首页> 外文会议>Australian Society of Sugar Cane Technologists Conference; 20060502-05; Mackay(AU) >ROW SPACING EFFECT ON THE GROWTH AND YIELD OF SEVERAL SUGARCANE VARIETIES IN NORTH QUEENSLAND
【24h】

ROW SPACING EFFECT ON THE GROWTH AND YIELD OF SEVERAL SUGARCANE VARIETIES IN NORTH QUEENSLAND

机译:行间距对北昆士兰州几种蔗糖品种生长和产量的影响

获取原文
获取原文并翻译 | 示例

摘要

Controlled traffic (matching wheel and row spacing) is becoming an important part of the production system in the Australian sugar industry. However, with harvester and haul-out wheel spacing between 1.8-1.9 m, controlled traffic is not possible under the traditional sugarcane row spacing of 1.5 m. The simplest solution to the problem would be to change row spacing to match wheel spacing. However, there is little information available as to how current varieties, selected under a 1.5 m system, will perform under wider rows. An initial experiment was established at Gordonvale, north Queensland to assess the response of four varieties with different growth characteristics (Q187~D, Q200~D, Q201~D, Q218) to 1.5 m single rows, 1.8 m single and dual rows (500 mm between duals) and 2.3 m dual rows (800 mm between duals). There were significant variety and variety × row spacing responses with the overall highest cane (151 t/ha) and sugar (23.65 t/ha) yields being produced with Q201~D on 1.8 m dual rows. The results suggest that the success of a change to a controlled traffic system (wider rows than 1.5 m) will be dependent on suitable varieties being available. It is suggested that selection of suitable varieties for wider rows will be dependent on a better understanding of the crop physiology and, from that, identification of the basic characteristics required. It is apparent that there is little understanding of this at present. Further, there were indications from this experiment that fast growing, strongly tillering varieties (e.g. Q200~D) may not necessarily be the avenue to maximum yields compared with varieties that develop more slowly, produce fewer tillers and relatively large stalks (e.g. Q201~D).
机译:受控的交通量(匹配的行距和行距)正在成为澳大利亚制糖业生产系统的重要组成部分。但是,由于收割机和牵引轮的间距在1.8-1.9 m之间,因此在传统的1.5 m的甘蔗行距下无法控制交通。解决该问题的最简单方法是更改​​行间距以匹配车轮间距。但是,关于在1.5 m系统下选择的当前品种如何在较宽的行数下表现如何的信息很少。在昆士兰州北部的戈登维尔建立了一个初始实验,以评估四种具有不同生长特性的品种(Q187〜D,Q200〜D,Q201〜D,Q218)对1.5 m单行,1.8 m单行和双行(500)的响应mm(双打之间)和2.3 m双排(双打之间800 mm)。 Q201〜D在1.8 m双行上产生了显着的品种和品种×行距响应,总的最高甘蔗产量(151 t / ha)和糖产量(23.65 t / ha)。结果表明,改变交通控制系统(行宽大于1.5 m)的成功将取决于可用的合适品种。建议为更宽的行选择合适的品种将取决于对作物生理的更好理解,并由此确定所需的基本特征。显然,目前对此知之甚少。此外,该实验表明,与生长较慢,分till较少且茎秆较大的品种(例如Q201〜D)相比,快速生长,强分strongly的品种(例如Q200〜D)不一定是获得最大产量的途径。 )。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号