Cao Shu Qing, Xu Qiao Ting, Zhou Hong Jun, Cao Ya Jun, Zhu Yong, Yu Fang, Kuai Ben Ke
Department of Biochemistry, School of Life Sciences, Fudan University, China.
Shi Yan Sheng Wu Xue Bao. 2003 Jun;36(3):233-7.
Genetic analyses of lifespan in model animals have revealed that extended lifespans are closely associated to increased resistance to oxidative stress. In the model plant Arabidopsis, late-flowering mutants are also found to be more tolerant to oxidative stress. However, Arabidopsis mutants with extended lifespans are poorly studied so far. In this study, a screening system for mutants with extended lifespans in Arabidopsis was established using paraquat, a potent herbicide that exacerbates O2-. radical production. The relationship between lifespan and resistance to oxidative stress was examined with one of the mutants, SFNA-9-4. Compared to that of wild type, the lifespan of SFNA-9-4 is significantly extended, and its resistance to oxidative stress is also significantly elevated. These results suggest that, as in Drosophila, paraquat can also be used to screen for mutants with extended lifespans in Arabidopsis.
对模式动物寿命的遗传分析表明,寿命延长与抗氧化应激能力增强密切相关。在模式植物拟南芥中,也发现晚花突变体对氧化应激更具耐受性。然而,迄今为止,对拟南芥中寿命延长的突变体研究较少。在本研究中,使用百草枯建立了一种筛选拟南芥寿命延长突变体的系统,百草枯是一种强效除草剂,可加剧超氧阴离子自由基的产生。用其中一个突变体SFNA-9-4研究了寿命与抗氧化应激能力之间的关系。与野生型相比,SFNA-9-4的寿命显著延长,其抗氧化应激能力也显著提高。这些结果表明,与果蝇一样,百草枯也可用于筛选拟南芥中寿命延长的突变体。