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A novel blue-light phototropic response is revealed in roots of Arabidopsis thaliana in microgravity

机译:微重力作用下拟南芥根系中揭示了一种新型的蓝光向光反应

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摘要

>Main conclusion Blue-light positive phototropism in roots is masked by gravity and revealed in conditions of microgravity. In addition, the magnitude of red-light positive phototropic curvature is correlated to the magnitude of gravity.Due to their sessile nature, plants utilize environmental cues to grow and respond to their surroundings. Two of these cues, light and gravity, play a substantial role in plant orientation and directed growth movements (tropisms). However, very little is currently known about the interaction between light- (phototropic) and gravity (gravitropic)-mediated growth responses. Utilizing the European Modular Cultivation System on board the International Space Station, we investigated the interaction between phototropic and gravitropic responses in three Arabidopsis thaliana genotypes, Landsberg wild type, as well as mutants of phytochrome A and phytochrome B. Onboard centrifuges were used to create a fractional gravity gradient ranging from reduced gravity up to 1g. A novel positive blue-light phototropic response of roots was observed during conditions of microgravity, and this response was attenuated at 0.1g. In addition, a red-light pretreatment of plants enhanced the magnitude of positive phototropic curvature of roots in response to blue illumination. In addition, a positive phototropic response of roots was observed when exposed to red light, and a decrease in response was gradual and correlated with the increase in gravity. The positive red-light phototropic curvature of hypocotyls when exposed to red light was also confirmed. Both red-light and blue-light phototropic responses were also shown to be affected by directional light intensity. To our knowledge, this is the first characterization of a positive blue-light phototropic response in Arabidopsis roots, as well as the first description of the relationship between these phototropic responses in fractional or reduced gravities.
机译:>主要结论根部的蓝光正向光性在重力作用下被掩盖,并在微重力作用下显现出来。此外,红光的正向光性曲率的大小与引力的大小有关。由于植物的固着性,它们利用环境线索来生长并响应周围环境。光线和重力这两个线索在植物定向和定向生长运动(向性)中起着重要作用。但是,目前对光(光致)和重力(重力)介导的生长反应之间的相互作用了解甚少。利用国际空间站上的欧洲模块化栽培系统,我们研究了三种拟南芥基因型,兰兹伯格野生型以及植物色素A和植物色素B的突变体的光敏和重力反应之间的相互作用。使用机载离心机创建了分数重力梯度范围从减小的重力到1g。在微重力条件下,观察到了根部的一种新颖的正蓝光向光反应,该反应在0.1g时减弱。另外,植物的红光预处理响应于蓝色光照而增强了根的正向光性曲率的大小。另外,当暴露于红光时,观察到根的正性光致反应,并且响应的降低是逐渐的并且与重力的增加相关。还证实了当暴露于红光时,胚轴的正红光的光变曲率。还表明红光和蓝光的光致反应均受定向光强度的影响。据我们所知,这是拟南芥根中正蓝光光致反应的第一个特征,也是在重力或分数重力下这些光致反应之间关系的第一个描述。

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