College of Biological and Environmental Engineering, Zhejiang University of Technology, Hangzhou, 310032, People's Republic of China.
Environ Monit Assess. 2014 Feb;186(2):1123-31. doi: 10.1007/s10661-013-3443-5. Epub 2013 Oct 5.
As a result of natural processes and human activities, aluminum (Al) toxicity is recognized as a major limiting factor for plant productivity, and the secretion of organic acids facilitated by channel proteins is one of the most important Al resistance mechanisms in plants. The objective of this study was to evaluate the effects of several types of stress, including herbicide (imazethapyr (IM) and diclofop-methyl (DM)), heavy metal (Al and Cu), salt stress (NaCl), and proton stress (HCl), on the release of organic acids in rice. The results showed that 0.05 mg/L IM, 0.1 mg/L DM, 4680 mg/L NaCl, 0.5 mg/L CuSO4, and 18 mg/L AlCl3 significantly inhibited rice root elongation and the root fresh weight. In contrast, no significant inhibitory effects on rice growth were found with HCl (pH = 4.5). Similar to the effect of AlCl3 on organic acid induction, treatment with IM, DM, NaCl, and CuSO4 also induced the synthesis of endogenous citric acid and oxalic acid but decreased endogenous malic acid synthesis in the seedlings, though only citric acid was released into the environment after these treatments. We also analyzed the transcripts of three citrate channel proteins and found they were up-regulated by NaCl, CuSO4, and AlCl3 but not by IM or DM. This study clarified that organic acid secretion in plants might be a common phenomenon when plants are exposed to environmental stress other than Al toxicity.
由于自然过程和人类活动的影响,铝(Al)毒性被认为是植物生产力的主要限制因素,而通道蛋白介导的有机酸分泌是植物中最重要的耐铝机制之一。本研究旨在评估几种胁迫(包括除草剂(咪草烟(IM)和精吡氟禾草灵(DM))、重金属(Al 和 Cu)、盐胁迫(NaCl)和质子胁迫(HCl))对水稻有机酸释放的影响。结果表明,0.05 mg/L 的 IM、0.1 mg/L 的 DM、4680 mg/L 的 NaCl、0.5 mg/L 的 CuSO4 和 18 mg/L 的 AlCl3 显著抑制了水稻根伸长和根鲜重。相比之下,HCl(pH = 4.5)对水稻生长没有显著的抑制作用。与 AlCl3 诱导有机酸合成的作用相似,IM、DM、NaCl 和 CuSO4 的处理也诱导了内源柠檬酸和草酸的合成,但降低了幼苗内源苹果酸的合成,尽管这些处理后只有柠檬酸被释放到环境中。我们还分析了三种柠檬酸通道蛋白的转录本,发现它们受 NaCl、CuSO4 和 AlCl3 的上调,但不受 IM 或 DM 的上调。本研究阐明了植物在受到除铝毒性以外的环境胁迫时,可能会出现有机酸分泌的普遍现象。