Department of Applied Plant Science, Graduate School of Agricultural Sciences, Tohoku University, Japan.
Plant Cell Environ. 2013 Jun;36(6):1147-59. doi: 10.1111/pce.12049. Epub 2013 Jan 7.
During leaf senescence, Rubisco is gradually degraded and its components are recycled within the plant. Although Rubisco can be mobilized to the vacuole by autophagy via specific autophagic bodies, the importance of this process in Rubisco degradation has not been shown directly. Here, we monitored Rubisco autophagy during leaf senescence by fusing synthetic green fluorescent protein (sGFP) or monomeric red fluorescent protein (mRFP) with Rubisco in Arabidopsis (Arabidopsis thaliana). When attached leaves were individually exposed to darkness to promote their senescence, the fluorescence of Rubisco-sGFP was observed in the vacuolar lumen as well as chloroplasts. In addition, release of free-sGFP due to the processing of Rubisco-sGFP was observed in the vacuole of individually darkened leaves. This vacuolar transfer and processing of Rubisco-sGFP was not observed in autophagy-deficient atg5 mutants. Unlike sGFP, mRFP was resistant to proteolysis in the leaf vacuole of light-grown plants. The vacuolar transfer and processing of Rubisco-mRFP was observed at an early stage of natural leaf senescence and was also obvious in leaves naturally covered by other leaves. These results indicate that autophagy contributes substantially to Rubisco degradation during natural leaf senescence as well as dark-promoted senescence.
在叶片衰老过程中,Rubisco 逐渐降解,其组件在植物体内被回收。虽然 Rubisco 可以通过特定的自噬体通过自噬被动员到液泡中,但这个过程在 Rubisco 降解中的重要性尚未被直接证明。在这里,我们通过将合成绿色荧光蛋白(sGFP)或单体红色荧光蛋白(mRFP)与拟南芥(Arabidopsis thaliana)中的 Rubisco 融合,监测了叶片衰老过程中的 Rubisco 自噬。当附着的叶片单独暴露在黑暗中以促进其衰老时,Rubisco-sGFP 的荧光在液泡腔以及叶绿体中都可以观察到。此外,在单独黑暗处理的叶片的液泡中观察到由于 Rubisco-sGFP 的加工而释放的游离 sGFP。在自噬缺陷型 atg5 突变体中没有观察到 Rubisco-sGFP 的这种液泡转移和加工。与 sGFP 不同,mRFP 在光照生长的植物的叶片液泡中不易被蛋白酶水解。Rubisco-mRFP 的液泡转移和加工在自然叶片衰老的早期阶段就可以观察到,在被其他叶片自然覆盖的叶片中也很明显。这些结果表明,自噬对自然叶片衰老和黑暗促进的衰老过程中 Rubisco 的降解有很大的贡献。