Walker Murray, Tehseen Muhammad, Doblin Monika S, Pettolino Filomena A, Wilson Sarah M, Bacic Antony, Golz John F
Genetics Department , University of Melbourne, Victoria 3010, Australia.
Plant Physiol. 2011 May;156(1):46-60. doi: 10.1104/pp.111.172692. Epub 2011 Mar 14.
Exposure of the mature Arabidopsis (Arabidopsis thaliana) seed to water results in the rapid release of pectinaceous mucilage from the outer cells of the testa. Once released, mucilage completely envelops the seed in a gel-like capsule. The physical force required to rupture the outer cell wall of the testa comes from the swelling of the mucilage as it expands rapidly following hydration. In this study, we show that mutations in the transcriptional regulator LEUNIG_HOMOLOG (LUH) cause a mucilage extrusion defect due to altered mucilage swelling. Based on sugar linkage and immunomicroscopic analyses, we show that the structure of luh mucilage is altered, having both an increase in substituted rhamnogalacturonan I and in methyl-esterified homogalacturonan. Also correlated with the structural modification of luh mucilage is a significant decrease in MUCILAGE MODIFIED2 (MUM2; a β-galactosidase) expression in the luh seed coat, raising the possibility that reduced activity of this glycosidase is directly responsible for the luh mucilage defects. Consistent with this is the structural similarity between mum2 and luh mucilage as well as the observation that elevating MUM2 expression in luh mutants completely suppresses the mucilage extrusion defect. Suppression of the luh mutant phenotype was also observed when LEUNIG, a transcriptional corepressor closely related to LUH, was introduced in luh mutants under the control of the LUH promoter. Based on these data, we propose a new model for the regulation of pectin biosynthesis during plant growth and development.
将成熟的拟南芥(Arabidopsis thaliana)种子暴露于水中会导致种皮外层细胞迅速释放出果胶类黏液。一旦释放,黏液会在种子周围形成一个凝胶状的胶囊将其完全包裹。种皮外层细胞壁破裂所需的物理力来自黏液在水合后迅速膨胀时产生的膨胀力。在本研究中,我们发现转录调节因子LEUNIG_HOMOLOG(LUH)的突变会导致黏液膨胀改变,从而引起黏液挤出缺陷。基于糖链和免疫显微镜分析,我们发现luh黏液的结构发生了改变,取代的鼠李半乳糖醛酸聚糖I和甲基酯化的同型半乳糖醛酸都有所增加。luh黏液的结构修饰还与luh种皮中黏液修饰2(MUM2;一种β-半乳糖苷酶)表达的显著降低相关,这增加了这种糖苷酶活性降低直接导致luh黏液缺陷的可能性。与此一致的是,mum2和luh黏液之间的结构相似性,以及在luh突变体中提高MUM2表达能完全抑制黏液挤出缺陷的观察结果。当与LUH密切相关的转录共抑制因子LEUNIG在LUH启动子的控制下导入luh突变体时,也观察到了luh突变体表型的抑制。基于这些数据,我们提出了一个关于植物生长发育过程中果胶生物合成调控的新模型。