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Effects of weak static magnetic fields on the gene expression of seedlings of Arabidopsis thaliana

隐色素 磁接收 拟南芥 光敏色素 刺激(心理学) 生物 突变体 光形态发生 生物物理学 植物 基因表达 磁场 拟南芥 细胞生物学 基因 地球磁场 遗传学 物理 红灯 生物钟 心理治疗师 量子力学 心理学
作者
Sunil Kumar Dhiman,Paul Galland
出处
期刊:Journal of Plant Physiology [Elsevier BV]
卷期号:231: 9-18 被引量:32
标识
DOI:10.1016/j.jplph.2018.08.016
摘要

Magnetic-field reception of animals and plants is currently discussed in the framework of a cryptochrome-based radical-pair mechanism. Efforts to unravel magnetoreception in plants suffered historically from several shortcomings, most prominently, the conspicuous absence of detailed stimulus-response relationships. To determine the sensitivity of seedlings of Arabidopsis thaliana to weak static magnetic fields we generated stimulus-response curves between near zero and 188 μT for the transcript levels of the genes rbcl, cab4, pal4 and ef1. The moderate magneto-responsiveness of dark-grown seedlings was greatly enhanced under blue light, and for rbcl and pal4 also under red light. The stimulus-response curves obtained under blue light of constant photon-fluence rate displayed multiple maxima and thus a pattern fundamentally different from that prevalent in plant and animal physiology. A double mutant lacking cryptochromes 1 and 2 displayed altered stimulus-response curves without losing, however, magneto-responsiveness completely. A reversal of the magnetic field direction substantially affected the gene expression and the quantity of CAB-protein (chlorophyll a,b-binding protein). The majority of our results are at variance with the notion of cryptochromes acting as the only magnetic-field sensors. They do not, however, exclude the possibility that cryptochromes participate in the magnetic field reception of Arabidopsis. The findings have the unexpected implication that cryptochrome- and phytochrome-mediated plant responses can be modulated by the strength and the orientation of the local geomagnetic field.
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