School of Life Sciences, Jawaharlal Nehru University, New Delhi, India.
Department of Plant Biology, Department of Biochemistry, and Center of Biophysics & Quantitative Biology, University of Illinois at Urbana-Champaign, Urbana, IL, USA.
Plant Biotechnol J. 2022 Aug;20(8):1518-1532. doi: 10.1111/pbi.13830. Epub 2022 Jun 12.
An important method to improve photosynthesis in C crops, such as rice and wheat, is to transfer efficient C characters to them. Here, cytosolic carbonic anhydrase (CA: βCA3) of the C Flaveria bidentis (Fb) was overexpressed under the control of S promoter in Arabidopsis thaliana, a C plant, to enhance its photosynthetic efficiency. Overexpression of CA resulted in a better supply of the substrate for the endogenous phosphoenolpyruvate carboxylase in the cytosol of the overexpressers, and increased its activity for generating malate that feeds into the tricarboxylic acid cycle. This provided additional carbon skeleton for increased synthesis of amino acids aspartate, asparagine, glutamate, and glutamine. Increased amino acids contributed to higher protein content in the transgenics. Furthermore, expression of FbβCA3 in Arabidopsis led to a better growth due to expression of several genes leading to higher chlorophyll content, electron transport, and photosynthetic carbon assimilation in the transformants. Enhanced CO assimilation resulted in increased sugar and starch content, and plant dry weight. In addition, transgenic plants had lower stomatal conductance, reduced transpiration rate, and higher water-use efficiency. These results, taken together, show that expression of C CA in the cytosol of a C plant can indeed improve its photosynthetic capacity with enhanced water-use efficiency.
提高水稻和小麦等 C 作物光合作用的一个重要方法是将高效的 C 特性转移到它们身上。在这里,我们在拟南芥(C 植物)中过表达了来自 Flaveria bidentis(Fb)的细胞质碳酸酐酶(CA:βCA3),该基因受 S 启动子的控制,以提高其光合作用效率。CA 的过表达为过表达细胞溶质中内源性磷酸烯醇丙酮酸羧化酶的底物提供了更好的供应,并且增加了其生成苹果酸的活性,从而进入三羧酸循环。这为增加氨基酸天冬氨酸、天冬酰胺、谷氨酸和谷氨酰胺的合成提供了额外的碳骨架。增加的氨基酸导致转基因植物中的蛋白质含量更高。此外,FbβCA3 在拟南芥中的表达由于表达了几个导致叶绿体含量、电子传递和光合碳同化增加的基因,从而导致了拟南芥的更好生长。增强的 CO 同化导致糖和淀粉含量增加,以及植物干重增加。此外,转基因植物的气孔导度较低,蒸腾速率降低,水分利用效率提高。这些结果表明,C 植物细胞质中 C CA 的表达确实可以提高其光合作用能力,并提高水分利用效率。