Dean Gillian H, Zheng Huanquan, Tewari Jagdish, Huang Jun, Young Diana S, Hwang Yeen Ting, Western Tamara L, Carpita Nicholas C, McCann Maureen C, Mansfield Shawn D, Haughn George W
Department of Botany, University of British Columbia, Vancouver, Canada V6T 1Z4.
Plant Cell. 2007 Dec;19(12):4007-21. doi: 10.1105/tpc.107.050609. Epub 2007 Dec 28.
Seed coat development in Arabidopsis thaliana involves a complex pathway where cells of the outer integument differentiate into a highly specialized cell type after fertilization. One aspect of this developmental process involves the secretion of a large amount of pectinaceous mucilage into the apoplast. When the mature seed coat is exposed to water, this mucilage expands to break the primary cell wall and encapsulate the seed. The mucilage-modified2 (mum2) mutant is characterized by a failure to extrude mucilage on hydration, although mucilage is produced as normal during development. The defect in mum2 appears to reside in the mucilage itself, as mucilage fails to expand even when the barrier of the primary cell wall is removed. We have cloned the MUM2 gene and expressed recombinant MUM2 protein, which has beta-galactosidase activity. Biochemical analysis of the mum2 mucilage reveals alterations in pectins that are consistent with a defect in beta-galactosidase activity, and we have demonstrated that MUM2 is localized to the cell wall. We propose that MUM2 is involved in modifying mucilage to allow it to expand upon hydration, establishing a link between the galactosyl side-chain structure of pectin and its physical properties.
拟南芥种皮的发育涉及一条复杂的途径,受精后外珠被细胞分化为高度特化的细胞类型。这个发育过程的一个方面涉及向质外体分泌大量的果胶类黏液。当成熟种皮接触水时,这种黏液膨胀以破坏初生细胞壁并包裹种子。黏液修饰2(mum2)突变体的特征是在水合作用时无法挤出黏液,尽管在发育过程中黏液正常产生。mum2的缺陷似乎存在于黏液本身,因为即使去除初生细胞壁的屏障,黏液也无法膨胀。我们已经克隆了MUM2基因并表达了具有β-半乳糖苷酶活性的重组MUM2蛋白。对mum2黏液的生化分析揭示了果胶的改变,这与β-半乳糖苷酶活性缺陷一致,并且我们已经证明MUM2定位于细胞壁。我们提出MUM2参与修饰黏液,使其在水合作用时能够膨胀,从而在果胶的半乳糖基侧链结构与其物理性质之间建立联系。