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Impairment of Lhca4 a subunit of LHCI causes high accumulation of chlorophyll and the stay-green phenotype in rice

机译:LhCI的一个亚基Lhca4的受损导致水稻中叶绿素的大量积累和保持绿色的表型

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摘要

Chlorophyll is an essential molecule for acquiring light energy during photosynthesis. Mutations that result in chlorophyll retention during leaf senescence are called ‘stay-green’ mutants. One of the several types of stay-green mutants, Type E, accumulates high levels of chlorophyll in the pre-senescent leaves, resulting in delayed yellowing. We isolated delayed yellowing1-1 (dye1-1), a rice mutant whose yellowing is delayed in the field. dye1-1 accumulated more chlorophyll than the wild-type in the pre-senescent and senescent leaves, but did not retain leaf functionality in the ‘senescent green leaves’, suggesting that dye1-1 is a Type E stay-green mutant. Positional cloning revealed that DYE1 encodes Lhca4, a subunit of the light-harvesting complex I (LHCI). In dye1-1, amino acid substitution occurs at the location of a highly conserved amino acid residue involved in pigment binding; indeed, a severely impaired structure of the PSI-LHCI super-complex in dye1-1 was observed in a blue native PAGE analysis. Nevertheless, the biomass and carbon assimilation rate of dye1-1 were comparable to those in the wild-type. Interestingly, Lhcb1, a trimeric LHCII protein, was highly accumulated in dye1-1, in the chlorophyll–protein complexes. The high accumulation of LHCII in the LHCI mutant dye1 suggests a novel functional interaction between LHCI and LHCII.
机译:叶绿素是在光合作用过程中获取光能的重要分子。在叶片衰老过程中导致叶绿素保留的突变称为“保持绿色”突变体。几种保持绿色的突变体之一,E型,在衰老前的叶片中积累了高水平的叶绿素,导致黄化延迟。我们分离了延迟变黄的稻米变黄1-1(dye1-1),该变种在田间变黄。染料1-1在衰老前和衰老叶片中比野生型积累了更多的叶绿素,但在“衰老的绿色叶片”中没有保留叶片功能,这表明染料1-1是E型保持绿色突变体。位置克隆表明,DYE1编码Lhca4,即光捕获复合体I(LHCI)的一个亚基。在染料1-1中,氨基酸取代发生在与颜料结合的高度保守的氨基酸残基的位置。实际上,在蓝色天然PAGE分析中观察到了染料1-1中PSI-LHCI超复合物的严重受损结构。然而,染料1-1的生物量和碳同化率与野生型相当。有趣的是,三聚体LHCII蛋白Lhcb1在叶绿素-蛋白复合物中的染料1-1中高度积累。 LHCI突变染料1中LHCII的高积累表明LHCI和LHCII之间的新型功能相互作用。

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