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Avoidance response, house response, and wind responses of the sporangiophore of Phycomyces.毛霉目真菌孢子囊梗的回避反应、向家反应和风反应。
J Gen Physiol. 1975 Jul;66(1):67-95. doi: 10.1085/jgp.66.1.67.
2
Avoidance of Phycomyces in a controlled environment.在可控环境中避免毛霉。
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Avoidance and rheotropic responses in phycomyces. Evidence for an 'avoidance gas" mechanism.根霉中的回避与趋流反应。“回避气体”机制的证据。
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Phycomyces: detailed analysis of the anemogeotropic response.毛霉:向风性反应的详细分析
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Tropic responses of Phycomyces sporangiophores to gravitational and centrifugal stimuli.毛霉目孢囊梗对重力和离心刺激的向性反应。
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Helical growth during the phototropic response, avoidance response, and in stiff mutants of Phycomyces blakesleeanus.在 Phycomyces blakesleeanus 的向光性反应、回避反应和刚性突变体中螺旋生长。
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Phycomyces: An Increase in Mechanical Extensibility during the Avoidance Growth Response.藻菌纲:在回避生长反应过程中机械延伸性的增加。
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Evidence for gas-induced orientation in the cellular slime molds.细胞黏菌中气体诱导定向的证据。
Dev Biol. 1962 Oct;5:344-61. doi: 10.1016/0012-1606(62)90018-0.
2
On the mutual polarization of nearby pairs of fucaceous eggs.论墨角藻属卵的相邻配对间的相互极化作用
Dev Biol. 1969 Jun;19(6):549-65. doi: 10.1016/0012-1606(69)90037-2.
3
Analyzing the "group effect": rheotropic responses of developing fucus eggs.分析“群体效应”:发育中墨角藻卵的向流变应。
Protoplasma. 1968;65(1):25-35. doi: 10.1007/BF01666369.
4
Phycomyces sporangiophores: fungal stretch receptors.
Science. 1967 Jun 9;156(3780):1386-8. doi: 10.1126/science.156.3780.1386.
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The avoidance response in Phycomyces.毛霉中的回避反应。
J Gen Physiol. 1971 Jan;57(1):41-9. doi: 10.1085/jgp.57.1.41.
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Phycomyces.毛霉
Bacteriol Rev. 1969 Mar;33(1):99-157. doi: 10.1128/br.33.1.99-157.1969.
7
The light growth response of Phycomyces.毛霉的光生长反应。
J Gen Physiol. 1973 Nov;62(5):590-617. doi: 10.1085/jgp.62.5.590.

毛霉目真菌孢子囊梗的回避反应、向家反应和风反应。

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

作者信息

Cohen R J, Jan Y N, Matricon J, Delbrück M

出版信息

J Gen Physiol. 1975 Jul;66(1):67-95. doi: 10.1085/jgp.66.1.67.

DOI:10.1085/jgp.66.1.67
PMID:1159403
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2226190/
Abstract

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.

摘要

回避反应

将一个物体放置在距离毛霉属孢子囊梗生长区1毫米处,会引发一种远离该物体的向性反应。描述了这种反应对物体大小及其与标本距离的依赖性,以及排除电场、电磁辐射、温度和湿度作为回避介导信号的测量方法。这种反应与物体的组成和表面特性以及环境光无关。罩屋反应:将直径为0.5至10厘米的罩屋罩在孢子囊梗上会引发短暂的生长反应。封闭罩屋内的回避反应略小于露天环境中的反应。风反应:横向风会引发一种向风的向性反应,随风速增加而增强。纵向风,无论向上还是向下,都会对风速的突然增加引发短暂的负生长反应,反之亦然。有人提出,上述所有效应都涉及风感测。障碍物和罩屋对随机风的空气动力学效应测量结果支持了这一观点。根据生长区会释放一种气体(不是水或空气的任何正常成分)的假设来讨论风感测,这种气体的浓度会因风而改变,并由化学传感器监测。该模型对气体的物理性质提出了严格限制。