Wyss Institute for Biologically Inspired Engineering, Harvard University, Cambridge, MA 02138, USA
School of Engineering and Applied Sciences, Harvard University, Cambridge, MA 02138, USA.
J Exp Biol. 2019 Oct 21;222(Pt 20):jeb212274. doi: 10.1242/jeb.212274.
and are two morphologically similar termite species occupying the same habitat across southern Africa. Both build large mounds and tend mutualistic fungal symbionts for nutrients, but despite these behavioural and physiological similarities, the mound superstructures they create differ markedly. The behavioural differences behind this discrepancy remain elusive, and are the subject of ongoing investigations. Here, we show that the two species demonstrate distinctive building activity in a laboratory-controlled environment consisting of still air with low ambient humidity. In these conditions, transports less soil from a central reservoir, deposits this soil over a smaller area, and creates structures with a smaller volumetric envelope than In high humidity, no such systematic difference is observed. This result suggests a differential behavioural threshold or sensitivity to airborne moisture that may relate to the distinct macro-scale structures observed in the African bushland.
和 是两种形态上相似的白蚁物种,它们在整个南非的同一栖息地栖息。它们都建造大型蚁丘,并倾向于互惠共生真菌共生体以获取营养,但尽管它们具有这些行为和生理上的相似性,它们所建造的蚁丘结构却有明显的不同。造成这种差异的行为差异仍然难以捉摸,这是正在进行的研究的主题。在这里,我们表明,这两个物种在一个由静止空气和低环境湿度组成的实验室控制环境中表现出不同的建筑活动。在这些条件下, 从中央水库中运输的土壤较少,将这些土壤沉积在较小的区域,并构建出比 具有更小体积包络的结构。在高湿度下,没有观察到这种系统差异。这一结果表明存在对空气传播水分的差异行为阈值或敏感性,这可能与在非洲丛林中观察到的不同宏观结构有关。