Tattersall Alexander D, Turner Lynda, Knox Margaret R, Ambrose Michael J, Ellis T H Noel, Hofer Julie M I
Department of Crop Genetics, John Ines Centre, Norwich NR4 7UH, United Kingdom.
Plant Cell. 2005 Apr;17(4):1046-60. doi: 10.1105/tpc.104.029447. Epub 2005 Mar 4.
Pinnate compound leaves have laminae called leaflets distributed at intervals along an axis, the rachis, whereas simple leaves have a single lamina. In simple- and compound-leaved species, the PHANTASTICA (PHAN) gene is required for lamina formation. Antirrhinum majus mutants lacking a functional gene develop abaxialized, bladeless adult leaves. Transgenic downregulation of PHAN in the compound tomato (Solanum lycopersicum) leaf results in an abaxialized rachis without leaflets. The extent of PHAN gene expression was found to be correlated with leaf morphology in diverse compound-leaved species; pinnate leaves had a complete adaxial domain of PHAN gene expression, and peltate leaves had a diminished domain. These previous studies predict the form of a compound-leaved phan mutant to be either peltate or an abaxialized rachis. Here, we characterize crispa, a phan mutant in pea (Pisum sativum), and find that the compound leaf remains pinnate, with individual leaflets abaxialized, rather than the whole leaf. The mutant develops ectopic stipules on the petiole-rachis axis, which are associated with ectopic class 1 KNOTTED1-like homeobox (KNOX) gene expression, showing that the interaction between CRISPA and the KNOX gene PISUM SATIVUM KNOTTED2 specifies stipule boundaries. KNOX and CRISPA gene expression patterns indicate that the mechanism of pea leaf initiation is more like Arabidopsis thaliana than tomato.
羽状复叶有称为小叶的叶片,它们沿着一个轴(叶轴)间隔分布,而单叶只有一个叶片。在单叶和复叶物种中,叶片形成需要PHANTASTICA(PHAN)基因。缺乏功能性基因的金鱼草突变体发育出背化的无叶片成年叶。在复合番茄(番茄)叶片中对PHAN进行转基因下调会导致叶轴背化且没有小叶。研究发现,在多种复叶物种中,PHAN基因的表达程度与叶片形态相关;羽状叶有完整的PHAN基因表达的近轴区域,盾状叶的该区域则缩小。这些先前的研究预测复叶phan突变体的形态要么是盾状的,要么是背化的叶轴。在这里,我们对豌豆(豌豆)中的phan突变体crispa进行了表征,发现复叶仍然是羽状的,单个小叶背化,而不是整个叶片。该突变体在叶柄 - 叶轴上发育出异位托叶,这与异位的1类KNOTTED1样同源框(KNOX)基因表达有关,表明CRISPA与KNOX基因豌豆KNOTTED2之间的相互作用决定了托叶边界。KNOX和CRISPA基因的表达模式表明,豌豆叶片起始的机制更类似于拟南芥而不是番茄。