Department of Soil and Crop Science, Texas A&M University, College Station, Texas, United States of America.
PLoS One. 2013;8(1):e53973. doi: 10.1371/journal.pone.0053973. Epub 2013 Jan 24.
Maize (Zea mays L.) lipoxygenases (ZmLOXs) are well recognized as important players in plant defense against pathogens, especially in cross kingdom lipid communication with pathogenic fungi. This study is among the first to investigate genetic diversity at important gene paralogs ZmLOX4 and ZmLOX5. Sequencing of these genes in 400 diverse maize lines showed little genetic diversity and low linkage disequilibrium in the two genes. Importantly, we identified one inbred line in which ZmLOX5 has a disrupted open reading frame, a line missing ZmLOX5, and five lines with a duplication of ZmLOX5. Tajima's D test suggests that both ZmLOX4 and ZmLOX5 have been under neutral selection. Further investigation of haplotype data revealed that within the ZmLOX family members only ZmLOX12, a monocot specific ZmLOX, showed strong linkage disequilibrium that extends further than expected in maize. Linkage disequilibrium patterns at these loci of interest are crucial for future candidate gene association mapping studies. ZmLOX4 and ZmLOX5 mutations and copy number variants are under further investigation for crop improvement.
玉米(Zea mays L.)脂氧合酶(ZmLOXs)被认为是植物抵御病原体的重要参与者,特别是在与病原真菌的跨界脂质通讯中。本研究首次调查了重要基因旁系同源物 ZmLOX4 和 ZmLOX5 的遗传多样性。对 400 条不同玉米品系的这两个基因进行测序,结果表明这两个基因的遗传多样性很小,连锁不平衡程度低。重要的是,我们鉴定出一个自交系中 ZmLOX5 的开放阅读框被破坏,一个缺失 ZmLOX5 的系,以及五个 ZmLOX5 重复的系。Tajima 的 D 检验表明,ZmLOX4 和 ZmLOX5 都受到中性选择的影响。对单倍型数据的进一步研究表明,在 ZmLOX 家族成员中,只有单子叶特异性的 ZmLOX12 显示出强连锁不平衡,其延伸范围超出了玉米的预期。这些感兴趣的基因座的连锁不平衡模式对于未来的候选基因关联图谱研究至关重要。ZmLOX4 和 ZmLOX5 的突变和拷贝数变异正在进一步研究中,以进行作物改良。