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转 Rubisco 积累因子 2 和 Rubisco 亚基的基因表达提高了玉米的光合作用和生长。

Transgenic expression of Rubisco accumulation factor2 and Rubisco subunits increases photosynthesis and growth in maize.

机构信息

Boyce Thompson Institute, 533 Tower Rd, Ithaca, NY 14853, USA.

Section of Plant Biology, School of Integrative Plant Science, Cornell University, Ithaca, NY 14853, USA.

出版信息

J Exp Bot. 2024 Jul 10;75(13):4024-4037. doi: 10.1093/jxb/erae186.

Abstract

Carbon assimilation by Rubisco is often a limitation to photosynthesis and therefore plant productivity. We have previously shown that transgenic co-expression of the Rubisco large (LS) and small (SS) subunits along with an essential Rubisco accumulation factor, Raf1, leads to faster growth, increased photosynthesis, and enhanced chilling tolerance in maize (Zea mays). Maize also requires Rubisco accumulation factor2 (Raf2) for full accumulation of Rubisco. Here we have analyzed transgenic maize lines with increased expression of Raf2 or Raf2 plus LS and SS. We show that increasing Raf2 expression alone had minor effects on photosynthesis, whereas expressing Raf2 with Rubisco subunits led to increased Rubisco content, more rapid carbon assimilation, and greater plant height, most notably in plants at least 6 weeks of age. The magnitude of the effects was similar to what was observed previously for expression of Raf1 together with Rubisco subunits. Taken together, this suggests that increasing the amount of either assembly factor with Rubisco subunits can independently enhance Rubisco abundance and some aspects of plant performance. These results could also imply either synergy or a degree of functional redundancy for Raf1 and Raf2, the latter of whose precise role in Rubisco assembly is currently unknown.

摘要

Rubisco 的碳同化作用通常是光合作用和植物生产力的限制因素。我们之前曾表明,Rubisco 大亚基(LS)和小亚基(SS)与必需的 Rubisco 积累因子 Raf1 的转基因共表达导致玉米(Zea mays)生长更快、光合作用增强和抗冷性提高。玉米还需要 Rubisco 积累因子 2(Raf2)才能完全积累 Rubisco。在这里,我们分析了 Raf2 或 Raf2 加上 LS 和 SS 表达增加的转基因玉米系。我们表明,单独增加 Raf2 的表达对光合作用的影响很小,而 Rubisco 亚基与 Raf2 共表达导致 Rubisco 含量增加、更快的碳同化和更高的株高,尤其是在至少 6 周龄的植物中。这种影响的大小与之前观察到的 Raf1 与 Rubisco 亚基共表达时的情况相似。总之,这表明与 Rubisco 亚基一起增加任一组装因子的数量都可以独立地提高 Rubisco 的丰度和植物性能的某些方面。这些结果也可能暗示 Raf1 和 Raf2 之间存在协同作用或一定程度的功能冗余,后者在 Rubisco 组装中的精确作用目前尚不清楚。

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