Guo Kai, Kong Wie Wei, Yang Zhi Min
Department of Biochemistry and Molecular Biology, College of Life Sciences, Nanjing Agricultural University, Nanjing 210095, China.
Plant Cell Environ. 2009 Aug;32(8):1033-45. doi: 10.1111/j.1365-3040.2009.01986.x. Epub 2009 Apr 2.
This study identified the role of CO in regulating the tomato root hair development. Exogenous CO promoted the root hair density and elongation in a concentration-dependent manner. Analysis of cross sections of primary roots also indicated that CO induced the formation of root hairs. Genetic analysis reveals that tomato mutant yg-2 (defective in haem oxygenase-1 activity and intracellular CO generation) displayed a phenotype of delayed root hair development, which however could be reversed by exogenous CO. Further, we analysed LeExt1::beta-glucuronidase reporter gene for root hair formation and found increasing expression of LeExt1 in the CO-exposed root hairs. Finally, CO was able to act synergistically with auxin, ethylene and NO. It is shown that the effect of CO could be blocked by NPA (auxin transport inhibitor), AVG (ethylene biosynthesis inhibitor), Ag(+) (ethylene action inhibitor) or cPTIO (NO scavenger). Exposure of tomato roots to CO also enhanced intracellular NO and reactive oxygen species generation in root hairs. Our results suggest that CO would be required for root hair development and may play a critical role in controlling architectural development of plant roots by a putative mechanism of cross-talk with auxin, ethylene and nitric oxide.
本研究确定了一氧化碳(CO)在调控番茄根毛发育中的作用。外源CO以浓度依赖的方式促进根毛密度和伸长。对初生根横切面的分析也表明,CO诱导了根毛的形成。遗传分析显示,番茄突变体yg-2(血红素加氧酶-1活性和细胞内CO生成存在缺陷)表现出根毛发育延迟的表型,然而外源CO可以使其逆转。此外,我们分析了用于根毛形成的LeExt1::β-葡萄糖醛酸酶报告基因,发现在暴露于CO的根毛中LeExt1的表达增加。最后,CO能够与生长素、乙烯和一氧化氮协同作用。结果表明,CO的作用可被NPA(生长素运输抑制剂)、AVG(乙烯生物合成抑制剂)、Ag(+)(乙烯作用抑制剂)或cPTIO(NO清除剂)阻断。将番茄根暴露于CO也会增强根毛细胞内NO和活性氧的生成。我们的结果表明,CO是根毛发育所必需的,并且可能通过与生长素、乙烯和一氧化氮的假定相互作用机制在控制植物根系结构发育中发挥关键作用。