State Key Laboratory of Crop Biology, College of Life Sciences, Shandong Agricultural University, Tai' an, 271018, Shandong, China.
Protoplasma. 2023 Jul;260(4):1193-1205. doi: 10.1007/s00709-023-01840-y. Epub 2023 Feb 7.
Chloroplast is one of the most sensitive organelles to heat stress in plants. In chloroplasts, various proteases affect photosynthesis by degrading proteins under stress conditions. Tomato Lutescent2 (SlL2), a chloroplast zinc metalloprotease, was previously reported to alter chloroplast development and delay fruit ripening. However, its enzyme activity and roles in plant response to abiotic stress are still unclear. Here, we confirmed that the SlL2 protein which localized on thylakoid membrane was an ATP-independent hydrolase, and SlL2 gene responded to heat stress. Phenotype analysis showed that SlL2 plays a negative role in the heat-response mechanism. Under heat stress, the transgenic plants overexpressing SlL2 (OE) grew worse than the wild type (WT), as reflected by their decreased membrane stability, osmotic-regulating substance, and antioxidative enzyme activities, as well as increased reactive oxygen species (ROS) accumulation. By contrast, l2 mutant line showed the opposite phenotype and corresponding physiological indices under heat stress. In addition, overexpression of SlL2 decreased the photosynthetic activities, especially photosystem II. Moreover, SlL2 was found to interact with chloroplast-located chaperone protein SlCDJ1, decreasing its content under heat stress. These results indicate that SlL2 reduces the thermotolerance of tomato by reducing the content of SlCDJ1.
叶绿体是植物中对热应激最敏感的细胞器之一。在叶绿体中,各种蛋白酶在应激条件下通过降解蛋白质来影响光合作用。先前报道称,番茄黄体 2(SlL2)是一种叶绿体锌金属蛋白酶,可改变叶绿体发育并延迟果实成熟。然而,其酶活性和在植物应对非生物胁迫中的作用尚不清楚。在这里,我们证实 SlL2 蛋白定位于类囊体膜上,是一种不依赖于 ATP 的水解酶,并且 SlL2 基因对热应激有反应。表型分析表明 SlL2 在热响应机制中起负作用。在热胁迫下,过表达 SlL2 的转基因植物(OE)的生长状况比野生型(WT)差,这反映在它们的膜稳定性、渗透调节物质和抗氧化酶活性降低,以及活性氧(ROS)积累增加。相比之下,l2 突变体在热胁迫下表现出相反的表型和相应的生理指标。此外,过表达 SlL2 降低了光合作用活性,尤其是光系统 II。此外,发现 SlL2 与定位于叶绿体的伴侣蛋白 SlCDJ1 相互作用,在热应激下其含量降低。这些结果表明,SlL2 通过降低 SlCDJ1 的含量来降低番茄的耐热性。