Shimoda Yoshikazu, Shimoda-Sasakura Fuyuko, Kucho Ken-ichi, Kanamori Norihito, Nagata Maki, Suzuki Akihiro, Abe Mikiko, Higashi Shiro, Uchiumi Toshiki
National Institute of Agrobiological Sciences, Tsukuba, Ibaraki 305-8602, Japan.
Plant J. 2009 Jan;57(2):254-63. doi: 10.1111/j.1365-313X.2008.03689.x. Epub 2008 Oct 14.
Plant hemoglobins (Hbs) have been divided into three groups: class 1, class 2, and truncated Hbs. The various physiological functions of class 1 Hb include its role as a modulator of nitric oxide (NO) levels in plants. To gain more insight into the functions of class 1 Hbs, we investigated the physical properties of LjHb1 and AfHb1, class 1 Hbs of a model legume Lotus japonicus and an actinorhizal plant Alnus firma, respectively. Spectrophotometric analysis showed that the recombinant form of the LjHb1 and AfHb1 proteins reacted with NO. The localization of LjHb1 expression was correlated with the site of NO production. Overexpression of LjHb1 and AfHb1 by transformed hairy roots caused changes in symbiosis with rhizobia. The number of nodules formed on hairy roots overexpressing LjHb1 or AfHb1 increased compared with that on untransformed hairy roots. Furthermore, nitrogenase activity as acetylene-reduction activity (ARA) of LjHb1- or AfHb1-overexpressing nodules was higher than that of the vector control nodules. Microscopic observation with a NO-specific fluorescent dye suggested that the NO level in LjHb1- and AfHb1-overexpressing nodules was lower than that of control nodules. Exogenous application of a NO scavenger enhanced ARA in L. japonicus nodules, whereas a NO donor inhibited ARA. These results suggest that the basal level of NO in nodules inhibits nitrogen fixation, and overexpression of class 1 Hbs enhances symbiotic nitrogen fixation activity by removing NO as an inhibitor of nitrogenase.
植物血红蛋白(Hbs)已被分为三类:1类、2类和截短型Hbs。1类Hb的各种生理功能包括其作为植物中一氧化氮(NO)水平调节剂的作用。为了更深入了解1类Hbs的功能,我们分别研究了模式豆科植物百脉根和放线菌根植物日本桤木的1类Hbs,即LjHb1和AfHb1的物理特性。分光光度分析表明,LjHb1和AfHb1蛋白的重组形式与NO发生反应。LjHb1表达的定位与NO产生的部位相关。通过转化毛状根过表达LjHb1和AfHb1导致与根瘤菌共生的变化。与未转化的毛状根相比,过表达LjHb1或AfHb1的毛状根上形成的根瘤数量增加。此外,过表达LjHb1或AfHb1的根瘤作为乙炔还原活性(ARA)的固氮酶活性高于载体对照根瘤。用NO特异性荧光染料进行的显微镜观察表明,过表达LjHb1和AfHb1的根瘤中的NO水平低于对照根瘤。外源施加NO清除剂可增强百脉根根瘤中的ARA,而NO供体则抑制ARA。这些结果表明,根瘤中NO的基础水平抑制固氮作用,1类Hbs的过表达通过去除作为固氮酶抑制剂的NO来增强共生固氮活性。