Institute of Agrobiotechnology, CERTH, Thermi-Thessaloniki, GR-570 01, Greece.
Physiol Plant. 2012 Sep;146(1):71-85. doi: 10.1111/j.1399-3054.2012.01610.x. Epub 2012 May 10.
A number of genes are involved in the vernalization pathway, such as VRN1, VRN2 and VRN3/FT1, whose function has been studied in barley and wheat. However, the function of the flowering and vernalization integrator SUPPRESSOR OF OVEREXPRESSION OF CONSTANS 1 (SOC1) has not been well studied in Triticeae, and particularly in barley. Herein, we cloned and characterized two barley SOC1-like homologs, HvSOC1-like1 and HvSOC1-like2. Primary sequence analysis of the predicted HvSOC1-like1 and HvSOC1-like2 proteins showed that they are members of the type II MADS-box protein family. Phylogenetic analysis placed the predicted proteins with other SOC1 and SOC1-like proteins from different species neighboring those from other cereal plant species. Primary and secondary structures of the predicted proteins are conserved to each other and more distant to the recently identified barley ODDSOC1 proteins. Genomic organization of HvSOC1-like1 is very similar to the Arabidopsis and Brachypodium SOC1 genes and localized in highly syntenic chromosomal regions. Regulatory cis-acting elements detected in the HvSOC1-like1 promoter include the CArG-box, implicated in the regulation of SOC1 expression in Arabidopsis. Both HvSOC1-like1 and HvSOCI-like2 are expressed in vegetative and reproductive tissues and at different stages of seed development. Both are upregulated in a particular seed developmental stage suggesting their possible implication in seed development. Furthermore, HvSOC1-like1 was induced in two winter barley cultivars after vernalization treatment pointing to its probable involvement in the vernalization process. The study of the SOC1 genes reported here opens the way for a better understanding of both the vernalization process and seed development and germination in this important cereal crop.
一些基因参与春化途径,如 VRN1、VRN2 和 VRN3/FT1,其功能已在大麦和小麦中研究过。然而,开花和春化整合子 SUPPRESSOR OF OVEREXPRESSION OF CONSTANS 1 (SOC1) 的功能在禾本科,特别是大麦中尚未得到很好的研究。在此,我们克隆并鉴定了两个大麦 SOC1 样同源物,HvSOC1-like1 和 HvSOC1-like2。预测的 HvSOC1-like1 和 HvSOC1-like2 蛋白的一级序列分析表明它们是 II 型 MADS 盒蛋白家族的成员。系统发育分析将预测蛋白与来自不同物种的其他 SOC1 和 SOC1 样蛋白置于与其他谷类植物物种的 SOC1 和 SOC1 样蛋白相邻的位置。预测蛋白的一级和二级结构彼此保守,与最近鉴定的大麦 ODDSOC1 蛋白更远。HvSOC1-like1 的基因组组织与拟南芥和短柄草 SOC1 基因非常相似,定位于高度同源的染色体区域。在 HvSOC1-like1 启动子中检测到的顺式作用调节元件包括 CArG 框,该框参与拟南芥 SOC1 表达的调控。HvSOC1-like1 和 HvSOCI-like2 均在营养和生殖组织以及种子发育的不同阶段表达。在一个特定的种子发育阶段上调,表明它们可能参与种子发育。此外,HvSOC1-like1 在经过春化处理的两个冬大麦品种中诱导表达,表明其可能参与春化过程。本研究报告的 SOC1 基因的研究为更好地理解该重要谷类作物的春化过程以及种子发育和萌发奠定了基础。