首页> 美国卫生研究院文献>Molecules and Cells >Leaf Variegation in the Rice zebra2 Mutant Is Caused by Photoperiodic Accumulation of Tetra-Cis-Lycopene and Singlet Oxygen
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Leaf Variegation in the Rice zebra2 Mutant Is Caused by Photoperiodic Accumulation of Tetra-Cis-Lycopene and Singlet Oxygen

机译:水稻zebra2突变体中的叶片杂色是由四顺式番茄红素和单线态氧的光周期积累引起的

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摘要

In field conditions, the zebra2 (z2) mutant in rice (Oryza sativa) produces leaves with transverse pale-green/yellow stripes. It was recently reported that ZEBRA2 encodes carotenoid isomerase (CRTISO) and that low levels of lutein, an essential carotenoid for non-photochemical quenching, cause leaf variegation in z2 mutants. However, we found that the z2 mutant phenotype was completely suppressed by growth under continuous light (CL; permissive) conditions, with concentrations of chlorophyll, carotenoids and chloroplast proteins at normal levels in z2 mutants under CL. In addition, three types of reactive oxygen species (ROS; superoxide [O2], hydrogen peroxide [H2O2], and singlet oxygen [1O2]) accumulated to high levels in z2 mutants grown under short-day conditions (SD; alternate 10-h light/14-h dark; restrictive), but do not accumulate under CL conditions. However, the levels of lutein and zeaxanthin in z2 leaves were much lower than normal in both permissive CL and restrictive SD growth conditions, indicating that deficiency of these two carotenoids is not responsible for the leaf variegation phenotype. We found that the CRTISO substrate tetra-cis-lycopene accumulated during the dark periods under SD, but not under CL conditions. Its accumulation was also positively correlated with 1O2 levels generated during the light period, which consequently altered the expression of 1O2-responsive and cell death-related genes in the variegated z2 leaves. Taking these results together, we propose that the z2 leaf variegation can be largely attributed to photoperiodic accumulation of tetra-cis-lycopene and generation of excessive 1O2 under natural day-night conditions.
机译:在田间条件下,水稻(Oryza sativa)中的zebra2(z2)突变体产生的叶子具有浅绿色/黄色横条纹。最近有报道说,ZEBRA2编码类胡萝卜素异构酶(CRTISO),而低水平的叶黄素(非光化学淬灭的必需类胡萝卜素)在z2突变体中引起叶斑。但是,我们发现在连续光照(CL;允许)条件下,在CL下z2突变体中叶绿素,类胡萝卜素和叶绿体蛋白的浓度处于正常水平时,z2突变体的表型被连续光(CL;允许)条件下的生长完全抑制了。此外,三种类型的活性氧(ROS;超氧化物[O2 -],过氧化氢[H2O2]和单重态氧[ 1 O2])积累到高水平在短期条件下生长的z2突变体中(SD;交替10h光照/ 14h黑暗;限制性),但不会在CL条件下积累。但是,在许可的CL和限制性SD生长条件下,z2叶片中的叶黄素和玉米黄质的水平均比正常水平低得多,这表明这两种类胡萝卜素的缺乏与叶片的变异表型无关。我们发现CRTISO底物四顺式番茄红素在黑暗时期在SD下积累,但在CL条件下不积累。它的积累也与光周期期间产生的 1 O2水平呈正相关,从而改变了杂色z2中 1 O2反应性和细胞死亡相关基因的表达。树叶。综合这些结果,我们认为z2叶片的杂色在很大程度上可以归因于自然昼夜条件下四顺式番茄红素的光周期积累和过量的 1 O2的产生。

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