Cao Dong, Li Ying, Lu Sijia, Wang Jialin, Nan Haiyang, Li Xiaoming, Shi Danning, Fang Chao, Zhai Hong, Yuan Xiaohui, Anai Toyoaki, Xia Zhengjun, Liu Baohui, Kong Fanjiang
The Key Laboratory of Soybean Molecular Design Breeding, Northeast Institute of Geography and Agroecology, Chinese Academy of Sciences, No. 138 Haping Road, Nangang District, Harbin 150081, China These authors contributed equally to this work.
State Key Laboratory of Tree Genetics and Breeding (Northeast Forestry University), 26 Hexing Road, Harbin 150040, China These authors contributed equally to this work.
Plant Cell Physiol. 2015 Dec;56(12):2409-22. doi: 10.1093/pcp/pcv152. Epub 2015 Oct 27.
CONSTANS (CO) has a central role in the photoperiod response mechanism in Arabidopsis. However, the functions of legume CO genes in controlling flowering remain unknown. Here, we analyze the expression patterns of E1, E2 and GmCOL1a/1b using near-isogenic lines (NILs), and we further analyze flowering-related genes in gmcol1b mutants and GmCOL1a-overexpressing plants. Our data showed that both E3 and E4 up-regulate E1 expression, with the effect of E3 on E1 being greater than the effect of E4 on E1. E2 was up-regulated by E3 and E4 but down-regulated by E1. GmCOL1a/1b were up-regulated by E1, E2, E3 and E4. Although the spatial and temporal patterns of GmCOL1a/1b expression were more similar to those of AtCOL2 than to those of AtCO, gmcol1b mutants flowered earlier than wild-type plants under long-day (LD) conditions, and the overexpression of GmCOL1a caused late flowering under LD or natural conditions. In addition, GmFT2a/5a, E1 and E2 were down-regulated in GmCOL1a-overexpressing plants under LD conditions. Because E1/2 influences the expression of GmCOL1a, and vice versa, we conclude that these genes may function as part of a negative feedback loop, and GmCOL1a/b genes may serve as suppressors in photoperiodic flowering in soybean under LD conditions.
CONSTANS(CO)在拟南芥的光周期反应机制中起着核心作用。然而,豆科植物CO基因在控制开花方面的功能仍不清楚。在这里,我们使用近等基因系(NILs)分析了E1、E2和GmCOL1a/1b的表达模式,并进一步分析了gmcol1b突变体和GmCOL1a过表达植株中与开花相关的基因。我们的数据表明,E3和E4均上调E1的表达,且E3对E1的影响大于E4对E1的影响。E2被E3和E4上调,但被E1下调。GmCOL1a/1b被E1、E2、E3和E4上调。尽管GmCOL1a/1b表达的时空模式与AtCOL2的更相似,而与AtCO的不同,但在长日(LD)条件下,gmcol1b突变体比野生型植株开花更早,并且GmCOL1a的过表达在LD或自然条件下导致开花延迟。此外,在LD条件下,GmFT2a/5a、E1和E2在GmCOL1a过表达植株中被下调。由于E1/2影响GmCOL1a的表达,反之亦然,我们得出结论,这些基因可能作为负反馈环的一部分发挥作用,并且GmCOL1a/b基因可能在LD条件下作为大豆光周期开花的抑制因子。