Teraishi Masayoshi, Sakaguchi Kosuke, Yoshikawa Takanori
Graduate School of Agriculture Kyoto University Kyoto Japan.
National Institute of Genetics Mishima Japan.
Plant Direct. 2025 May 4;9(5):e70069. doi: 10.1002/pld3.70069. eCollection 2025 May.
A robust symbiotic relationship between soybean and rhizobia can enhance the yield and quality of soybeans by reducing nitrogen fertilizer input, thereby contributing to sustainable agriculture. However, the genetic interplay between soybean cultivars and the rhizobial species colonizing their roots under natural conditions is yet to be sufficiently assessed. In this study, we build on previous observations that have revealed a significant variation in the prevalence of rhizobial species associated with the soybean cultivars "Peking" and "Tamahomare." Using recombinant inbred lines derived from a cross between Peking and Tamahomare, we performed quantitative trait loci (QTL) analysis of the proportion of species present in the root nodules of these cultivars and accordingly identified a major QTL on chromosome 18, accounting for 42% of the phenotypic variation, which was subsequently localized to a 240-kb region. RNA-seq analysis indicated that a single gene harboring nucleotide binding site-leucine-rich repeat domains exhibited markedly different expression within the QTL region in the parent cultivars. As this locus is distinct from the chromosomal regions containing known nodule-related genes, such as and , we speculate that it represents a novel gene involved in the symbiosis between rhizobia and soybeans. Further research on the function and role of this new gene could potentially contribute to enhancing soybean yield, and hence sustainable agriculture, under low-nitrogen fertilization conditions.
大豆与根瘤菌之间稳固的共生关系可通过减少氮肥投入来提高大豆的产量和品质,从而推动可持续农业发展。然而,在自然条件下,大豆品种与定殖于其根部的根瘤菌物种之间的遗传相互作用尚未得到充分评估。在本研究中,我们基于先前的观察结果展开研究,这些观察结果揭示了与大豆品种“北京黑豆”和“玉珍豆”相关的根瘤菌物种流行率存在显著差异。利用北京黑豆和玉珍豆杂交产生的重组自交系,我们对这些品种根瘤中存在的物种比例进行了数量性状基因座(QTL)分析,并据此在18号染色体上鉴定出一个主要QTL,其占表型变异的42%,随后该QTL被定位到一个240 kb的区域。RNA测序分析表明,一个含有核苷酸结合位点-富含亮氨酸重复结构域的单一基因在亲本品种的QTL区域内表现出明显不同的表达。由于该基因座与包含已知结瘤相关基因(如 和 )的染色体区域不同,我们推测它代表了一个参与根瘤菌与大豆共生的新基因。对这个新基因的功能和作用进行进一步研究可能有助于在低氮肥条件下提高大豆产量,进而推动可持续农业发展。