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Arabidopsis Phytochrome D Is Involved in Red Light-Induced Negative Gravitropism of Hypocotyles
  • 时间:0
  • 分类:S565.4[农业科学—作物学] Q943[生物学—植物学]
  • 作者机构:[1]Institute of Crop Sciences, Chinese Academy of Agricultural Sciences, Beijing 100081, P.R. China, [2]Institute of Nuclear and Biotechnology, Xinjiang Academy of Agricultural Sciences, Urumqi 830091, P.R.China, [3]Graduate School, Chinese Academy of Agricultural Sciences, Beijing 100081, P.R. China
  • 相关基金:We thank Dr. Keara A. Franklin, University of Bristol, for providing the seeds ofphyB, phyD and phyB phyD mutants. This work was financially supported by funds from the Genetically Modified Organisms Breeding Major Projects of China (2011ZX08010-002), the National Natural Science Foundation of China (30871438 and 31170267) and the Natural Science Foundation of Xinjiang, China (2012211 B49).
中文摘要:

The phytochrome gene family, which is in Arabidopsis thaliana, consists of phytochromes A-E(phyA to phyE), regulates plant responses to ambient light environments. PhyA and phyB have been characterized in detail, but studies on phyC to phyE have reported discrepant functions. In this study, we show that phyD regulates the Arabidopsis gravitropic response by inhibiting negative gravitropism of hypocotyls under red light condition. PhyD had only a limited effect on the gravitropic response of roots in red light condition. PhyD also enhanced phyB-regulated gravitropic responses in hypocotyls. Moreover, the regulation of hypocotyl gravitropic responses by phyD was dependent upon the red light fluence rate.

英文摘要:

The phytochrome gene family, which is in Arabidopsis thaliana, consists of phytochromes A-E(phyA to phyE), regulates plant responses to ambient light environments. PhyA and phyB have been characterized in detail, but studies on phyC to phyE have reported discrepant functions. In this study, we show that phyD regulates the Arabidopsis gravitropic response by inhibiting negative gravitropism of hypocotyls under red light condition. PhyD had only a limited effect on the gravitropic response of roots in red light condition. PhyD also enhanced phyB-regulated gravitropic responses in hypocotyls. Moreover, the regulation of hypocotyl gravitropic responses by phyD was dependent upon the red light fluence rate.

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