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常见的同化物库和营养关系是否适合处理观察到的葡萄发育可塑性?

Are the common assimilate pool and trophic relationships appropriate for dealing with the observed plasticity of grapevine development?

机构信息

Montpellier SupAgro, Département Sciences du Végétal, 2 place Viala, F-34060 Montpellier, France.

出版信息

Ann Bot. 2010 Feb;105(2):233-47. doi: 10.1093/aob/mcp278. Epub 2009 Nov 27.

Abstract

BACKGROUND AND AIMS

Models based on the consideration of plant development as the result of source-sink relationships between organs suffer from an inherent lack of quantification of the effect of trophic competition on organ growth processes. The 'common assimilate pool theory' underlying many such models is highly debatable.

METHODS

Six experiments were carried out in a greenhouse and outdoors with two grapevine cultivars and with 12 management systems, resulting in different types of plant architecture. Ten variables were used to quantify the impact of variations in assimilate supply and topological distances between sources and sinks on organogenesis, morphogenesis and biomass growth.

KEY RESULTS

A hierarchy of the responses of these processes to variations in assimilate supply was identified. Organ size seemed to be independent of assimilate supply, whereas both organogenesis and biomass growth were affected by variations in assimilate supply. Lower levels of organ biomass growth in response to the depletion of assimilate supplies seemed to be the principal mechanism underlying the plasticity of plant development in different environments. Defoliation or axis ablation resulted in changes in the relationship between growth processes and assimilate supply, highlighting the influence of non-trophic determinants. The findings cast doubt on the relevance of 'the common assimilate pool theory' for modelling the development of grapevine.

CONCLUSIONS

The results of this study suggest new formalisms for increasing the ability of models to take plant plasticity into account. The combination of an ecophysiological model for morphogenesis taking environmental signals into account and a biomass driven model for organogenesis and biomass allocation taking the topological distances between the sources and the sinks into account appears to be a promising approach. Moreover, in order to simulate the impact of agronomic practices, it will be necessary to take into account the non-trophic determinants of plant development such as hormonal signaletics.

摘要

背景与目的

基于器官源库关系来考虑植物发育的模型存在一个固有缺陷,即无法量化营养竞争对器官生长过程的影响。许多此类模型所基于的“通用同化库理论”存在很大争议。

方法

在温室和户外进行了六项实验,使用了两个葡萄品种和 12 种管理系统,产生了不同类型的植物结构。使用了 10 个变量来量化同化供应变化和源库之间拓扑距离对器官发生、形态发生和生物量生长的影响。

主要结果

确定了这些过程对同化供应变化的反应层次。器官大小似乎独立于同化供应,而器官发生和生物量生长都受到同化供应变化的影响。在同化供应耗尽的情况下,器官生物量生长水平较低,这似乎是不同环境中植物发育可塑性的主要机制。去叶或轴消融导致生长过程与同化供应之间的关系发生变化,突出了非营养决定因素的影响。这些发现对“通用同化库理论”在模拟葡萄发育中的相关性提出了质疑。

结论

本研究结果为提高模型考虑植物可塑性的能力提供了新的形式主义。将形态发生的生态生理学模型与考虑源库之间拓扑距离的器官发生和生物量分配的生物量驱动模型相结合,似乎是一种很有前途的方法。此外,为了模拟农业实践的影响,有必要考虑植物发育的非营养决定因素,如激素信号转导。

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