배양을 통한 캘러스 형성 및 식물체 재분화 효율)

  • Lee, Ki-Won;Moon, Jin Young;Park, Hyung Soo;Choi, Gi Jun;Kim, Ki-Yong;Ji, Hee Chung;Hwang, Tae Young;Lee, Sang-Hoon
    • Journal of Animal Environmental Science
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    • v.19 no.1
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    • pp.55-62
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    • 2013
  • Teff grass is a warm season C4 annual grass that is used for dry hay, silage and haylage. We have developed a high-frequency plant regeneration system for teff grass via callus culture using mature seeds. It was revealed that mature seeds cultured on MS medium supplemented with 2 mg/l 2,4-D, 0.5 g/L proline, 0.5 g/L casamino acid and 3 g/L Gelrite under light condition produced the highest percentage of callus formation (91.9%). Addition of cytokinins (BA) at 0.0~0.5 mg/L to media containing 2 mg/l 2,4-D enhanced callus growth. The most suitable medium for plant regeneration from dehydrated calli was MS agar medium supplemented with 0.1 mg/l NAA, 1 mg/l BA, 0.5 g/L proline, 0.5 g/L casamino acid 3 g/L Gelrite which induced the highest percentage of calli forming shoots (47.0%). The shoots were rooted at the highest rate (100%) when transferred onto 1/2 MS medium and acclimated in greenhouse conditions.

Study on Silage Manufacture of Rape Treated as Weed (잡초로 취급된 유채의 사일리지 제조에 관한 연구)

  • Choi, Ki Choon;Ryu, Jai Hyunk;Jung, Min-Woong;Park, Hyung Su;Kim, Won Ho;Kim, Da Hye;Kim, Cheon Man;Kim, Jong Geun;Kim, Mang Jung;Lim, Young Chul
    • Journal of The Korean Society of Grassland and Forage Science
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    • v.32 no.4
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    • pp.405-410
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    • 2012
  • This study was carried out to investigate the effect of harvest stage of rape on nutritive values and quality of round baled rape silage in field of forage crops of Department of Animal Resources Development, National Institute of Animal Science, RDA. Rape was harvested at three different growth stages (flowering, milk and dough stage) and ensiled at each harvest stages. The content of moisture of rape increased with delayed harvest maturity. However, the content of moisture of rape was controlled by pre-wilting (24 hr. and 48 hr). The content of moisture in dough stage was similar to that of haylage. The content of crude protein in round baled rape silage increased with delayed harvest maturity, but the contents of acid detergent fiber, neutral detergent fiber and total digestible nutrient decreased. The pH in all rape silage ranged from 3.8 to 4.4 at three different harvest stages, and pH in dough stage was higher than that of flowering and milk stages (p<0.05). The content of lactic acid of all rape silage increased with delayed harvest maturity (p<0.05), but the content of acetic acid decreased (p<0.05). And then, flieg's score revealed that there was an increase in order; flowering stage (100) = milk stage (100) > ripen stage (88).

Application of lactic acid bacteria producing antifungal substance and carboxylesterase on whole crop rice silage with different dry matter

  • Lee, Seong Shin;Paradhipta, Dimas Hand Vidya;Lee, Hyuk Jun;Joo, Young Ho;Noh, Hyeon Tak;Choi, Jeong Seok;Ji, Keum Bae;Kim, Sam Churl
    • Animal Bioscience
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    • v.34 no.6
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    • pp.1029-1037
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    • 2021
  • Objective: This study was conducted to investigate effects of antifungal substance and carboxylesterase-producing inoculant on fermentation indices and rumen degradation kinetics of whole crop rice (WCR) silage ensiled at different dry matter (DM) contents. Methods: Dual-purpose inoculants, Lactobacillus brevis 5M2 and Lactobacillus buchneri 6M1, confirmed both activities of antifungal and carboxylesterase in the previous study. The WCR at mature stage was chopped, and then wilted to obtain three different DM contents consisting of 35.4%, 43.6%, and 51.5%. All WCR forages were applied distilled water (CON) or mixed inoculants with 1:1 ratio at 1×105 colony forming unit/g (INO), and ensiled into 20 L mini silo (5 kg) in quadruplicates for 108 d. Results: The INO silages had lower lactate (p<0.001) and butyrate (p = 0.022) with higher acetate (p<0.001) and propionate (p<0.001) than those of CON silages. Ammonia-N (p<0.001), lactate (tendency; p = 0.068), acetate (p = 0.030), and butyrate (p<0.001) concentrations of INO silages decreased linearly with increasing DM content of WCR forage. The INO silages presented higher lactic acid bacteria (p<0.001) with lower molds (p<0.001) than those of CON silages. Yeasts (p = 0.042) and molds (p = 0.046) of WCR silages decreased linearly with increasing DM content of WCR forage. In the rumen, INO silages had higher the total degradable fraction (p<0.001), total volatile fatty acid (tendency; p = 0.097), and acetate (p = 0.007), but lower the fractional degradation rate (p = 0.011) and propionate (p<0.001) than those of CON silage. The total degradable fraction (p<0.001), total volatile fatty acid (p = 0.001), iso-butyrate (p = 0.036), and valerate (p = 0.008) decreased linearly with increasing DM content of WCR forage, while the lag phase (p<0.001) was increased linearly. Conclusion: This study concluded that application of dual-purpose inoculants on WCR silage confirmed antifungal and carboxylesterase activities by inhibiting mold and improving rumen digestibility, while increase of wilting times decreased organic acids production and rumen digestibility.

Chemical Composition and Fermentation Characteristics of Storage Sections of the Round Bale Silage of Fresh Rice Straw at Yonchon of Gyeonggi-do (연천지역에 있어서 생볏짚 원형곤포사일리지의 부위별 사료성분 및 발효품질)

  • Kim, Sang-Rok;Kim, Gon-Sik;Woo, Jae-Hoon;Lee, Jun-Woo;Sung, Kyung-Il
    • Journal of The Korean Society of Grassland and Forage Science
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    • v.24 no.3
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    • pp.253-260
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    • 2004
  • The purpose of this study is to discuss the ways to evaluate the effectiveness of storage sections of the round bale silage of fresh rice straw (RS). This study evaluated, the changes of the fermentation characteristics and chemical composition of the different sectors of the RS after a certain period; a month later after the bailing, samples of three different RS (bale one, bale two, and bale three) were taken according to the three different sectors (top, center, and the bottom) of the bale. According to the findings of this study there was no significant difference in the RS's chemical composition content among the different sectors (top, center, or the bottom) of the bale. The possible reason for this is believed that on the basis of different sectors of the bale, the moisture (the water soluble nutrient) movement didn't occur and was locked in and couldn't escape, because the dry matter content of the rice straw was as high as $70\%$. After immediately harvesting the paddies, using the fresh rice straw to produce RS at the same time when the dry matter content is in between $26{\sim}40\%$, the chemical composition was found to be of a good quality. Accordingly, it is recommended that when the dry matter content is in between $35{\sim}45\%$, in order to produce RS with the fine chemical composition of 'Yonchon' region, bailing should be done simultaneously with the harvesting of paddies, before the first frost appears.