Gollan Peter J, Tikkanen Mikko, Aro Eva-Mari
Molecular Plant Biology, Department of Biochemistry, University of Turku, FIN-20014 Turku, Finland.
Molecular Plant Biology, Department of Biochemistry, University of Turku, FIN-20014 Turku, Finland.
Curr Opin Plant Biol. 2015 Oct;27:180-91. doi: 10.1016/j.pbi.2015.07.006. Epub 2015 Aug 25.
Chloroplast retrograde signalling is ultimately dependent on the function of the photosynthetic light reactions and not only guides the acclimation of the photosynthetic apparatus to changing environmental and metabolic cues, but has a much wider influence on the growth and development of plants. New information generated during the past few years about regulation of photosynthetic light reactions and identification of the underlying regulatory proteins has paved the way towards better understanding of the signalling molecules produced in chloroplasts upon changes in the environment. Likewise, the availability of various mutants lacking regulatory functions has made it possible to address the role of excitation energy distribution and electron flow in the thylakoid membrane in inducing the retrograde signals from chloroplasts to the nucleus. Such signalling molecules also induce and interact with hormonal signalling cascades to provide comprehensive information from chloroplasts to the nucleus.
叶绿体逆行信号最终依赖于光合光反应的功能,它不仅引导光合机构适应不断变化的环境和代谢信号,而且对植物的生长发育有更广泛的影响。在过去几年中产生的关于光合光反应调控和潜在调控蛋白鉴定的新信息,为更好地理解环境变化时叶绿体中产生的信号分子铺平了道路。同样,各种缺乏调控功能的突变体的出现,使得研究类囊体膜中激发能分布和电子流在诱导从叶绿体到细胞核的逆行信号中的作用成为可能。这些信号分子还诱导激素信号级联反应并与之相互作用,从而将叶绿体的全面信息传递给细胞核。