Griffiths Jonathan S, Šola Krešimir, Kushwaha Rekha, Lam Patricia, Tateno Mizuki, Young Robin, Voiniciuc Cătălin, Dean Gillian, Mansfield Shawn D, DeBolt Seth, Haughn George W
Department of Botany (J.S.G., K.Š., P.L., R.Y., C.V., G.D., G.W.H.) and Department of Wood Science (S.D.M.), University of British Columbia, Vancouver, British Columbia, Canada V6T 1Z4; andDepartment of Horticulture Plant Physiology/Biochemistry/Molecular Biology Program (R.K., M.T., S.D.) and University of Kentucky Seed Biology Group (R.K., M.T., S.D.), University of Kentucky, Lexington, Kentucky 40546.
Department of Botany (J.S.G., K.Š., P.L., R.Y., C.V., G.D., G.W.H.) and Department of Wood Science (S.D.M.), University of British Columbia, Vancouver, British Columbia, Canada V6T 1Z4; andDepartment of Horticulture Plant Physiology/Biochemistry/Molecular Biology Program (R.K., M.T., S.D.) and University of Kentucky Seed Biology Group (R.K., M.T., S.D.), University of Kentucky, Lexington, Kentucky 40546
Plant Physiol. 2015 Jun;168(2):502-20. doi: 10.1104/pp.15.00478. Epub 2015 Apr 29.
Cellulose synthase5 (CESA5) synthesizes cellulose necessary for seed mucilage adherence to seed coat epidermal cells of Arabidopsis (Arabidopsis thaliana). The involvement of additional CESA proteins in this process and details concerning the manner in which cellulose is deposited in the mucilage pocket are unknown. Here, we show that both CESA3 and CESA10 are highly expressed in this cell type at the time of mucilage synthesis and localize to the plasma membrane adjacent to the mucilage pocket. The isoxaben resistant1-1 and isoxaben resistant1-2 mutants affecting CESA3 show defects consistent with altered mucilage cellulose biosynthesis. CESA3 can interact with CESA5 in vitro, and green fluorescent protein-tagged CESA5, CESA3, and CESA10 proteins move in a linear, unidirectional fashion around the cytoplasmic column of the cell, parallel with the surface of the seed, in a pattern similar to that of cortical microtubules. Consistent with this movement, cytological evidence suggests that the mucilage is coiled around the columella and unwinds during mucilage extrusion to form a linear ray. Mutations in CESA5 and CESA3 affect the speed of mucilage extrusion and mucilage adherence. These findings imply that cellulose fibrils are synthesized in an ordered helical array around the columella, providing a distinct structure to the mucilage that is important for both mucilage extrusion and adherence.
纤维素合酶5(CESA5)合成拟南芥(Arabidopsis thaliana)种子黏液附着于种皮表皮细胞所需的纤维素。在此过程中其他CESA蛋白的参与情况以及纤维素在黏液囊中沉积方式的细节尚不清楚。在这里,我们表明CESA3和CESA10在黏液合成时在这种细胞类型中高度表达,并定位于与黏液囊相邻的质膜。影响CESA3的异恶草酮抗性1-1和异恶草酮抗性1-2突变体表现出与黏液纤维素生物合成改变一致的缺陷。CESA3在体外可与CESA5相互作用,并且绿色荧光蛋白标记的CESA5、CESA3和CESA10蛋白以线性、单向方式围绕细胞的细胞质柱移动,与种子表面平行,其模式类似于皮层微管。与这种移动一致,细胞学证据表明黏液围绕小柱盘绕,并在黏液挤出过程中展开以形成线性射线。CESA5和CESA3中的突变影响黏液挤出速度和黏液附着力。这些发现意味着纤维素微纤丝围绕小柱以有序的螺旋阵列合成,为黏液提供独特的结构,这对黏液挤出和附着力都很重要。