Fukudome Mitsutaka, Calvo-Begueria Laura, Kado Tomohiro, Osuki Ken-Ichi, Rubio Maria Carmen, Murakami Ei-Ichi, Nagata Maki, Kucho Ken-Ichi, Sandal Niels, Stougaard Jens, Becana Manuel, Uchiumi Toshiki
Graduate School of Science and Engineering, Kagoshima University, 1-21-35 Korimoto, Kagoshima 890-0065, Japan.
Departamento de Nutrición Vegetal, Estación Experimental de Aula Dei, Consejo Superior de Investigaciones Científicas, Apartado 13034, 50080 Zaragoza, Spain.
J Exp Bot. 2016 Sep;67(17):5275-83. doi: 10.1093/jxb/erw290. Epub 2016 Jul 21.
Leghemoglobins transport and deliver O2 to the symbiosomes inside legume nodules and are essential for nitrogen fixation. However, the roles of other hemoglobins (Hbs) in the rhizobia-legume symbiosis are unclear. Several Lotus japonicus mutants affecting LjGlb1-1, a non-symbiotic class 1 Hb, have been used to study the function of this protein in symbiosis. Two TILLING alleles with single amino acid substitutions (A102V and E127K) and a LORE1 null allele with a retrotransposon insertion in the 5'-untranslated region (96642) were selected for phenotyping nodulation. Plants of all three mutant lines showed a decrease in long infection threads and nodules, and an increase in incipient infection threads. About 4h after inoculation, the roots of mutant plants exhibited a greater transient accumulation of nitric oxide (NO) than did the wild-type roots; nevertheless, in vitro NO dioxygenase activities of the wild-type, A102V, and E127K proteins were similar, suggesting that the mutated proteins are not fully functional in vivo The expression of LjGlb1-1, but not of the other class 1 Hb of L. japonicus (LjGlb1-2), was affected during infection of wild-type roots, further supporting a specific role for LjGlb1-1. In conclusion, the LjGlb1-1 mutants reveal that this protein is required during rhizobial infection and regulates NO levels.
豆血红蛋白将氧气运输并递送至豆科植物根瘤内的共生体,对固氮作用至关重要。然而,其他血红蛋白(Hb)在根瘤菌 - 豆科植物共生关系中的作用尚不清楚。几个影响日本百脉根非共生1类血红蛋白LjGlb1 - 1的突变体已被用于研究该蛋白在共生中的功能。选择了两个具有单氨基酸替换的定向诱导基因组局部突变等位基因(A102V和E127K)以及一个在5'非翻译区有反转录转座子插入的LORE1无效等位基因(96642)进行结瘤表型分析。所有三个突变系的植株均显示长感染丝和根瘤减少,初期感染丝增加。接种后约4小时,突变植株的根比野生型根表现出更大的一氧化氮(NO)瞬时积累;然而,野生型、A102V和E127K蛋白的体外NO双加氧酶活性相似,这表明突变蛋白在体内并非完全有功能。在野生型根感染期间,LjGlb1 - 1的表达受到影响,而日本百脉根的另一个1类血红蛋白(LjGlb1 - 2)的表达则不受影响,这进一步支持了LjGlb1 - 1的特定作用。总之,LjGlb1 - 1突变体表明该蛋白在根瘤菌感染期间是必需的,并调节NO水平。