首页> 外文会议>Conference of the Australian Society of Sugar Cane Technologists >PLANT EXTENSION, SOIL WATER EXTRACTION AND WATER STRESS IN SUGARCANE
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PLANT EXTENSION, SOIL WATER EXTRACTION AND WATER STRESS IN SUGARCANE

机译:甘蔗植物延伸,土壤水萃取和水分胁迫

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Stalk growth rate has been used extensively in the sugar industry as a stress index for the irrigation of sugarcane. Automatic soil water monitoring has recently become available in the sugar industry and some growers and extension staff are now usingthis information as well as stalk extension measurements to schedule irrigation. In many regions of the sugar industry, irrigation is insufficient to meet crop water requirements and yield loss inevitably occurs before growers can irrigate. There is a need to assist growers and extension staff to interpret both soil water and plant extension measurements in terms of yield loss to avoid using scarce water prematurely and to avoid unnecessary delays in growth recovery after water stress. It was shown that water stress in sugarcane can be detected early by regular automatic measurement of leaf extension, making use of the diurnal extension pattern to minimise confounding effects of temperature on leaf extension. A stress index based on leaf extension rate measured in the early morning and during the day was highly sensitive to changes in soil water content and climatic conditions. Soil water content 400 mm below the stool was correlated most with the stress index. The stress index reached a critical value of 0.5 when 75% to 80% of available water at this depth had been extracted. Total crop fresh biomass was reduced after 5 days of stress beyond the critical level, and dry biomass was reduced after 10 days. These relationships can be used to develop guidelines for irrigation based on automatic soil moisture monitoring.
机译:秸秆增长率已广泛用于糖业作为甘蔗灌溉的应力指数。自动土壤水监测最近在糖业中可用,一些种植者和延伸人员现在正在使用该信息以及茎秆延伸测量来安排灌溉。在糖业的许多地区,灌溉不足以满足作物水要求,并且在种植者灌溉之前不可避免地发生屈服损失。有必要协助种植者和延伸人员在产量损失方面解释土壤水和植物延长测量,以避免过早使用稀缺水,并避免水分应激后生长恢复不必要的延迟。结果表明,通过常规自动测量叶片延伸,可以利用昼夜延伸模式来检测甘蔗中的水胁迫,以最大限度地减少温度对叶片延伸的混淆影响。基于清晨测量的叶延长速率和白天的应力指数对土壤含水量和气候条件的变化非常敏感。粪便下方的土壤含水量为400毫米,压力指数大多数相关。当提取此深度的75%至80%的可用水时,应力指数达到0.5的临界值。在临界水平超过临界水平的胁迫5天后,在临界水平超过临界水平的5天后,减少了总作物新鲜生物质,10天后干燥生物质。这些关系可用于基于自动土壤水分监测制定灌溉指南。

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