Department of Plant Biology, University of Pécs, Pécs, Hungary.
Research Institute for Viticulture and Oenology, University of Pécs, Pécs, Hungary.
Sci Rep. 2019 Feb 4;9(1):1259. doi: 10.1038/s41598-018-38053-w.
Direct and indirect roles of vitamin B in leaf acclimation to supplementary UV-B radiation are shown in vitamin B deficient Arabidopsis thaliana mutant rsr4-1 and C24 wild type. Responses to 4 days of 3.9 kJ m d biologically effective UV-B dose were compared in terms of leaf photochemistry, vitamer content, and antioxidant enzyme activities; complemented with a comprehensive study of vitamer ROS scavenging capacities. Under UV-B, rsr4-1 leaves lost more (34%) photochemical yield than C24 plants (24%). In the absence of UV-B, rsr4-1 leaves contained markedly less pyridoxal-5'-phosphate (PLP) than C24 ones, but levels increased up to the C24 contents in response to UV-B. Activities of class-III ascorbate and glutathione peroxidases increased in C24 leaves upon the UV-B treatment but not in the rsr4-1 mutant. SOD activities remained the same in C24 but decreased by more than 50% in rsr4-1 under UV-B. Although PLP was shown to be an excellent antioxidant in vitro, our results suggest that the UV-B protective role of B vitamers is realized indirectly, via supporting peroxidase defence rather than by direct ROS scavenging. We hypothesize that the two defence pathways are linked through the PLP-dependent biosynthesis of cystein and heme, affecting peroxidases.
在缺乏维生素 B 的拟南芥突变体 rsr4-1 和 C24 野生型中,显示了维生素 B 在叶片对补充 UV-B 辐射的适应中的直接和间接作用。比较了 4 天 3.9 kJ m d 生物有效 UV-B 剂量处理后叶片光化学、维生素含量和抗氧化酶活性的响应;并用维生素含量的 ROS 清除能力进行了综合研究。在 UV-B 下,rsr4-1 叶片的光化学产量损失比 C24 植物多(34%)。在没有 UV-B 的情况下,rsr4-1 叶片中的吡哆醛-5'-磷酸(PLP)含量明显低于 C24 叶片,但在 UV-B 下,其含量增加到 C24 含量。在 UV-B 处理后,C24 叶片中 III 类抗坏血酸和谷胱甘肽过氧化物酶的活性增加,但 rsr4-1 突变体中没有增加。C24 中的 SOD 活性保持不变,但在 UV-B 下,rsr4-1 中的活性下降了 50%以上。尽管 PLP 在体外被证明是一种很好的抗氧化剂,但我们的结果表明,B 族维生素的 UV-B 保护作用是间接实现的,通过支持过氧化物酶防御而不是直接清除 ROS。我们假设这两种防御途径通过依赖于 PLP 的半胱氨酸和血红素生物合成相关联,影响过氧化物酶。