State Key Laboratory of Rice Biology, China National Rice Research Institute, Chinese Academy of Agricultural Sciences, 359 Tiyuchang Road, Hangzhou, China.
Plant Mol Biol. 2010 Jun;73(3):283-92. doi: 10.1007/s11103-010-9614-7. Epub 2010 Feb 13.
Leaf morphology is an important agronomic trait in rice breeding. We isolated three allelic mutants of NARROW AND ROLLED LEAF 1 (nrl1) which showed phenotypes of reduced leaf width and semi-rolled leaves and different degrees of dwarfism. Microscopic analysis indicated that the nrl1-1 mutant had fewer longitudinal veins and smaller adaxial bulliform cells compared with the wild-type. The NRL1 gene was mapped to the chromosome 12 and encodes the cellulose synthase-like protein D4 (OsCslD4). Sequence analyses revealed single base substitutions in the three allelic mutants. Genetic complementation and over-expression of the OsCslD4 gene confirmed the identity of NRL1. The gene was expressed in all tested organs of rice at the heading stage and expression level was higher in vigorously growing organs, such as roots, sheaths and panicles than in elsewhere. In the mutant leaves, however, the expression level was lower than that in the wild-type. We conclude that OsCslD4 encoded by NRL1 plays a critical role in leaf morphogenesis and vegetative development in rice.
叶片形态是水稻育种中的一个重要农艺性状。我们分离到 NARROW AND ROLLED LEAF 1(nrl1)的三个等位基因突变体,它们表现出叶片宽度减小、半卷曲和不同程度的矮化表型。显微镜分析表明,与野生型相比,nrl1-1 突变体的纵向叶脉较少,叶表皮泡状细胞较小。NRL1 基因被定位到第 12 号染色体上,编码纤维素合酶类似蛋白 D4(OsCslD4)。序列分析显示,三个等位基因突变体均存在单个碱基取代。通过 OsCslD4 基因的遗传互补和过表达证实了 NRL1 的身份。该基因在水稻抽穗期的所有测试器官中均有表达,在根、叶鞘和穗等生长旺盛的器官中的表达水平高于其他器官。然而,在突变体叶片中,表达水平低于野生型。我们得出结论,NRL1 编码的 OsCslD4 在水稻叶片形态发生和营养生长发育中起着关键作用。