首页> 外文会议>Conference of the Australian society of sugar cane technologists >Investigations into the Root:Shoot Relationship of Sugarcane, and Some Implications for Crop Productivity in the Presence of Sub-Optimal Soil Conditions
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Investigations into the Root:Shoot Relationship of Sugarcane, and Some Implications for Crop Productivity in the Presence of Sub-Optimal Soil Conditions

机译:欠佳土壤条件下甘蔗根系与芽系关系的研究及对作物生产力的一些启示

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The relationship between root and shoot growth of sugarcane was studied under non-limiting conditions, and also using experimental treatments that reduced the growth and effectiveness of the root system. A simple generic relationship was seen between the pattern of above and below ground growth under favourable conditions, with the root:shoot ratio of all varieties declining through ontogeny. when root pruning or defoliation treatments were imposed to alter this relationship, there was a change in the relative growth of the roots and shoot towards the re-establishment of the original trend in root:shoot ratio development. A similar response was seen when half the root-zone was allowed to dry down, with an increase n root growth relative to shoot growth suggesting a re-establishment of the equilibrium between the root system and shoot. The apparently conservative nature of the root:shoot relationship was further demonstrated by the growth response of sugarcane plants to restricted rooting volume. In this study, physically limiting root growth significantly reduced total plant weights, but did not inffluence biomass partitioning between the roots and shoot. These findings are consistent with existing models of root:shoot relations, and suggest that shoot growth is directly related to the functional capacity of the root system.
机译:在非限制性条件下研究了甘蔗的根与茎生长之间的关系,并且还使用了减少根系生长和有效性的实验方法。在有利条件下,地上和地下生长模式之间存在简单的一般关系,所有品种的根:茎比都随着个体发育而下降。当进行根部修剪或脱叶处理以改变这种关系时,根部的相对生长发生了变化,并朝着重新建立根部:茎部比率发展的原始趋势发展。当允许一半的根部区域变干时,可以看到类似的响应,相对于枝条生长,n根生长增加,表明根系和枝条之间的平衡重新建立。甘蔗植物对有限的生根量的生长反应进一步证明了根:枝关系的明显保守性。在这项研究中,物理限制根部生长显着降低了植物的总重量,但并未影响根部和枝条之间的生物量分配。这些发现与现有的root:shoot关系模型一致,并表明枝条的生长与根系的功能能力直接相关。

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