Xu Yue, Iacuone Sylvana, Li Song Feng, Parish Roger W
BMC Plant Biol. 2014 Oct 14;14:278. doi: 10.1186/s12870-014-0278-3.
The Arabidopsis AtMYB80 transcription factor regulates genes involved in pollen development and controls the timing of tapetal programmed cell death (PCD). Downregulation of AtMYB80 expression precedes tapetal degradation. Inhibition of AtMYB80 expression results in complete male sterility. Full-length AtMYB80 homologs have been isolated in wheat, rice, barley and canola (C genome).
The complete sequences of MYB80 genes from the Brassica. napus (A gene), B. juncea (A gene), B. oleracea (C gene) and the two orthologs from cotton (Gossypium hirsutum) were determined. The deduced amino acid sequences possess a highly conserved MYB domain, 44-amino acid region and 18-amino acid C-terminal sequence. The cotton MYB80 protein can fully restore fertility of the atmyb80 mutant, while removal of the 44 amino acid sequence abolishes its function. Two conserved MYB cis-elements in the AtMYB80 promoter are required for downregulation of MYB80 expression in anthers, apparently via negative auto-regulation. In cotton, tapetal degradation occurs at a slightly earlier stage of anther development than in Arabidopsis, consistent with an earlier increase and subsequent downregulation in GhMYB80 expression. The MYB80 homologs fused with the EAR repressor motif have been shown to induce male sterility in Arabidopsis. Constructs were designed to maximize the level of male sterility.
MYB80 genes are conserved in structure and function in all monocot and dicot species so far examined. Expression patterns of MYB80 in these species are also highly similar. The reversible male sterility system developed in Arabidopsis by manipulating MYB80 expression should be applicable to all major crops.
拟南芥AtMYB80转录因子调控参与花粉发育的基因,并控制绒毡层程序性细胞死亡(PCD)的时间。AtMYB80表达的下调先于绒毡层降解。AtMYB80表达的抑制导致完全雄性不育。已在小麦、水稻、大麦和油菜(C基因组)中分离出全长AtMYB80同源物。
确定了甘蓝型油菜(A基因)、芥菜型油菜(A基因)、甘蓝(C基因)的MYB80基因的完整序列以及棉花(陆地棉)的两个直系同源基因的完整序列。推导的氨基酸序列具有高度保守的MYB结构域、44个氨基酸区域和18个氨基酸的C末端序列。棉花MYB80蛋白可以完全恢复atmyb80突变体的育性,而去除44个氨基酸序列则使其功能丧失。AtMYB80启动子中的两个保守MYB顺式元件显然通过负向自我调节,是花药中MYB80表达下调所必需的。在棉花中,绒毡层降解发生在花药发育的阶段比拟南芥略早,这与GhMYB80表达的早期增加和随后的下调一致。已证明与EAR阻遏基序融合的MYB80同源物可在拟南芥中诱导雄性不育。构建体的设计旨在最大化雄性不育水平。
到目前为止,MYB80基因在所有已检测的单子叶和双子叶物种中结构和功能都是保守的。MYB80在这些物种中的表达模式也高度相似。通过操纵MYB80表达在拟南芥中建立的可逆雄性不育系统应该适用于所有主要作物。