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Spatial division of labour of Schoenoplectus americanus

机译:美国学派的空间分工

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If connected ramets are growing in heterogeneous environments, Division of Labour (DoL) among ramets potentially will result in more efficient sharing of resources and an overall benefit to the plants. As a result of DoL, connected ramets growing in a heterogeneous environment might achieve more biomass than ramets growing in a homogeneous environment. DoL has been demonstrated to occur in a few clonal plant species, although most studies simply focussed on biomass allocation, not on actual resource capturing such as water and nutrient consumption. The model system for our study is one in which two connected ramet groups of Schoenoplectus americanus were placed into contrasting environments. In one treatment, the connected ramets grew in heterogeneous environments and in the other treatment, the connected ramets grew in the same (i.e. homogeneous) environment. We manipulated two variables (light and salinity) in the experiment. We hypothesized that ramets growing in a shaded and fresh water condition in a heterogeneous environment would use more water than ramets growing in a similar condition but in a homogeneous environment. We further hypothesized that ramets growing in a light and saline condition in a heterogeneous environment would assimilate less water than ramets growing in a similar condition but in a homogeneous environment. These hypotheses are based on the assumption that ramets in a heterogeneous environment would translocate water from ramets growing in a shaded and fresh water condition to ramets growing in a light and saline water condition. We also hypothesized that ramets growing in heterogeneous environments achieve larger biomass than ramets in homogeneous environments. Ramets grown in light and saline conditions in heterogeneous environments allocated more biomass to aboveground parts, had taller shoots, larger Specific Green (leaf) Area and consumed less water than ramets grown in similar conditions but in a homogeneous environment. Results confirm the hypothesis that connected ramets in heterogeneous environments are specialised to capture locally abundant resources and share these with connected ramets growing in other habitats. The result of DoL is that the entire connected ramet system benefits and achieves higher biomass.
机译:如果连接的分株在异类环境中增长,分株之间的分工(DoL)可能会导致资源的更有效共享和工厂的整体利益。作为DoL的结果,在异构环境中生长的连接分株可能比在均质环境中生长的分株获得更多的生物量。已经证明DoL发生在少数克隆植物物种中,尽管大多数研究只是集中在生物量分配上,而不是在诸如水和养分消耗的实际资源获取上。我们研究的模型系统是将两个相互联系的美洲分枝杆菌组置于相对的环境中的模型系统。在一种处理中,连接的分株在异质环境中生长,而在另一种处理中,连接的分株在相同(即均质)环境中生长。我们在实验中操纵了两个变量(轻度和盐度)。我们假设,在异质环境中在阴凉和淡水条件下生长的分株会比在相似条件但均质环境中生长的分株要消耗更多的水。我们进一步假设,与在相似条件但均质环境中生长的分株相比,在轻度和盐分条件下在异质环境中生长的分株将吸收更少的水。这些假设基于以下假设:异构环境中的分株会将水从在阴影和淡水条件下生长的分株转移到在轻水和盐水条件下生长的分株。我们还假设,在异构环境中生长的分株比在均质环境中的分株能获得更大的生物量。与在相似条件但均质环境中生长的分株相比,在异质环境中的光照和盐分条件下生长的分株将更多的生物量分配到地上部分,具有更高的枝条,更大的特定绿叶面积和更少的水消耗。结果证实了以下假设:异质环境中的连体分株专门用于捕获本地丰富的资源,并与在其他栖息地生长的连体分株共享这些资源。 DoL的结果是整个连接的Ramet系统受益并获得更高的生物量。

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