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Allocation to clonal growth: Critical questions and protocols to answer them

机译:克隆增长的分配:回答他们的关键问题和协议

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For clonal plants, spatial spread within a site is primarily determined by production of new ramets, which suggests that allocation to this function is a key component of the population and community dynamics of clonal plant species. However, surprisingly few studies, either theoretical or empirical, quantify the amount of resources that is or should be allocated to new daughters. Instead, the focus of clonal plant research has been on two unique features of clonal growth: architecture of new ramet deployment and the degree of physiological integration among ramets. We argue that more attention should be paid to resource allocation to new ramets as an important clonal trait and present an operational definition of allocation to clonal growth on a ramet level. Specifically, we propose that clonal allocation be measured as the biomass of a new spacer from its point of origin on an old stem/node plus biomass of a new aphotosynthetic stem arising from the terminal node of the new spacer. Using this definition, we develop a set of important questions that future studies in clonal allocation should address. We then describe protocols to answer these questions and a developing international network to collect data using these protocols.
机译:对于克隆植物来说,部位内的空间涂抹主要通过生产新的振动来确定,这表明对该功能的分配是克隆植物物种的人口和社区动态的关键组成部分。然而,令人惊讶的是,几乎没有理论或经验,量化的资源量或应该被分配给新女儿。相反,克隆植物研究的重点是克隆增长的两个独特特征:新的射击部署和哈姆斯之间的生理整合程度。我们认为,应更多地关注新漫游作为一个重要的克隆性特征,并呈现分配到克隆水平的克隆增长的操作定义。具体地,我们提出从旧茎/节点加上从新间隔件的终端节点引起的新茎/节点加上的新茎/节点加上生物质的原产地测量克隆分配作为新的间隔物的生物量。使用此定义,我们开发了一系列重要的问题,即克隆分配应该解决的未来研究。然后,我们描述协议以回答这些问题和开发的国际网络以使用这些协议来收集数据。

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