Hauenstein Mareike, Hörtensteiner Stefan, Aubry Sylvain
Department of Plant and Microbial Biology University of Zürich Zürich Switzerland.
Plant Direct. 2022 Aug 24;6(8):e441. doi: 10.1002/pld3.441. eCollection 2022 Aug.
Disposing efficiently and safely chlorophyll derivatives during senescence requires a coordinated pathway that is well conserved throughout green plants. The PAO/phyllobilin pathway catalyzes the degradation of the chlorophyll during senescence and allows detoxification of the pigment and its subsequent export from the chloroplast. Although most of the chloroplastic reactions involved in chlorophyll degradation are well understood, the diversity of enzymes responsible for downstream modifications of non-phototoxic phyllobilins remains to be explored. More than 40 phyllobilins have been described to date, but only three enzymes catalyzing side-chain reactions have been identified in , namely, TIC55, CYP89A9, and MES16. Here, by generating a triple mutant, we evaluate the extent to which these enzymes are influencing the rate and amplitude of chlorophyll degradation at the metabolite as well as its regulation at the transcriptome level. Our data show that major side-chain modifications of phyllobilins do not influence significantly chlorophyll degradation or leaf senescence, letting the physiological relevance of their striking diversity an open question.
在衰老过程中高效且安全地处理叶绿素衍生物需要一条在所有绿色植物中都高度保守的协调途径。PAO/叶胆素途径催化衰老过程中叶绿素的降解,并使色素解毒并随后从叶绿体输出。尽管参与叶绿素降解的大多数叶绿体反应已得到充分了解,但负责非光毒性叶胆素下游修饰的酶的多样性仍有待探索。迄今为止,已描述了40多种叶胆素,但仅在拟南芥中鉴定出三种催化侧链反应的酶,即TIC55、CYP89A9和MES16。在这里,通过生成一个三重突变体,我们评估了这些酶在代谢物水平上影响叶绿素降解速率和幅度的程度以及它们在转录组水平上的调控情况。我们的数据表明,叶胆素的主要侧链修饰对叶绿素降解或叶片衰老没有显著影响,这使得它们显著多样性的生理相关性成为一个悬而未决的问题。