Yang Feng, Xiao Kunqin, Pan Hongyu, Liu Jinliang
College of Plant Sciences, Jilin University, Changchun, China.
Front Plant Sci. 2021 Mar 3;12:637853. doi: 10.3389/fpls.2021.637853. eCollection 2021.
Higher plants and some algae convert the absorbed light into chemical energy through one of the most important organelles, chloroplast, for photosynthesis and store it in the form of organic compounds to supply their life activities. However, more and more studies have shown that the role of chloroplasts is more than a factory for photosynthesis. In the process of light conversion to chemical energy, any damage to the components of chloroplast may affect the photosynthesis efficiency and promote the production of by-products, reactive oxygen species, that are mainly produced in the chloroplasts. Substantial evidence show that chloroplasts are also involved in the battle of plants and microbes. Chloroplasts are important in integrating a variety of external environmental stimuli and regulate plant immune responses by transmitting signals to the nucleus and other cell compartments through retrograde signaling pathways. Besides, chloroplasts can also regulate the biosynthesis and signal transduction of phytohormones, including salicylic acid and jasmonic acid, to affect the interaction between the plants and microbes. Since chloroplasts play such an important role in plant immunity, correspondingly, chloroplasts have become the target of pathogens. Different microbial pathogens target the chloroplast and affect its functions to promote their colonization in the host plants.
高等植物和一些藻类通过最重要的细胞器之一叶绿体将吸收的光转化为化学能,用于光合作用,并以有机化合物的形式储存起来,以供应其生命活动。然而,越来越多的研究表明,叶绿体的作用不止是一个光合作用的工厂。在光转化为化学能的过程中,叶绿体任何组分的损伤都可能影响光合作用效率,并促进副产物——活性氧的产生,活性氧主要在叶绿体中产生。大量证据表明,叶绿体也参与植物与微生物的对抗。叶绿体在整合各种外部环境刺激以及通过逆行信号通路将信号传递到细胞核和其他细胞区室来调节植物免疫反应方面很重要。此外,叶绿体还可以调节植物激素(包括水杨酸和茉莉酸)的生物合成和信号转导,以影响植物与微生物之间的相互作用。由于叶绿体在植物免疫中发挥如此重要的作用,相应地,叶绿体已成为病原体的靶标。不同的微生物病原体靶向叶绿体并影响其功能,以促进它们在宿主植物中的定殖。