Boyce Thompson Institute, Ithaca, NY, USA.
Cornell University, Ithaca, NY, USA.
J Exp Bot. 2021 Jun 22;72(13):4930-4937. doi: 10.1093/jxb/erab189.
C4 plants, such as maize, strictly compartmentalize Rubisco to bundle sheath chloroplasts. The molecular basis for the restriction of Rubisco from the more abundant mesophyll chloroplasts is not fully understood. Mesophyll chloroplasts transcribe the Rubisco large subunit gene and, when normally quiescent transcription of the nuclear Rubisco small subunit gene family is overcome by ectopic expression, mesophyll chloroplasts still do not accumulate measurable Rubisco. Here we show that a combination of five ubiquitin promoter-driven nuclear transgenes expressed in maize leads to mesophyll accumulation of assembled Rubisco. These encode the Rubisco large and small subunits, Rubisco assembly factors 1 and 2, and the assembly factor Bundle sheath defective 2. In these plants, Rubisco large subunit accumulates in mesophyll cells, and appears to be assembled into a holoenzyme capable of binding the substrate analog CABP (carboxyarabinitol bisphosphate). Isotope discrimination assays suggest, however, that mesophyll Rubisco is not participating in carbon assimilation in these plants, most probably due to a lack of the substrate ribulose 1,5-bisphosphate and/or Rubisco activase. Overall, this work defines a minimal set of Rubisco assembly factors in planta and may help lead to methods of regulating the C4 pathway.
C4 植物,如玉米,严格将 Rubisco 分隔在束鞘叶绿体中。Rubisco 从更丰富的叶肉叶绿体中受到限制的分子基础尚未完全理解。叶肉叶绿体转录 Rubisco 大亚基基因,并且当核 Rubisco 小亚基基因家族的正常静止转录被异位表达克服时,叶肉叶绿体仍然不会积累可测量的 Rubisco。在这里,我们表明,在玉米中表达的五个泛素启动子驱动的核转基因的组合导致 Rubisco 的组装在叶肉中积累。这些基因编码 Rubisco 大亚基和小亚基、Rubisco 组装因子 1 和 2 以及组装因子 Bundle sheath defective 2。在这些植物中,Rubisco 大亚基在叶肉细胞中积累,并似乎组装成能够结合底物类似物 CABP(羧基阿拉伯糖醇二磷酸)的全酶。然而,同位素歧视测定表明,在这些植物中,叶肉 Rubisco 不参与碳同化,最可能是由于缺乏底物核酮糖 1,5-二磷酸和/或 Rubisco 激活酶。总的来说,这项工作确定了植物中最小的 Rubisco 组装因子集,并可能有助于找到调节 C4 途径的方法。