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氦氖激光对补充紫外线-B(UV-B)胁迫下拟南芥农艺性状的响应以及UVR8信号通路与光敏色素B信号通路之间的串扰

Responses of He-Ne laser on agronomic traits and the crosstalk between UVR8 signaling and phytochrome B signaling pathway in Arabidopsis thaliana subjected to supplementary ultraviolet-B (UV-B) stress.

作者信息

Gao Limei, Li Yongfeng, Shen Zhihua, Han Rong

机构信息

Modern College of Humanities and Sciences, Shanxi Normal University, Linfen, 041004, China.

College of Life Science, Shanxi Normal University, Linfen, 041004, China.

出版信息

Protoplasma. 2018 May;255(3):761-771. doi: 10.1007/s00709-017-1184-y. Epub 2017 Nov 14.

Abstract

UV-B acclimation effects and UV-B damage repair induced by a 632.8-nm He-Ne laser were investigated in Arabidopsis thaliana plants in response to supplementary UV-B stress. There was an increasing trend in growth parameters in the combination-treated plants with He-Ne laser and UV-B light compared to those stressed with enhanced UV-B light alone during different developmental stages of plants. The photosynthetic efficiency (Pn) and survival rates of seedlings were significantly higher in the combination treatments than UV-B stress alone. The expression of UVR8, phytochrome B (PhyB), and their mediated signal responsive genes such as COP1, HY5, and CHS were also significantly upregulated in plants with the laser irradiation compared with other groups without the laser. Levels of flavonol accumulation in leaves and capsule yield of He-Ne laser-treated plants were increased. The phyB-9 mutants were more sensitive to enhanced UV-B stress and had no obvious improvements in plant phenotypic development and physiological damage caused by enhanced UV-B stress after He-Ne laser irradiation. Our results suggested that UVR8 and its mediated signaling pathway via interaction with COP1 can be induced by He-Ne laser, and these processes were dependent on cytoplasmic PhyB levels in plant cells, which might be one of the most important mechanisms of He-Ne laser on UV-B protection and UV-B damage repair. These current data have also elucidated that the biostimulatory effects of He-Ne laser on Arabidopsis thaliana plants would happen not only during the early growth stage but also during the entire late developmental stage.

摘要

研究了632.8纳米氦氖激光诱导的拟南芥UV-B适应效应和UV-B损伤修复,以应对补充UV-B胁迫。与仅在植物不同发育阶段受到增强UV-B光胁迫的植物相比,氦氖激光和UV-B光联合处理的植物的生长参数呈增加趋势。联合处理下幼苗的光合效率(Pn)和存活率显著高于单独的UV-B胁迫。与未进行激光照射的其他组相比,激光照射的植物中UVR8、光敏色素B(PhyB)及其介导的信号响应基因如COP1、HY5和CHS的表达也显著上调。氦氖激光处理的植物叶片中黄酮醇积累水平和荚果产量增加。phyB-9突变体对增强的UV-B胁迫更敏感,在氦氖激光照射后,由增强的UV-B胁迫引起的植物表型发育和生理损伤没有明显改善。我们的结果表明,氦氖激光可以诱导UVR8及其通过与COP1相互作用介导的信号通路,这些过程依赖于植物细胞中的细胞质PhyB水平,这可能是氦氖激光对UV-B保护和UV-B损伤修复的最重要机制之一。这些现有数据还阐明,氦氖激光对拟南芥植物的生物刺激作用不仅会在早期生长阶段发生,也会在整个后期发育阶段发生。

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