Graduate School of Agricultural Science, Kobe University, Kobe, Hyogo, Japan.
FEBS Lett. 2012 Apr 24;586(8):1208-13. doi: 10.1016/j.febslet.2012.03.013. Epub 2012 Mar 17.
Lipid peroxide-derived reactive carbonyls (RCs) can cause serious damage to plant functions. A chloroplastic NADPH-dependent alkenal/one oxidoreductase (AOR) detoxifies RCs, but its physiological significance remains unknown. In this study, we investigated the biological impacts of AOR using an AOR-knock out Arabidopsis line (aor). Methyl viologen treatment, mainly to enhance photosystem (PS) I-originated reactive oxygen species (ROS) production, caused more severe damage to aor than wild type (Col-0). In contrast, the high light treatment used to enhance PSII-originated ROS production resulted in no difference in PSII damage between Col-0 and aor. In conclusion, AOR can contribute to detoxify stromal RCs produced under oxidative stress.
脂质过氧化物衍生的活性羰基(RCs)可对植物功能造成严重损害。质体 NADPH 依赖性烯醛/酮氧化还原酶(AOR)可解毒 RCs,但它的生理意义尚不清楚。在这项研究中,我们使用 AOR 敲除拟南芥系(aor)研究了 AOR 的生物学影响。甲紫精处理(主要增强光系统 I 产生的活性氧(ROS))对 aor 的损伤比野生型(Col-0)更为严重。相比之下,高光处理(用于增强 PSII 产生的 ROS)导致 Col-0 和 aor 之间 PSII 损伤没有差异。总之,AOR 可以有助于解毒氧化应激下产生的基质 RCs。