Department of Biochemistry, University of California, Riverside, CA, United States of America.
PLoS One. 2019 Jul 22;14(7):e0220078. doi: 10.1371/journal.pone.0220078. eCollection 2019.
Superoxide dismutases (SODs) protect against reactive oxygen species (ROS) by detoxifying superoxide. Three types of SOD are present in plants: FeSOD, CuSOD, and MnSOD. The Arabidopsis thaliana genome contains three FeSOD genes, in which two (FSD2, and FSD3) are targeted to chloroplast thylakoids. Loss of FSD2 or FSD3 expression impairs growth and causes leaf bleaching. FSD2 and FSD3 form heterocomplexes present in chloroplast nucleoids, raising the question of whether FSD2 and FSD3 are functionally interchangeable. In this study, we examined how loss of FSD2 or FSD3 expression affects photosynthetic processes and whether overexpression of one compensates for loss of the other. Whereas loss of the cytosolic FSD1 had little effect, an fsd2 mutant exhibited increased superoxide production, reduced chlorophyll levels, lower PSII efficiency, a lower rate of CO2 assimilation, but elevated non-photochemical quenching (NPQ). In contrast, fsd3 mutants failed to survive beyond the seedling stage and overexpression of FSD2 could not rescue the seedlings. Overexpression of FSD3 in an fsd2 mutant, however, partially reversed the fsd2 mutant phenotype resulting in improved growth characteristics. Overexpression of FSD2 or FSD3, either individually or together, had little effect. These results indicate that, despite functioning as FeSODs, FSD2 and FSD3 are functionally distinct.
超氧化物歧化酶(SODs)通过清除超氧化物来保护细胞免受活性氧(ROS)的侵害。植物中存在三种类型的 SOD:FeSOD、CuSOD 和 MnSOD。拟南芥基因组包含三个 FeSOD 基因,其中两个(FSD2 和 FSD3)定位于叶绿体类囊体。FSD2 或 FSD3 表达缺失会损害生长并导致叶片白化。FSD2 和 FSD3 形成存在于叶绿体核仁中的异源复合物,这引发了一个问题,即 FSD2 和 FSD3 是否在功能上可互换。在这项研究中,我们研究了 FSD2 或 FSD3 表达缺失如何影响光合作用过程,以及一种蛋白的过表达是否可以补偿另一种蛋白的缺失。虽然胞质 FSD1 的缺失影响较小,但 fsd2 突变体中超氧化物的产生增加,叶绿素水平降低,PSII 效率降低,CO2 同化率降低,但非光化学猝灭(NPQ)升高。相比之下,fsd3 突变体在幼苗阶段后无法存活,FSD2 的过表达也不能拯救幼苗。然而,FSD3 在 fsd2 突变体中的过表达部分逆转了 fsd2 突变体的表型,导致生长特性得到改善。FSD2 或 FSD3 的单独或共同过表达几乎没有影响。这些结果表明,尽管 FSD2 和 FSD3 都作为 FeSOD 发挥作用,但它们在功能上是不同的。