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The effect of load length, width and mass on transport rate in the grass-cutting ant Atta vollenweideri

机译:负载长度,宽度和质量对草蚂蚁Atta vollenweideri转运速率的影响

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摘要

In the present study we investigated the economics of load transport in the grass-cutting ant Atta vollenweideri by focusing on the effects of load mass, width and length on individual transport rates. Both running speed of foragers and the amount of material transported a given distance per unit time, i.e. gross material transport rate, were evaluated in both field and laboratory colonies. In order to separate the effects of load mass, load length and width on transport rate, workers were presented with paper fragments which differed twofold either in length, width or mass, but not in the other parameters. When controlling for fragment mass, both running speed of foragers and gross material transport rate were observed to be higher when they carried short fragments: A twofold increase in fragment length had a marked negative effect on manoeuvrability during transport and, as a consequence, on material transport rate. In contrast, if fragment mass was doubled and length maintained, running speed differed according to the mass of the loads, with heavier fragments being transported at the slower pace. For the sizes tested, heavy fragments yielded a higher transport rate in spite of the slower speed of transport, as they did not slow down foragers so much that it counterbalanced the positive effects of fragment mass on material transport rate. Doubling the width of the fragments without changing their mass had no influence on running speed and transport rate. When presented with a choice of dropped fragments differing in the size variables mentioned above, workers discriminated among fragments of different size and preferred shorter fragments, thus rejecting loads that are associated with higher travel times and lower material transport rates. It is argued that, based on the energetics of cutting, workers might maximize their individual harvesting rate by cutting long grass fragments, since the longer a grass fragment, the larger the amount of material harvested per unit cutting effort. Our results indicate, however, that larger loads negatively affect transport rates. The sizes of the fragments cut by grass-cutting ants under natural conditions may represent the outcome of an evolutionary trade-off between maximizing harvesting rate at the cutting site and minimizing the effects of fragment size on material transport rates.
机译:在本研究中,我们通过重点研究负载质量,宽度和长度对单个运输速率的影响,研究了割草蚁Atta vollenweideri中的运输效率。在野外和实验室菌落中均评估了觅食器的运转速度和单位时间内给定距离的物料运输量,即物料总运输速率。为了区分负载质量,负载长度和宽度对运输速度的影响,向工作人员展示了纸张碎片,这些纸张碎片的长度,宽度或质量不同,但其他参数没有差异。在控制碎片质量时,观察到当它们携带短碎片时,觅食者的运行速度和总物料运输速率都更高:碎片长度的两倍增加对运输过程中的可操纵性产生了明显的负面影响,因此对物料运输速度。相反,如果碎片质量增加一倍并保持长度,则运行速度将根据负载质量而有所不同,较重的碎片将以较慢的速度运输。对于测试的尺寸,尽管运输速度较慢,重碎片仍会产生较高的运输速度,因为它们不会使觅食者的速度减慢到足以抵消碎片质量对物料运输速度的积极影响。将片段的宽度加倍而不改变其质量不会影响运行速度和传输速率。当呈现出上述尺寸变量不同的下落碎片的选择时,工人会区分大小不同的碎片和首选较短的碎片,从而拒绝了与较高的行进时间和较低的物料运输速率相关的负荷。有人认为,基于切割的能量,工人可能会通过切割长的草屑来最大化自己的收获率,因为草屑越长,单位切割工作所收获的材料量就越大。但是,我们的结果表明,较大的负载会对运输速度产生负面影响。在自然条件下被割草蚁切割的碎片的大小可能代表了在最大程度地提高切割地点的收获率与最小化碎片大小对物料运输速度的影响之间进行权衡的结果。

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