Xu Yonghan, Sechet Julien, Wu Yingbao, Fu Yaping, Zhu Longfei, Li Jincai, Zhang Yinping, Gineau Emilie, Gaertner Cyril, Zhou Jian, Fan Xiaorong, Liu Yu, Zhou Li, Mouille Grégory, Lin Xinchun
College of Agronomy, Anhui Agricultural University, Hefei 230036, China.
Key Laboratory for Quality Improvement of Agricultural Products of Zhejiang Province, College of Agriculture and Food Science, Zhejiang Agriculture and Forest University, Hangzhou 311300, China.
Plant Physiol. 2017 Jul;174(3):1595-1608. doi: 10.1104/pp.16.01555. Epub 2017 May 11.
Homogalacturonan (HG) is the main component of pectins. HG methylesterification has recently emerged as a key determinant controlling cell attachment, organ formation, and phyllotaxy. However, whether and how HG methylesterification affects intercellular metabolite transport has rarely been reported. Here, we identified and characterized knockout mutants of the rice () gene encoding a putative pectin methyltransferase. mutants exhibit a remarkable decrease in the degree of methylesterification of HG in the culm-sieve element cell wall and a markedly reduced grain yield. The culm of mutant plants contains excessive sucrose (Suc), and a CO feeding experiment showed that the Suc overaccumulation in the culm was caused by blocked Suc translocation. These and other findings demonstrate that OsQUA2 is essential for maintaining a high degree of methylesterification of HG in the rice culm-sieve element cell wall, which may be critical for efficient Suc partitioning and grain filling. In addition, our results suggest that the apoplastic pathway is involved in long-distance Suc transport in rice. The identification and characterization of the gene and its functionality revealed a previously unknown contribution of HG methylesterification and provided insight into how modification of the cell wall regulates intercellular transport in plants.
同型半乳糖醛酸聚糖(HG)是果胶的主要成分。HG甲基酯化作用最近已成为控制细胞附着、器官形成和叶序的关键决定因素。然而,HG甲基酯化作用是否以及如何影响细胞间代谢物运输鲜有报道。在此,我们鉴定并表征了水稻()中一个编码假定果胶甲基转移酶的基因的敲除突变体。突变体在茎筛管细胞壁中HG的甲基酯化程度显著降低,且籽粒产量明显下降。突变体植株的茎中含有过量的蔗糖(Suc),一项CO饲喂实验表明,茎中Suc的过度积累是由Suc转运受阻引起的。这些及其他发现表明,OsQUA2对于维持水稻茎筛管细胞壁中HG的高度甲基酯化至关重要,这可能对有效的Suc分配和籽粒充实至关重要。此外,我们的结果表明,质外体途径参与水稻中Suc的长距离运输。该基因的鉴定、表征及其功能揭示了HG甲基酯化作用此前未知的作用,并为细胞壁修饰如何调节植物细胞间运输提供了见解。