Department of Biology, P.O. Box 43606, University of Louisiana at Lafayette, Lafayette, LA 70504-3602, USA.
Department of Biology, P.O. Box 43606, University of Louisiana at Lafayette, Lafayette, LA 70504-3602, USA
J Exp Biol. 2018 Dec 17;221(Pt 24):jeb181081. doi: 10.1242/jeb.181081.
Animals employ hair bundles on hair cells to detect flow, vibrations and gravity. Hair bundles on sea anemone tentacles detect nearby vibrations in the water column produced by prey movements and then regulate discharge of cnidae to capture prey. This study investigated: (1) the progressive effects of periodic water flow on hair bundle morphology and density of hair bundles and cnidae in sea anemones, (2) the reversibility of the flow response and (3) the ability of the response to be expedited with increased flow duration. Linear density of hair bundles along tentacles and each hair bundle's dimensions was measured in anemones exposed to flow and in the absence of flow. With increasing numbers of days of flow, hair bundles in anemones exposed to flow for 1 h every weekday for 20 days increased in density and grew longer and wider at bases and middles, whereas controls did not. Time courses fit to a linear function exhibited significantly larger positive slopes from animals exposed to flow compared with controls. Hair bundles in anemones exposed to flow for 3 h each day increased in linear density, length, base width and middle width after 10 days of flow and returned to control levels after 10 days following cessation of flow. In addition, there was a trend for an increase in density of cnidae with flow. Therefore, anemone hair bundles are dynamically and reversibly modified by periodic, moderate flow to become more abundant and robust. These findings may have relevance to hair cells in acoustico-lateralis systems of higher animals.
动物利用毛细胞上的毛束来感知流动、振动和重力。海葵触手上的毛束可以检测到水柱状中靠近的振动,这些振动是由猎物的运动产生的,然后调节刺丝囊的放电以捕获猎物。本研究调查了:(1)周期性水流对海葵毛束形态和毛束密度的渐进影响,(2)水流反应的可逆性,以及(3)通过增加水流持续时间来加速反应的能力。在有或没有水流的情况下,测量暴露于水流中的海葵触须上的毛束线性密度和每个毛束的尺寸。随着暴露于水流天数的增加,暴露于每周工作日每小时 1 小时水流 20 天的海葵中的毛束密度增加,并且在基部和中部变得更长和更宽,而对照组则没有。拟合到线性函数的时间过程显示,与对照组相比,暴露于水流的动物具有显著更大的正斜率。暴露于每天 3 小时水流的海葵中的毛束在 10 天的水流后线性密度、长度、基部宽度和中部宽度增加,并在停止水流后的 10 天内恢复到对照水平。此外,随着水流的增加,刺丝囊的密度也呈现出增加的趋势。因此,周期性、适度的水流可以动态且可逆地改变海葵毛束,使其变得更加丰富和强壮。这些发现可能与高等动物的听觉-侧线系统中的毛细胞有关。