College of Life Sciences, Nankai University, Tianjin 300071, China.
Plant Cell Physiol. 2013 Nov;54(11):1822-36. doi: 10.1093/pcp/pct124. Epub 2013 Sep 4.
In Larix and in some crops, heterosis is prevalent and has been widely used in breeding to produce excellent varieties. However, the molecular basis of heterosis in Larix remains ambiguous. LaAP2L1, a member of the AP2/EREBP transcription factor family, has been suggested to be involved in heterosis in Larix hybrids. Here, the function and regulation of LaAP2L1 were further explored. Overexpression of LaAP2L1 led to markedly enlarged organs and heterosis-like traits in Arabidopsis. Fresh weight of leaves was almost twice as great as in vector controls. Likewise, seed yield of 35S::LaAP2L1 individual plants was >200% greater than that of control plants. The enlarged organs and heterosis-like traits displayed by 35S::LaAP2L1 plants were mainly due to enhanced cell proliferation and prolonged growth duration. At the molecular level, LaAP2L1 upregulated the expression of ANT, EBP1, and CycD3;1 and inhibited the expression of ARGOS in 35S::LaAP2L1 plants, suggesting an important molecular role of LaAP2L1 in regulating plant organ development. These findings provide new insights into the formation of heterosis in woody plants and suggest that LaAP2L1 has potential applications in breeding high-yielding crops and energy plants. In addition, 50 AP2/EREBP transcription factors, including LaAP2L1, in Larix were identified by transcriptome sequencing, and phylogenetic analysis was conducted. This provided information that will be important in further revealing the functions of these transcription factors.
在落叶松和一些作物中,杂种优势普遍存在,并已被广泛用于培育优良品种。然而,落叶松杂种优势的分子基础仍不清楚。AP2/EREBP 转录因子家族的成员 LaAP2L1 被认为参与落叶松杂种优势。在这里,进一步探索了 LaAP2L1 的功能和调控。过表达 LaAP2L1 导致拟南芥器官明显增大和杂种优势样特征。叶片的鲜重几乎是对照的两倍。同样,35S::LaAP2L1 个体植株的种子产量比对照植株高出>200%。35S::LaAP2L1 植株表现出的增大器官和杂种优势样特征主要是由于细胞增殖增强和生长持续时间延长。在分子水平上,LaAP2L1 上调了 ANT、EBP1 和 CycD3;1 的表达,并抑制了 35S::LaAP2L1 植株中 ARGOS 的表达,表明 LaAP2L1 在调节植物器官发育方面具有重要的分子作用。这些发现为木本植物杂种优势的形成提供了新的见解,并表明 LaAP2L1 在培育高产作物和能源植物方面具有应用潜力。此外,通过转录组测序鉴定了 50 个包括 LaAP2L1 在内的 AP2/EREBP 转录因子,并进行了系统发育分析。这为进一步揭示这些转录因子的功能提供了重要信息。