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INTRA-FIELD VARIATION OF COMMERCIAL CANE SUGAR (CCS) VALUES

机译:商业甘蔗糖(CCS)值的场内变化

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Significant intra-field variation in ccs frequently occurs, but has not been explained to date or well accepted by Australian canegrowers. This often results in difficult public relations exercises for factory personnel. A study of Q141 and Q145 in adjoining fields in the Maryborough area from 1992 to 1994 showed ccs in commercial rakes of cane varied by up to 2.1 units in Q145, and by 1.1 units in Q141. Higher variation, up to 6.57 units in Q145 and 3.03 units in Q141, was measured for six stalk samples from a 50x50 m intra-field sampling grid.rnUp to 82% of variation in ccs between Q145 sites was explained by negative effects of gravel between 25 and 50 cm deep in the soil, high leaf nitrogen and calcium to magnesium ratios in leaves, and positive effects of a greater root zone depth. CCS of Q141 was not affected similarly by these variables, but there was less variation in soil and leaf data in the Q141 section of the study area. Low ccs within Q145 was attributed to lower stalk dry matter, as well as lower sucrose % in the dry matter. The dry matter data, and the significance of soil physical parameters, suggest that water stress may have restricted photosynthesis and sugar production in the dry years of study.
机译:cc的场内差异经常发生,但是至今尚未得到解释,也没有被澳大利亚的菜农充分接受。这通常导致工厂人员难以进行公共关系练习。对1992年至1994年马里伯勒地区附近地区的Q141和Q145的一项研究表明,商业性甘蔗耙中的cc在Q145中变化高达2.1个单位,在Q141中变化了1.1个单位。对于来自50x50 m场内采样网格的六个茎样品,测得较高的变化,在Q145中达到6.57单位,在Q141中达到3.03单位。rn Q145站点之间的ccs差异高达82%是由砾石之间的砾石的负面影响解释的在土壤中深25到50厘米处,叶片中的氮和钙镁比很高,并且对更大的根区深度有积极作用。 Q141的CCS不受这些变量的影响类似,但研究区Q141区域的土壤和叶片数据变化较小。 Q145内的低ccs归因于茎干物质减少,以及干物质中蔗糖%降低。干物质数据以及土壤物理参数的意义表明,在干旱的研究年份中,水分胁迫可能会限制光合作用和制糖。

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