Modifying plant photosynthesis and growth via simultaneous chloroplast transformation of Rubisco large and small subunits
收藏DataONE2020-08-10 更新2025-07-19 收录
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Engineering improved Rubisco poses a crucial strategy for enhancing photosynthesis but is challenged by the alternate locations of the plastome rbcL gene and nuclear RbcS genes. Here we develop a RNAi-RbcS Nicotiana tabacum (tobacco) master-line, tobRrÎS, amenable to rbcL-rbcS co-engineering by chloroplast transformation. Four tobacco genotypes coding alternative rbcS genes and adjoining 5Ë-intergenic sequences revealed Rubisco production was highest in the lines incorporating a rbcS gene whose codon use and 5ËUTR matched rbcL. These lines produced up to 50% the wild-type Rubisco content. Additional tobacco lines coding potato rbcL-rbcS operons examined how the differing mesophyll made small subunits (pS1, pS2, pS3) or the trichome pST-25 subunit influenced Rubisco biogenesis, catalysis, leaf physiology and plant growth. Rubisco levels were ~15% lower in leaves expressing pS3 relative to those producing pS1, pS2, and pST. However, the pS3-subunit increased carboxylation rate (kcatC) by ...
创建时间:
2025-06-25



