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来自日本桤木的1类血红蛋白基因在共生和非共生组织中发挥作用以解毒一氧化氮。

A class 1 hemoglobin gene from Alnus firma functions in symbiotic and nonsymbiotic tissues to detoxify nitric oxide.

作者信息

Sasakura Fuyuko, Uchiumi Toshiki, Shimoda Yoshikazu, Suzuki Akihiro, Takenouchi Katsumi, Higashi Shiro, Abe Mikiko

机构信息

Graduate School of Science and Technology, Kagoshima University, Kagoshima 890-0065, Japan.

出版信息

Mol Plant Microbe Interact. 2006 Apr;19(4):441-50. doi: 10.1094/MPMI-19-0441.

Abstract

Actinorhizal symbiosis is as important in biological nitrogen fixation as legume-rhizobium symbiosis in the global nitrogen cycle. To understand the function of hemoglobin (Hb) in actinorhizal symbiosis, we characterized a Hb of Alnus firma, AfHb1. A cDNA that encodes nonsymbiotic Hb (nonsym-Hb) was isolated from a cDNA library of A. firma nodules probed with LjHb1, a nonsym-Hb of Lotus japonicus. No homolog of symbiotic Hb (sym-Hb) could be identified by screening in the cDNA library or by polymerase chain reaction (PCR) using degenerate primers for other sym-Hb genes. The deduced amino acid sequence of AfHb1 showed 92% sequence similarity with a class 1 nonsym-Hb of Casuarina glauca. Quantitative reverse transcriptase-PCR analysis showed that AfHb1 was expressed strongly in the nodules and enhanced expression was detected under cold stress but not under hypoxia or osmotic stress. Moreover, AfHfb1 was strongly induced by the application of nitric oxide (NO) donors, and the application of a NO scavenger suppressed the effect of NO donors. Acetylene reduction was strongly inhibited by the addition of NO donors. AfHb1 may support the nitrogen fixation ability of members of the genus Frankia as a NO scavenger.

摘要

放线菌根共生在生物固氮中与豆科植物 - 根瘤菌共生在全球氮循环中同样重要。为了解血红蛋白(Hb)在放线菌根共生中的功能,我们对日本桤木的一种Hb(AfHb1)进行了表征。从日本桤木根瘤的cDNA文库中分离出一个编码非共生Hb(nonsym-Hb)的cDNA,该文库用日本百脉根的非共生Hb LjHb1进行探测。通过在cDNA文库中筛选或使用针对其他共生Hb基因的简并引物进行聚合酶链反应(PCR),未鉴定出共生Hb(sym-Hb)的同源物。AfHb1推导的氨基酸序列与木麻黄的1类非共生Hb显示出92%的序列相似性。定量逆转录 - PCR分析表明,AfHb1在根瘤中强烈表达,在冷胁迫下检测到表达增强,但在缺氧或渗透胁迫下未增强。此外,施加一氧化氮(NO)供体强烈诱导AfHfb1,而施加NO清除剂抑制了NO供体的作用。添加NO供体强烈抑制乙炔还原。AfHb1可能作为一种NO清除剂支持弗兰克氏菌属成员的固氮能力。

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