Research Group on Plant Biology under Mediterranean conditions, Departament de Biologia, Universitat de les Illes Balears / Institute of Agro-Environmental Research and Water Economy -INAGEA, Carretera de Valldemossa, 07122, Palma, Spain.
Research Group on Plant Biology under Mediterranean conditions, Departament de Biologia, Universitat de les Illes Balears / Institute of Agro-Environmental Research and Water Economy -INAGEA, Carretera de Valldemossa, 07122, Palma, Spain.
Trends Plant Sci. 2019 Oct;24(10):947-958. doi: 10.1016/j.tplants.2019.07.002. Epub 2019 Jul 27.
Until recently, few data were available on photosynthesis and its underlying mechanistically limiting factors in plants, other than crops and model species. Currently, a new large pool of data from extant representatives of basal terrestrial plant groups is emerging, allowing exploration of how photosynthetic capacity (A) increases from minimum values in bryophytes to maximum in tracheophytes, which is associated to an optimization of the balance between its limiting factors. From predominant mesophyll conductance limitation (l) in bryophytes and lycophytes (fern allies) to stomatal conductance (l) and l colimitation in pteridophytes (ferns) and gymnosperms, a balanced colimitation by the three limitations is finally reached in angiosperms. We discuss the implications of this new knowledge for future biotechnological attempts to improve crop photosynthesis.
直到最近,除了作物和模式物种外,关于光合作用及其潜在机制限制因素的数据在植物中还很少。目前,基础陆地植物群代表的新的大量数据正在涌现,这使得人们能够探究光合作用能力 (A) 如何从苔藓植物的最小值增加到维管植物的最大值,这与对其限制因素之间平衡的优化有关。从主要的叶肉导度限制(l)在苔藓植物和石松类植物(蕨类植物的亲缘植物)到在蕨类植物和裸子植物中的气孔导度(l)和 l 共限制,最终在被子植物中达到了由三个限制因素的平衡共限制。我们讨论了这一新知识对未来生物技术改进作物光合作用尝试的影响。