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原丝体的向光性和向极性:拟南芥突变体的响应。

Phototropism and polarotropism of primary chloronemata of the moss Physcomitrella patens: responses of mutant strains.

机构信息

Department of Genetics, University of Leeds, LS2 9JT, Leeds, UK.

出版信息

Planta. 1983 Nov;159(5):432-8. doi: 10.1007/BF00392079.

Abstract

The phototropic and polarotropic responses of primary chloronemata grown from germinated minated spores of three mutant strains of the moss, Physcomitrella patens, have been studied and compared with those of the wild-type. The mutants and wild-type show the same qualitative tropic responses but differ with respect to the light conditions under which they are expressed. In both the wild-type and mutants the responses are controlled by phytochrome. In monochromatic red light, at low fluence rates, wild-type primary chloronemata grow positively phototropically in unidirectional light or perpendicular to the electrical vector (E) in polarised light; at high fluence rates growth in unidirectional light is lateral to the incident light or, in polarised light, parallel to E. The mutants, however, show only the lateral phototropic or parallel polarotropic responses at all fluence rates of red light tested. In far-red light, the wild-type primary chloronemata adopt a positive phototropic or a perpendicular polarotropic response; the mutants show the same responses but in a lower percentage of filaments. These results and those at other wavelengths indicate either that the mutants are impaired in their ability to adopt the positive phototropic and perpendicular polarotropic responses or that in the mutants the transition between the "low light" (positive phototropic-perpendicular polarotropic) and the "high light" (lateral phototropic-parallel polarotropic) responses is shifted to a lower photon fluence rate. Possible explanations of this phenotypic difference are discussed.

摘要

已研究并比较了从藓类植物Physcomitrella patens 的三个突变株的萌发孢子中生长的初生绿藻的向光性和向极性反应,并将其与野生型进行了比较。突变体和野生型表现出相同的定性向性反应,但在表达它们的光照条件下有所不同。在野生型和突变体中,反应均受光敏色素控制。在单色红光下,在低辐照度下,野生型初生绿藻在单向光或偏光中的电矢量(E)垂直方向上正向光性生长;在高辐照度下,单向光中的生长与入射光侧向或在偏光中与 E 平行。然而,在所有测试的红光辐照度下,突变体仅显示侧向光性或平行向极性反应。在远红光下,野生型初生绿藻表现出正向光性或垂直向极性反应;突变体表现出相同的反应,但在较低比例的丝中表现出相同的反应。这些结果和其他波长的结果表明,突变体要么在其采用正向光性和垂直向极性反应的能力上受到损害,要么在突变体中,“低光”(正向光性-垂直向极性)和“高光”(侧向光性-平行向极性)反应之间的转变向更低的光子辐照度转移。对这种表型差异的可能解释进行了讨论。

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