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C3植物维管束鞘中淀粉的积累:C4光合作用的一个可能先决条件。

Starch Accumulation in the Bundle Sheaths of C3 Plants: A Possible Pre-Condition for C4 Photosynthesis.

作者信息

Miyake Hiroshi

机构信息

Graduate School of Bioagricultural Sciences, Nagoya University, Chikusa, Nagoya, 464-8601 Japan

出版信息

Plant Cell Physiol. 2016 May;57(5):890-6. doi: 10.1093/pcp/pcw046. Epub 2016 Mar 2.

Abstract

C4 plants have evolved >60 times from their C3 ancestors. C4 photosynthesis requires a set of closely co-ordinated anatomical and biochemical characteristics. However, it is now recognized that the evolution of C4 plants requires fewer changes than had ever been considered, because of the genetic, biochemical and anatomical pre-conditions of C3 ancestors that were recruited into C4 photosynthesis. Therefore, the pre-conditions in C3 plants are now being actively investigated to clarify the evolutionary trajectory from C3 to C4 plants and to engineer C4 traits efficiently into C3 crops. In the present mini review, the anatomical characteristics of C3 and C4 plants are briefly reviewed and the importance of the bundle sheath for the evolution of C4 photosynthesis is described. For example, while the bundle sheath of C3 rice plants accumulates large amounts of starch in the developing leaf blade and at the lamina joint of the mature leaf, the starch sheath function is also observed during leaf development in starch accumulator grasses regardless of photosynthetic type. The starch sheath function of C3 plants is therefore also implicated as a possible pre-condition for the evolution of C4 photosynthesis. The phylogenetic relationships between the types of storage carbohydrates and of photosynthesis need to be clarified in the future.

摘要

C4植物已从其C3祖先进化了60多次。C4光合作用需要一系列紧密协调的解剖学和生化特征。然而,现在人们认识到,由于被纳入C4光合作用的C3祖先的遗传、生化和解剖学前提条件,C4植物的进化所需的变化比以往认为的要少。因此,目前正在积极研究C3植物中的前提条件,以阐明从C3植物到C4植物的进化轨迹,并将C4性状有效地导入C3作物。在本综述中,简要回顾了C3和C4植物的解剖学特征,并描述了维管束鞘对C4光合作用进化的重要性。例如,虽然C3水稻植株的维管束鞘在发育中的叶片和成熟叶片的叶节处积累大量淀粉,但在淀粉积累型禾本科植物的叶片发育过程中,无论光合类型如何,都能观察到淀粉鞘功能。因此,C3植物的淀粉鞘功能也被认为是C4光合作用进化的一个可能前提条件。储存碳水化合物类型与光合作用类型之间的系统发育关系有待于未来进一步阐明。

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