首页> 外文期刊>Animal Production Science >Sustaining productivity of a Vertisol at Warra, Queensland, with fertilisers, no-tillage or legumes. 2. Long-term fertiliser nitrogen needs to enhance wheat yields and grain protein
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Sustaining productivity of a Vertisol at Warra, Queensland, with fertilisers, no-tillage or legumes. 2. Long-term fertiliser nitrogen needs to enhance wheat yields and grain protein

机译:使用肥料,免耕或豆类维持昆士兰州Warra的Vertisol生产效率。 2.长期肥料氮需要提高小麦产量和谷物蛋白

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Cereal production in the summer-dominant rainfall region of Australia, especially the north-east, has relied heavily on natural soil fertility. Continued cereal production has so depleted the fertility of some soils that corrective strategies are required to restore the production of high protein wheat needed for domestic and export markets. Application of nitrogen (N) fertilisers, along with other strategies to improve soil N status, was evaluated between 1987 and 1994 on a Vertisol located in an area of unreliable winter rainfall. Responses of wheat grain yield and protein content to applied N (0-150 kg/ha) under zero tillage (ZT) and conventional tillage (CT) were determined each year, except 1991 when severe drought prevented wheat sowing. The ZT practices increased grain yields, particularly in 1988 and 1992-93 when antecedent soil water supplies were moderate (about 1 m wet soil in 1988 and 1992) or low (about 0.6 m wet soil in 1993), apparently due to increased antecedent soil water. Tillage practice had little effect on available nitrate-N (kg/ha) to 1.5 m, but the greater water supply in ZT soil usually benefited the wheat crop when N was applied. Applying N increased returns from 5 of the 7 crops because of grain yield and/or grain protein responses. Grain yield responses were inconsistent in the year of fertiliser application where no N fertiliser had been applied to preceding crops. Nevertheless, grain protein usually increased with increasing N application at sowing, except in 1994, when drought after sowing prevented secondary root development and fertiliser uptake. Where N was applied with each successive crop, the crops receiving small N applications (0, 12.5 or 25 kg/ha.crop) produced grain of a low protein concentration (<10%) and lower yields (<90% maximum yield) than crops which received larger N applications (75 kg/ha.crop). Profits were substantially reduced where the rate of N applied was insufficient to raise grain protein concentration to >11.5%, due to the low market value of low protein wheat, or because of lower grain yields. Routine N application to crops over the period 1987-94, which included the longest drought (1990-94) in the lifetime of most producers, caused similarly inconsistent grain yield increases but increased grain protein concentrations (>11.5%) in all except the first crop (1987). Increased frequency of high protein wheat and a high anticipated market value of the higher protein grain should encourage greater producer confidence with routine application of N throughout this region.
机译:澳大利亚夏季主要是降雨地区,特别是东北地区的谷物生产严重依赖自然土壤肥力。谷物的持续生产严重耗尽了某些土壤的肥力,因此需要采取纠正措施来恢复国内和出口市场所需的高蛋白小麦的产量。在1987年至1994年之间,对位于冬季降雨不可靠地区的Vertisol进行了氮肥施用以及其他改善土壤氮状况的策略的评估。除1991年因严重干旱阻止小麦播种外,每年都要测定零耕(ZT)和常规耕作(CT)下小麦籽粒产量和蛋白质含量对氮肥(0-150 kg / ha)的响应。 ZT的做法提高了谷物的产量,特别是在1988年和1992-93年,当时的前土壤水供应适中(1988年和1992年约1 m的湿土壤)或较低(1993年约0.6 m的湿土壤),这显然是由于前土壤的增加水。耕作方式对1.5 m以下的有效硝态氮(kg / ha)影响不大,但施用氮肥后,ZT土壤中较大的水分供应通常使小麦作物受益。由于籽粒产量和/或籽粒蛋白质的响应,施用N增加了7种作物中5种的回报。在施肥的年份中,以前的农作物没有施氮肥,因此谷物的产量响应不一致。然而,除1994年播种后的干旱阻止了次生根系发育和肥料吸收外,籽粒蛋白质通常随播种时氮素施用量的增加而增加。在每个连续的作物上都施氮的情况下,施氮量少(0、12.5或25 kg / ha.crop)的作物产生的蛋白质浓度低(<10%)且单产低(最大单产<90%)的谷物氮肥施用量较大(75公斤/公顷)的农作物。由于低蛋白小麦的市场价格低或谷物产量较低,当氮素施用量不足以将谷物蛋白浓度提高到11.5%以上时,利润会大大降低。在1987-94年间对作物的常规氮肥施用(包括大多数生产者一生中最长的干旱(1990-94年)),同样导致谷物单产增加不一致,但除第一批外,其他所有谷物的蛋白质浓度增加(> 11.5%)。庄稼(1987)。高蛋白小麦的出现频率增加,高蛋白谷物的预期市场价值高,这将鼓励该地区常规施氮,从而提高生产者的信心。

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    《Animal Production Science》 |1996年第6期|p.665-674|共10页
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