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Avoidance response, house response, and wind responses of the sporangiophore of Phycomyces

机译:孢子菌孢子体的回避反应,室内反应和风反应

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摘要

Avoidance response: An object placed 1 mm from the growing zone of a Phycomyces sporangiophore elicits a tropic response away from the object. The dependence of this response on the size of the object and its distance from the specimen is described, as well as measurements which exclude electric fields, electromagnetic radiation, temperature, and humidity as avoidance-mediating signals. This response is independent of the composition and surface properties of the object and of ambient light. House Response: A house of 0.5- to 10-cm diameter put over a sporangiophore elicits a transient growth response. Avoidance responses inside closed houses are slightly smaller than those in the open. Wind responses: A transverse wind elicits a tropic response into the wind, increasing with wind speed. A longitudinal wind, up or down, elicits a transient negative growth response to a step-up in wind speed, and vice versa. It is proposed that all of the effects listed involve wind sensing. This proposal is supported by measurements of aerodynamic effects of barriers and houses on random winds. The wind sensing is discussed in terms of the hypothesis that a gas is emitted by the growing zone (not water or any normal constituent of air), the concentration of which is modified by the winds and monitored by a chemical sensor. This model puts severe constraints on the physical properties of the gas.
机译:回避反应:距孢子菌孢子生长区1 mm处的物体会引起远离该物体的向性反应。描述了该响应对物体尺寸及其与样品的距离的依赖性,以及不包括电场,电磁辐射,温度和湿度作为避免介导信号的测量。该响应与物体以及环境光的成分和表面特性无关。房屋反应:放置在孢子体上的直径为0.5到10厘米的房屋引发瞬时生长反应。封闭式房屋内的回避反应比开放式房屋小。风响应:横向风对风产生热带响应,并随风速增加。纵向风(向上或向下)引起对风速增加的瞬时负增长响应,反之亦然。建议列出的所有影响都涉及风感。通过对障碍物和房屋在随机风中的空气动力学影响进行测量,可以支持该建议。根据以下假设讨论了风速检测的假设:生长区释放出气体(不是水或空气的任何正常成分),其浓度会随风而改变并由化学传感器监控。该模型对气体的物理性质施加了严格的约束。

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