Levesque-Tremblay Gabriel, Müller Kerstin, Mansfield Shawn D, Haughn George W
Departments of Botany (G.L.-T., G.W.H.) andWood Science (S.D.M.), Faculty of Forestry, University of British Columbia, Vancouver, British Columbia, Canada V6T 1Z4; andDepartment of Biological Science, Simon Fraser University, Burnaby, British Columbia, Canada V5A 1S6 (K.M.).
Departments of Botany (G.L.-T., G.W.H.) andWood Science (S.D.M.), Faculty of Forestry, University of British Columbia, Vancouver, British Columbia, Canada V6T 1Z4; andDepartment of Biological Science, Simon Fraser University, Burnaby, British Columbia, Canada V5A 1S6 (K.M.)
Plant Physiol. 2015 Mar;167(3):725-37. doi: 10.1104/pp.114.255604. Epub 2015 Jan 8.
Homogalacturonan pectin domains are synthesized in a highly methyl-esterified form that later can be differentially demethyl esterified by pectin methyl esterase (PME) to strengthen or loosen plant cell walls that contain pectin, including seed coat mucilage, a specialized secondary cell wall of seed coat epidermal cells. As a means to identify the active PMEs in seed coat mucilage, we identified seven PMEs expressed during seed coat development. One of these, HIGHLY METHYL ESTERIFIED SEEDS (HMS), is abundant during mucilage secretion, peaking at 7 d postanthesis in both the seed coat and the embryo. We have determined that this gene is required for normal levels of PME activity and homogalacturonan methyl esterification in the seed. The hms-1 mutant displays altered embryo morphology and mucilage extrusion, both of which are a consequence of defects in embryo development. A significant decrease in the size of cells in the embryo suggests that the changes in embryo morphology are a consequence of lack of cell expansion. Progeny from a cross between hms-1 and the previously characterized PME inhibitor5 overexpression line suggest that HMS acts independently from other cell wall-modifying enzymes in the embryo. We propose that HMS is required for cell wall loosening in the embryo to facilitate cell expansion during the accumulation of storage reserves and that its role in the seed coat is masked by redundancy.
同型半乳糖醛酸聚糖果胶结构域以高度甲酯化的形式合成,随后可被果胶甲酯酶(PME)进行不同程度的去甲酯化,以强化或疏松含有果胶的植物细胞壁,包括种皮黏液,它是种皮表皮细胞的一种特殊次生细胞壁。作为鉴定种皮黏液中活性PME的一种方法,我们鉴定出了7种在种皮发育过程中表达的PME。其中一种,高甲酯化种子(HMS),在黏液分泌过程中含量丰富,在开花后7天在种皮和胚中均达到峰值。我们已经确定该基因是种子中正常水平的PME活性和同型半乳糖醛酸聚糖甲酯化所必需的。hms-1突变体表现出胚形态和黏液挤出的改变,这两者都是胚发育缺陷的结果。胚中细胞大小的显著减小表明胚形态的变化是细胞扩张不足的结果。hms-1与先前鉴定的PME抑制剂5过表达系杂交的后代表明,HMS在胚中独立于其他细胞壁修饰酶发挥作用。我们提出,HMS是胚中细胞壁疏松所必需的,以便在储存储备积累期间促进细胞扩张,并且其在种皮中的作用被冗余所掩盖。