United Graduate School of Agricultural Sciences, Kagoshima University, Kagoshima 890-0065, Japan.
J Plant Res. 2012 May;125(3):395-406. doi: 10.1007/s10265-011-0459-1. Epub 2011 Oct 19.
Many legumes form nitrogen-fixing root nodules. An elevation of nitrogen fixation in such legumes would have significant implications for plant growth and biomass production in agriculture. To identify the genetic basis for the regulation of nitrogen fixation, quantitative trait locus (QTL) analysis was conducted with recombinant inbred lines derived from the cross Miyakojima MG-20 × Gifu B-129 in the model legume Lotus japonicus. This population was inoculated with Mesorhizobium loti MAFF303099 and grown for 14 days in pods containing vermiculite. Phenotypic data were collected for acetylene reduction activity (ARA) per plant (ARA/P), ARA per nodule weight (ARA/NW), ARA per nodule number (ARA/NN), NN per plant, NW per plant, stem length (SL), SL without inoculation (SLbac-), shoot dry weight without inoculation (SWbac-), root length without inoculation (RLbac-), and root dry weight (RWbac-), and finally 34 QTLs were identified. ARA/P, ARA/NN, NW, and SL showed strong correlations and QTL co-localization, suggesting that several plant characteristics important for symbiotic nitrogen fixation are controlled by the same locus. QTLs for ARA/P, ARA/NN, NW, and SL, co-localized around marker TM0832 on chromosome 4, were also co-localized with previously reported QTLs for seed mass. This is the first report of QTL analysis for symbiotic nitrogen fixation activity traits.
许多豆类形成固氮根瘤。此类豆类中固氮作用的提高将对农业中植物生长和生物量生产具有重要意义。为了确定氮固定调节的遗传基础,利用来自模式豆科植物百脉根的重组自交系 Miyakojima MG-20×Gifu B-129 的杂交群体进行了数量性状位点(QTL)分析。该群体用Mesorhizobium loti MAFF303099 接种,并在含有蛭石的豆荚中生长 14 天。收集每个植株的乙炔还原活性(ARA)(ARA/P)、每个根瘤重量的 ARA(ARA/NW)、每个根瘤数的 ARA(ARA/NN)、每个植株的 NN、每个植株的 NW、茎长(SL)、未接种的 SL(SLbac-)、未接种的地上部干重(SWbac-)、未接种的根长(RLbac-)和根干重(RWbac-)的表型数据,最终鉴定出 34 个 QTL。ARA/P、ARA/NN、NW 和 SL 表现出强烈的相关性和 QTL 共定位,表明几个对共生固氮很重要的植物特征受同一基因座控制。在染色体 4 上标记 TM0832 周围,鉴定到与 ARA/P、ARA/NN、NW 和 SL 共定位的 QTL 也与先前报道的种子质量 QTL 共定位。这是共生固氮活性性状 QTL 分析的首次报道。