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Accumulation of chlorophyll catabolites photosensitizes the hypersensitive response elicited by Pseudomonas syringae in Arabidopsis

机译:叶绿素分解代谢产物的积累使拟南芥中丁香假单胞菌引起的过敏反应更加光敏​​。

摘要

• The staygreen (SGR) gene encodes a chloroplast-targeted protein which promotes chlorophyll degradation via disruption of light-harvesting complexes (LHCs). • Over-expression of SGR in Arabidopsis (SGR-OX) in a Columbia-0 (Col-0) background caused spontaneous necrotic flecking. To relate this to the hypersensitive response (HR), Col-0, SGR-OX and RNAi SGR (SGRi) lines were challenged with Pseudomonas syringae pv tomato (Pst) encoding the avirulence gene avrRpm1. Increased and decreased SGR expression, respectively, accelerated and suppressed the kinetics of HR-cell death. In Col-0, SGR transcript increased at 6  h after inoculation (hai) when tissue electrolyte leakage indicated the initiation of cell death. • Excitation of the chlorophyll catabolite pheophorbide (Pheide) leads to the formation of toxic singlet oxygen ((1)O(2)). Pheide was first detected at 6  hai with Pst avrRpm1 and was linked to (1)O(2) generation and correlated with reduced Pheide a oxygenase (PaO) protein concentrations. The maximum quantum efficiency of photosystem II (F(v)/F(m)), quantum yield of electron transfer at photosystem II (φPSII), and photochemical quenching (qP) decreased at 6  hai in Col-0 but not in SGRi. Disruption of photosynthetic electron flow will cause light-dependent H(2)O(2) generation at 6  hai. • We conclude that disruption of LHCs, possibly influenced by SGR, and absence of PaO produce phototoxic chlorophyll catabolites and oxidative stress leading to the HR.
机译:•保持绿色(SGR)基因编码以叶绿体为目标的蛋白质,该蛋白质通过破坏光采复合物(LHC)促进叶绿素降解。 •在哥伦比亚0(Col-0)背景下拟南芥(SGR-OX)中SGR的过度表达导致自发性坏死斑点。为了将此与超敏反应(HR)相关联,用编码无毒力基因avrRpm1的丁香假单胞菌pv番茄(Pst)攻击Col-0,SGR-OX和RNAi SGR(SGRi)品系。 SGR表达的增加和减少分别加速和抑制了HR细胞死亡的动力学。在Col-0中,接种后6 h(hai),SGR转录物增加,这是因为组织电解质渗漏表明细胞死亡开始。 •激发叶绿素分解代谢物脱镁叶绿酸(Pheide)会导致形成有毒的单线态氧((1)O(2))。苯丙氨酸首先在6 hai用Pst avrRpm1检测到,并与(1)O(2)产生相关,并与减少的苯丙氨酸加氧酶(PaO)蛋白浓度相关。在Col-0处6 hai,光系统II的最大量子效率(F(v)/ F(m)),在光系统II处电子转移的量子产率(φPSII)和光化学猝灭(qP)下降,但在SGRi中没有下降。光合电子流的破坏将导致在6 hai的光依赖H(2)O(2)生成。 •我们得出的结论是,可能受到SGR影响的LHC的破坏以及PaO的缺乏会产生光毒性的叶绿素分解代谢产物和氧化应激,从而导致HR。

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