首页> 外文期刊>Australian Journal of Experimental Agriculture >An evaluation of the yield and quality of oat-legume and ryegrass-legume mixtures and legume monocultures harvested at three stages of growth for silage.
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An evaluation of the yield and quality of oat-legume and ryegrass-legume mixtures and legume monocultures harvested at three stages of growth for silage.

机译:对在三个生长阶段收获的青贮豆,豆科植物,黑麦草和豆科植物的混合物以及豆类单一培养物的产量和质量进行评估。

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The effect of harvest time on the dry matter (DM) yield and quality of 10 annual temperate legumes [Trifolium subterraneum, var. brachcalycinum and var. subterraneum L. (subterranean clover), T. michelianum Savi (balansa clover), T. alexandrinum L. (berseem clover), Medicago murex Willd. (murex medic), M. truncatula Gaertn. (barrel medic), T. vesiculosum Savi (arrowleaf clover), Vicia sativa L. (common vetch), V. benghalensis L. (purple vetch), Pisum sativum L. (peas) grown in monoculture or in mixtures with oats (Avena sativa L.)] was examined in a Mediterranean environment in southern New South Wales. Three of the legumes (subterranean clover, berseem and peas) were also grown in mixtures with ryegrass (Lolium multiflorum Lam.). The forages were sown on 29 May and harvested at three times (2 October, 23 October and 6 November), corresponding to the boot, anthesis and dough stage of the cereal oat variety, Kalgan. Peas were the highest yielding of the legume monocultures at each of the three harvest times (6.9, 11.6, 12.3 t DM/ha), followed by purple vetch (6.2, 9.9, 8.7 t DM/ha). Of the small-seeded pasture legumes, berseem, murex and arrowleaf clover were the highest yielding at the second harvest (7.5-8.8 t DM/ha) when most reached their peak biomass. The inclusion of oats with the legumes increased total DM yield at the first, second and third harvests by 10-54, 7-99 and 3-102%, respectively. Oat monocultures were high yielding (up to 17.7 t DM/ha), but had low N contents (6.3-12.5 g N/kg DM). Oat-legume forage mixtures had nitrogen (N) contents of 7-15 g N/kg compared with 17-40 g N/kg in the legume monocultures. The N content and digestibility of most species and mixtures decreased as harvest time was delayed, whereas total DM peaked at the second harvest for all species except Cooba oats. The legume content of the mixtures was negatively correlated with total DM yield, DM content and water soluble carbohydrates, but positively correlated with N content, in vitro digestibility and buffering capacity. The digestibility of oats decreased more rapidly than the legumes with advancing maturity, and it would need to be harvested at the boot stage to produce a silage of sufficiently high metabolisable energy for the production feeding of cattle. A later harvest at anthesis when yield is higher would produce a silage of sufficient quality for production feeding from an oat-large seeded legume mixture with a legume content of 0.50. The oats and ryegrass had high water soluble carbohydrate and low to medium buffering capacity and would, therefore, be expected to produce well-preserved silages. The legume monocultures had low water soluble carbohydrate contents and high buffering capacity values and there would be a high risk of a poor silage fermentation in these forages without field wilting or the use of a silage additive..
机译:收获时间对10种一年生温带豆科植物的干燥物质(DM)产量和质量的影响[Trifolium subterraneum,var。 brachcalycinum和var。地下三叶草(地下),T。michelianum Savi(三叶草三叶草),亚历山大三叶草(berseem三叶草),紫花苜蓿(Medicago murex Willd)。 (Murex军医),M。truncatula Gaertn。 (桶装军医),T。vesiculosum Savi(箭叶三叶草),Vicia sativa L.(普通v子),V。benghalensis L.(紫v菜),Pisum sativum L.(豌豆)单种种植或与燕麦混合种植(Avena) sativa L.)]在新南威尔士州南部的地中海环境中进行了检查。三种豆科植物(地下三叶草,berseem和豌豆)也与黑麦草(黑麦草)混合种植。饲草于5月29日播种,并分别进行了三次收获(10月2日,10月23日和11月6日),分别对应谷物燕麦品种Kalgan的启动,花期和生面团阶段。在三个收获时间中,豌豆是豆类单一栽培的最高产量(6.9、11.6、12.3 t DM / ha),其次是紫v菜(6.2、9.9、8.7 t DM / ha)。在小草牧场豆科植物中,berseem,murex和箭叶三叶草在第二次收获时的产量最高(7.5-8.8 t DM / ha),而生物量最高时达到最高。在豆科植物中加入燕麦可以使第一,第二和第三次收获的干物质总产量分别增加10-54%,7-99%和3-102%。燕麦单种产量高(达17.7吨DM / ha),但氮含量低(6.3-12.5 g N / kg DM)。燕麦-豆类饲料混合物的氮(N)含量为7-15 g N / kg,而豆类单一培养物中的氮含量为17-40 g N / kg。大多数物种和混合物的氮含量和消化率随收获时间的延长而降低,而除库巴燕麦外,所有物种的总DM在第二次收获时达到峰值。混合物中豆类的含量与总DM产量,DM含量和水溶性碳水化合物呈负相关,但与N含量,体外消化率和缓冲能力呈正相关。随着成熟度的提高,燕麦的消化率比豆类下降得更快,因此需要在启动阶段进行收获,以产生具有足够高代谢能的青贮饲料来生产牛。当产量较高时,在后期开花期收获的青贮饲料,可以从豆类含量为0.50的燕麦大种子豆类混合物中生产出足够质量的青贮饲料。燕麦和黑麦草具有较高的水溶性碳水化合物和较低至中等的缓冲能力,因此有望产生保存良好的青贮饲料。豆类单一培养物中水溶性碳水化合物含量低,缓冲能力值高,如果没有田间萎或使用青贮饲料添加剂的话,这些青贮饲料中青贮饲料发酵不良的风险很高。

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