Wang Ke, Xu Feiyun, Yuan Wei, Sun Leyun, Wang Shaoxian, Aslam Mehtab Muhammad, Zhang Jianhua, Xu Weifeng
College of Life Sciences, Joint International Research Laboratory of Water and Nutrient in Crop and College of Resources and Environment, Fujian Agriculture and Forestry University, 350002, Fuzhou, China.
Department of Biology, Hong Kong Baptist University, Hong Kong, China.
Rice (N Y). 2021 Jul 15;14(1):67. doi: 10.1186/s12284-021-00507-7.
G protein γ subunit qPE9-1 plays multiple roles in rice growth and development. However, the role of qPE9-1 in rice exposed to elevated carbon dioxide concentration (eCO) is unknown. Here, we investigated its role in the regulation of rice growth under eCO conditions using qPE9-1 overexpression (OE) lines, RNAi lines and corresponding WT rice. Compared to atmospheric carbon dioxide concentration (aCO), relative expression of qPE9-1 in rice leaf was approximately tenfold higher under eCO. Under eCO, the growth of WT and qPE9-1-overexpressing rice was significantly higher than under aCO. Moreover, there was no significant effect of eCO on the growth of qPE9-1 RNAi lines. Furthermore, WT and qPE9-1-overexpressing rice showed higher net photosynthetic rate and carbohydrate content under eCO than under aCO. Moreover, the relative expression of some photosynthesis related genes in WT, but not in RNAi3 line, showed significant difference under eCO in RNA-seq analysis. Compared to WT and RNAi lines, the rbcL gene expression and Rubisco content of rice leaves in qPE9-1-overexpressors were higher under eCO. Overall, these results suggest that qPE9-1 is involved in rice adaptation under elevated CO concentration by regulating leaf photosynthesis via moderating rice photosynthetic light reaction and Rubisco content.
G蛋白γ亚基qPE9-1在水稻生长发育中发挥多种作用。然而,qPE9-1在暴露于高浓度二氧化碳(eCO)环境下的水稻中的作用尚不清楚。在此,我们使用qPE9-1过表达(OE)系、RNA干扰系和相应的野生型水稻,研究了其在eCO条件下对水稻生长调控中的作用。与大气二氧化碳浓度(aCO)相比,在eCO条件下,水稻叶片中qPE9-1的相对表达量约高10倍。在eCO条件下,野生型和qPE9-1过表达水稻的生长显著高于aCO条件下。此外,eCO对qPE9-1 RNA干扰系的生长没有显著影响。此外,与aCO条件相比,野生型和qPE9-1过表达水稻在eCO条件下表现出更高的净光合速率和碳水化合物含量。此外,在RNA测序分析中,野生型中一些与光合作用相关基因的相对表达在eCO条件下有显著差异,而RNA干扰3系中则没有。与野生型和RNA干扰系相比,在eCO条件下,qPE9-1过表达植株水稻叶片的rbcL基因表达和核酮糖-1,5-二磷酸羧化酶含量更高。总体而言,这些结果表明,qPE9-1通过调节水稻光合光反应和核酮糖-1,5-二磷酸羧化酶含量来调控叶片光合作用,从而参与高浓度CO条件下水稻的适应性过程。