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静磁场通过生长素信号调节拟南芥根的生长。

Static magnetic field regulates Arabidopsis root growth via auxin signaling.

机构信息

Shanghai Key Laboratory of Plant Molecular Sciences, College of Life Sciences, Shanghai Normal University, Shanghai, 200234, China.

Institute of Plant Physiology and Ecology, Chinese Academy of Sciences, Shanghai, 200032, China.

出版信息

Sci Rep. 2019 Oct 7;9(1):14384. doi: 10.1038/s41598-019-50970-y.

Abstract

Static magnetic field (SMF) plays important roles in biological processes of many living organisms. In plants, however, biological significance of SMF and molecular mechanisms underlying SMF action remain largely unknown. To address these questions, we treated Arabidopsis young seedlings with different SMF intensities and directions. Magnetic direction from the north to south pole was adjusted in parallel (N0) with, opposite (N180) and perpendicular to the gravity vector. We discovered that root growth is significantly inhanced by 600 mT treatments except for N180, but not by any 300 mT treatments. N0 treatments lead to more active cell division of the meristem, and higher auxin content that is regulated by coordinated expression of PIN3 and AUX1 in root tips. Consistently, N0-promoted root growth disappears in pin3 and aux1 mutants. Transcriptomic and gene ontology analyses revealed that in roots 85% of the total genes significantly down-regulated by N0 compared to untreatment are enriched in plastid biological processes, such as metabolism and chloroplast development. Lastly, no difference in root length is observed between N0-treated and untreated roots of the double cryptochrome mutant cry1 cry2. Taken together, our data suggest that SMF-regulated root growth is mediated by CRY and auxin signaling pathways in Arabidopsis.

摘要

静磁场(SMF)在许多生物的生命过程中起着重要的作用。然而,在植物中,SMF 的生物学意义和 SMF 作用的分子机制在很大程度上尚不清楚。为了解决这些问题,我们用不同的 SMF 强度和方向处理了拟南芥幼苗。南北极的磁场方向调整为平行(N0)、相反(N180)和垂直于重力向量。我们发现,600 mT 的处理显著促进了根的生长,但 300 mT 的处理则没有。N0 处理导致根尖分生组织的细胞分裂更加活跃,生长素含量更高,这是由 PIN3 和 AUX1 在根尖的协调表达所调节的。同样,在 pin3 和 aux1 突变体中,N0 促进的根生长消失了。转录组和基因本体分析表明,与未处理相比,N0 处理下 85%的总基因在根中显著下调,这些基因富集在质体的生物过程中,如代谢和叶绿体发育。最后,在双隐花色素突变体 cry1 cry2 的根中,N0 处理和未处理的根的长度没有差异。总之,我们的数据表明,SMF 调节的根生长是由拟南芥中的 CRY 和生长素信号通路介导的。

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