首页> 外文OA文献 >‘Fixed-axis’ magnetic orientation by an amphibian: non-shoreward-directed compass orientation, misdirected homing or positioning a magnetite-based map detector in a consistent alignment relative to the magnetic field?
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‘Fixed-axis’ magnetic orientation by an amphibian: non-shoreward-directed compass orientation, misdirected homing or positioning a magnetite-based map detector in a consistent alignment relative to the magnetic field?

机译:两栖动物的“固定轴”磁性方向:非沿岸向的罗盘方向,错误的归位或将基于磁铁矿的地图检测器相对于磁场定位一致?

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摘要

Experiments were carried out to investigate the earlier prediction that prolonged exposure to long-wavelength (>500 nm) light would eliminate homing orientation by male Eastern red-spotted newts Notophthalmus viridescens. As in previous experiments, controls held in outdoor tanks under natural lighting conditions and tested in a visually uniform indoor arena under full-spectrum light were homeward oriented. As predicted, however, newts held under long-wavelength light and tested under either full-spectrum or long-wavelength light (>500 nm) failed to show consistent homeward orientation. The newts also did not orient with respect to the shore directions in the outdoor tanks in which they were held prior to testing. Unexpectedly, however, the newts exhibited bimodal orientation along a more-or-less `fixed' north-northeast—south-southwest magnetic axis. The orientation exhibited by newts tested under full-spectrum light was indistinguishable from that of newts tested under long-wavelength light, although these two wavelength conditions have previously been shown to differentially affect both shoreward compass orientation and homing orientation. To investigate the possibility that the `fixed-axis' response of the newts was mediated by a magnetoreception mechanism involving single-domain particles of magnetite, natural remanent magnetism (NRM) was measured from a subset of the newts. The distribution of NRM alignments with respect to the head—body axis of the newts was indistinguishable from random. Furthermore, there was no consistent relationship between the NRM of individual newts and their directional response in the overall sample. However, under full-spectrum, but not long-wavelength, light, the alignment of the NRM when the newts reached the 20 cm radius criterion circle in the indoor testing arena (estimated by adding the NRM alignment measured from each newt to its magnetic bearing) was non-randomly distributed. These findings are consistent with the earlier suggestion that homing newts use the light-dependent magnetic compass to align a magnetite-based `map detector' when obtaining the precise measurements necessary to derive map information from the magnetic field. However, aligning the putative map detector does not explain the fixed-axis response of newts tested under long-wavelength light. Preliminary evidence suggests that, in the absence of reliable directional information from the magnetic compass (caused by the 90° rotation of the response of the magnetic compass under long-wavelength light), newts may resort to a systematic sampling strategy to identify alignment(s) of the map detector that yields reliable magnetic field measurements.
机译:进行实验以调查较早的预测,即长时间暴露于长波(> 500 nm)光将消除雄性东部红斑new夜蛾(Notophthalmus viridescens)的归巢方向。与以前的实验一样,将控制箱放置在自然光条件下的室外水箱中,并在全光谱光下在视觉上统一的室内区域进行测试。但是,正如预测的那样,new在长波光下保持并在全光谱或长波光(> 500 nm)下进行测试均未显示出一致的向后方向。在测试之前,还没有相对于放置它们的室外水箱的岸上方向进行定向。但是,出乎意料的是,the沿着或多或少的“固定”东北-南-西南磁轴显示出双峰取向。在全光谱光下测试的new的显示方向与在长波长光下测试的new的显示方向没有区别,尽管先前已经证明这两个波长条件对岸罗盘方向和归位方向都有不同的影响。为了研究new的“固定轴”响应是由涉及磁铁矿单畴粒子的磁接收机制介导的可能性的,从一部分new中测量了自然剩磁(NRM)。 NRM相对于the头-体轴的分布并不与随机区分开。此外,在整个样本中,个体new的NRM与它们的定向响应之间没有一致的关系。但是,在全光谱而不是长波长的光下,当室内环境中的new到达20 cm半径标准圆时,NRM的排列(通过将每个new测量的NRM排列添加到其磁轴承中来估算) )是非随机分布的。这些发现与较早的建议相一致,即当从磁场中获取地图信息所需的精确测量值时,归巢new使用与光有关的磁罗盘来对准基于磁铁矿的“地图检测器”。但是,对齐推定地图检测器不能解释在长波长光下测试的new的固定轴响应。初步证据表明,在没有来自磁罗盘的可靠方向信息的情况下(由于在长波长光下磁罗盘的响应旋转了90°所致),new可能会采取系统的采样策略来识别对准情况。产生可靠的磁场测量结果的地图探测器)。

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