Geomagnetic field impacts on cryptochrome and phytochrome signaling
-
Add time:09/05/2019 Source:sciencedirect.com
The geomagnetic field (GMF) is an environmental element whose instability affects plant growth and development. Despite known plant responses to GMF direction and intensity, the mechanism of magnetoreception in plants is still not known. Magnetic field variations affect many light-dependent plant processes, suggesting that the magnetoreception could require light. The objective of this work was to comprehensively investigate the influence of GMF on Arabidopsis thaliana (Col-0) photoreceptor signaling. Wild-type Arabidopsis seedlings and photoreceptor-deficient mutants (cry1cry2, phot1, phyA and phyAphyB) were exposed to near null magnetic field (NNMF, ≤40 nT) and GMF (~43 μT) under darkness and different light wavelengths. The GMF did not alter skotomorphogenic or photomorphogenic seedling development but had a significant impact on gene expression pathways downstream of cryptochrome and phytochrome photoactivation. GMF-induced changes in gene expression observed under blue light were partially associated with an alteration of cryptochrome activation. GMF impacts on phytochrome-regulated gene expression could be attributed to alterations in phytochrome protein abundance that were also dependent on the presence of cry1, cry2 and phot1. Moreover, the GMF was found to impact photomorphogenic-promoting gene expression in etiolated seedlings, indicating the existence of a light-independent magnetoreception mechanism. In conclusion, our data shows that magnetoreception alters photoreceptor signaling in Arabidopsis, but it does not necessarily depend on light.
We also recommend Trading Suppliers and Manufacturers of phyB phytochrome (cas 136250-22-1). Pls Click Website Link as below: cas 136250-22-1 suppliers
Prev:Research ArticleRed-Light-Dependent Interaction of phyB with SPA1 Promotes COP1–SPA1 Dissociation and Photomorphogenic Development in Arabidopsis
Next:ArticleShade Promotes Phototropism through Phytochrome B-Controlled Auxin Production) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- SpotlightPhytochromes: More Than Meets the Eye09/07/2019
- ArticleShade Promotes Phototropism through Phytochrome B-Controlled Auxin Production09/06/2019
- Research ArticleRed-Light-Dependent Interaction of phyB with SPA1 Promotes COP1–SPA1 Dissociation and Photomorphogenic Development in Arabidopsis09/04/2019
- Invited reviewThe impact of the phytochromes on photosynthetic processes09/03/2019
- SPATULA regulates floral transition and photomorphogenesis in a PHYTOCHROME B-dependent manner in Arabidopsis09/02/2019
- Research ArticlePhytochrome B and AGB1 Coordinately Regulate Photomorphogenesis by Antagonistically Modulating PIF3 Stability in Arabidopsis09/01/2019
- Research ArticleCONSTANS-LIKE 7 (COL7) Is Involved in Phytochrome B (phyB)-Mediated Light-Quality Regulation of Auxin Homeostasis08/31/2019
- Research articleThe role of phytochromes in Nicotiana tabacum against Chilli veinal mottle virus08/30/2019
- Research articleCharacterization of phytochrome C functions in the control of de-etiolation and agronomic traits in rice08/29/2019


