Forage Improvement Division, The Samuel Roberts Noble Foundation, 2510 Sam Noble Parkway, Ardmore, OK, 73401, USA.
Plant Biology Division, The Samuel Roberts Noble Foundation, 2510 Sam Noble Parkway, Ardmore, OK, 73401, USA.
New Phytol. 2012 Oct;196(1):92-100. doi: 10.1111/j.1469-8137.2012.04268.x. Epub 2012 Aug 14.
Leaves of many plant species open during the day and fold at night. Diurnal leaf movement, named nyctinasty, has been of great interest to researchers since Darwin's time. Nyctinastic leaf movement is generated by the pulvinus, which is a specialized motor organ located at the base of leaf and leaflet. The molecular basis and functional reason behind nyctinasty are unknown. In a forward screening of a retrotransposon-tagged mutant population of Medicago truncatula, four petiolule-like pulvinus (plp) mutant lines with defects in leaf movement were identified and characterized. Loss of function of PLP results in the change of pulvini to petiolules. PLP is specifically expressed in the pulvinus, as demonstrated by quantitative reverse-transcription polymerase chain reaction analysis, expression analysis of a PLP promoter-β-glucuronidase construct in transgenic plants and in situ hybridization. Microarray analysis revealed that the expression levels of many genes were altered in the mutant during the day and at night. Crosses between the plp mutant and several leaf pattern mutants showed that the developmental mechanisms of pulvini and leaf patterns are likely independent. Our results demonstrated that PLP plays a crucial role in the determination of pulvinus development. Leaf movement generated by pulvini may have an impact on plant vegetative growth.
许多植物物种的叶子在白天展开,晚上合拢。自达尔文时代以来,昼夜节律性叶片运动(即昼夜性)一直引起研究人员的极大兴趣。昼夜性叶片运动是由叶枕产生的,叶枕是位于叶片和小叶基部的一种特殊运动器官。昼夜性叶片运动的分子基础和功能原因尚不清楚。在对蒺藜苜蓿(Medicago truncatula)反转录转座子标记突变体群体的正向筛选中,鉴定并表征了四个叶柄状叶枕(plp)突变体系,它们在叶片运动中存在缺陷。PLP 功能丧失导致叶枕变成叶柄。PLP 特异性地在叶枕中表达,如定量逆转录聚合酶链反应分析、转基因植物中 PLP 启动子-β-葡糖苷酸酶构建体的表达分析和原位杂交所证实。微阵列分析显示,在突变体中,许多基因的表达水平在白天和晚上都发生了改变。plp 突变体与几个叶片模式突变体之间的杂交表明,叶枕和叶片模式的发育机制可能是独立的。我们的研究结果表明,PLP 在叶枕发育的决定中起着关键作用。叶枕产生的叶片运动可能对植物营养生长有影响。