Gondo Takahiro, Sato Shusei, Okumura Kenji, Tabata Satoshi, Akashi Ryo, Isobe Sachiko
University of Miyazaki, Frontier Science Research Center, 1-1 Nishi Gakuen-Kibanadai, Miyazaki 889-2192, Japan.
Genome. 2007 Jul;50(7):627-37. doi: 10.1139/g07-040.
The first quantitative trait locus (QTL) analysis of multiple agronomic traits in the model legume Lotus japonicus was performed with a population of recombinant inbred lines derived from Miyakojima MG-20 x Gifu B-129. Thirteen agronomic traits were evaluated in 2004 and 2005: traits of vegetative parts (plant height, stem thickness, leaf length, leaf width, plant regrowth, plant shape, and stem color), flowering traits (flowering time and degree), and pod and seed traits (pod length, pod width, seeds per pod, and seed mass). A total of 40 QTLs were detected that explained 5%-69% of total variation. The QTL that explained the most variation was that for stem color, which was detected in the same region of chromosome 2 in both years. Some QTLs were colocated, especially those for pod and seed traits. Seed mass QTLs were located at 5 locations that mapped to the corresponding genomic positions of equivalent QTLs in soybean, pea, chickpea, and mung bean. This study provides fundamental information for breeding of agronomically important legume crops.
利用源自宫古岛MG-20×岐阜B-129的重组自交系群体,对模式豆科植物百脉根的多个农艺性状进行了首次数量性状基因座(QTL)分析。在2004年和2005年对13个农艺性状进行了评估:营养器官性状(株高、茎粗、叶长、叶宽、植株再生、植株形状和茎色)、开花性状(开花时间和开花程度)以及豆荚和种子性状(荚长、荚宽、每荚种子数和种子质量)。共检测到40个QTL,其解释了总变异的5%-69%。解释变异最多的QTL是茎色QTL,在两年中均在第2号染色体的同一区域检测到。一些QTL共定位在一起,尤其是那些控制豆荚和种子性状的QTL。种子质量QTL位于5个位置,这些位置与大豆、豌豆、鹰嘴豆和绿豆中等效QTL的相应基因组位置相对应。本研究为具有重要农艺价值的豆科作物育种提供了基础信息。