Forage brassicas can enhance the feed base and mitigate feed gaps across diverse environments

Lucinda J. Watt, Lindsay W. Bell
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Abstract

Context Spring-sown forage brassicas are commonly used to fill feed gaps in high-rainfall temperate livestock systems, but they have wider potential as an autumn-sown forage in drier environments within Australia’s crop–livestock zone. Aims We modelled the production potential of autumn-sown forage brassicas grown in diverse environments and tested their ability to alter the frequency and magnitude of feed gaps. Methods Long-term production potential was simulated in APSIM for four forage brassica genotypes, compared with forage wheat and dual-purpose canola across 22 diverse agro-climatic locations. For seven regions, the change in frequency and magnitude of forage deficits from adding forage brassicas to representative forage–livestock systems was predicted. Key results Across locations, median yields of forage brassicas ranged from 7 to 19 t DM/ha, and their annual metabolisable-energy yield was higher than that of forage wheat at most sites and nearly always exceeded dual-purpose canola. Forage brassicas performed better than forage wheat in later-sowing events (late April to early May) and maintained growth and quality later into spring. At five of the seven regions, adding 15% of farm forage area to forage brassicas reduced the frequency and magnitude of feed deficits by 35–50% and 20–40%, respectively. However, they were less beneficial where winter–spring feed gaps are uncommon. Conclusions We demonstrated that autumn-sown forage brassicas can be reliable and productive contributors to the feed base in drier environments and are a suitable alternative to forage cereals. Implications Forage brassicas can help reduce feed gaps and improve livestock production in a range of production systems spanning Australia’s crop–livestock zone.
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饲用芸苔属植物可增强饲料基础,缓解不同环境下的饲料缺口
背景 在降雨量较高的温带牲畜饲养系统中,春播饲料黄花菜通常用于填补饲料缺口,但在澳大利亚作物-牲畜区较干旱的环境中,作为秋播饲料黄花菜具有更广泛的潜力。目的 我们模拟了在不同环境中种植的秋播饲料榨菜的生产潜力,并测试了它们改变饲料缺口频率和程度的能力。方法 在 APSIM 中模拟了四种牧草芸苔属植物基因型的长期生产潜力,并与 22 个不同农业气候地点的牧草小麦和两用油菜籽进行了比较。在七个地区,预测了在具有代表性的饲料-牲畜系统中添加饲用芸苔属植物后饲料短缺的频率和程度的变化。主要结果 在不同地区,牧草黄铜产量的中位数从 7 吨 DM/ha 到 19 吨 DM/ha 不等,其年代谢能产量在大多数地区高于牧草小麦,几乎总是超过两用油菜籽。在较晚播种期(4 月底至 5 月初),榨菜的表现优于饲料小麦,并能在春季后期保持生长和质量。在 7 个地区中的 5 个地区,将农场饲草面积的 15%用于饲用芸苔属植物,可将饲料短缺的频率和程度分别降低 35-50% 和 20-40%。然而,在冬春饲料缺口不常见的地区,它们的效益较低。结论 我们证明,在较干旱的环境中,秋季播种的饲料榨菜可以成为饲料基础的可靠和高产的贡献者,是饲料谷物的合适替代品。意义 在澳大利亚作物-畜牧区的一系列生产系统中,饲料榨菜有助于减少饲料缺口,提高畜牧业产量。
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