Vanhaeren Hannes, Nam Youn-Jeong, De Milde Liesbeth, Chae Eunyoung, Storme Veronique, Weigel Detlef, Gonzalez Nathalie, Inzé Dirk
Department of Plant Systems Biology, VIB, 9052 Gent, Belgium (H.V., Y.-J.N., L.D.M., V.S., N.G., D.I.); Department of Plant Biotechnology and Bioinformatics, Ghent University, 9052 Gent, Belgium (H.V., Y.-J.N., L.D.M., V.S., N.G., D.I.); INRA Bordeaux-Aquitaine, 33140 Villenave d'Ornon, France (N.G.); and Department of Molecular Biology, Max Planck Institute for Developmental Biology, Tübingen, Germany (E.C., D.W.).
Department of Plant Systems Biology, VIB, 9052 Gent, Belgium (H.V., Y.-J.N., L.D.M., V.S., N.G., D.I.); Department of Plant Biotechnology and Bioinformatics, Ghent University, 9052 Gent, Belgium (H.V., Y.-J.N., L.D.M., V.S., N.G., D.I.); INRA Bordeaux-Aquitaine, 33140 Villenave d'Ornon, France (N.G.); and Department of Molecular Biology, Max Planck Institute for Developmental Biology, Tübingen, Germany (E.C., D.W.)
Plant Physiol. 2017 Feb;173(2):1269-1282. doi: 10.1104/pp.16.01410. Epub 2016 Dec 21.
The final size of plant organs is determined by a combination of cell proliferation and cell expansion. Leaves account for a large part of above-ground biomass and provide energy to complete the plant's life cycle. Although the final size of leaves is remarkably constant under fixed environmental conditions, several genes have been described to enhance leaf growth when their expression is modulated. In Arabidopsis (Arabidopsis thaliana), mutations in DA1 and BB increase leaf size, an effect that is synergistically enhanced in the double mutant. Here, we show that overexpression of a dominant-negative version of DA1 enhances leaf size in a broad range of natural accessions of this species, indicating a highly conserved role of this protein in controlling organ size. We also found that during early stages of development, leaves of da1-1 and bb/eod1-2 mutants were already larger than the isogenic Col-0 wild type, but this phenotype was triggered by different cellular mechanisms. Later during development, da1-1 and bb/eod1-2 leaves showed a prolonged longevity, which was enhanced in the double mutant. Conversely, ectopic expression of DA1 or BB restricted growth and promoted leaf senescence. In concert, shortly upon induction of DA1 and BB expression, several marker genes for the transition from proliferation to expansion were highly up-regulated. Additionally, multiple genes involved in maintaining the mitotic cell cycle were rapidly down-regulated and senescence genes were strongly up-regulated, particularly upon BB induction. With these results, we demonstrate that DA1 and BB restrict leaf size and promote senescence through converging and different mechanisms.
植物器官的最终大小由细胞增殖和细胞扩张共同决定。叶片占地上生物量的很大一部分,并为完成植物生命周期提供能量。尽管在固定环境条件下叶片的最终大小非常恒定,但已有描述表明,当一些基因的表达受到调控时,它们会促进叶片生长。在拟南芥中,DA1和BB的突变会增加叶片大小,这种效应在双突变体中会协同增强。在这里,我们表明,过表达显性负性形式的DA1会增加该物种广泛自然群体中的叶片大小,这表明该蛋白在控制器官大小方面具有高度保守的作用。我们还发现,在发育早期,da1-1和bb/eod1-2突变体的叶片已经比同基因的Col-0野生型更大,但这种表型是由不同的细胞机制触发的。在发育后期,da1-1和bb/eod1-2叶片的寿命延长,在双突变体中这种延长更为明显。相反,DA1或BB的异位表达会限制生长并促进叶片衰老。一致的是,在诱导DA1和BB表达后不久,几个从增殖向扩张转变的标记基因被高度上调。此外,多个参与维持有丝分裂细胞周期的基因迅速下调,衰老基因强烈上调,尤其是在诱导BB时。通过这些结果,我们证明DA1和BB通过趋同和不同的机制限制叶片大小并促进衰老。