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尺寸对 Bienertia 中的单细胞 C4 光合作用很重要。

Size matters for single-cell C4 photosynthesis in Bienertia.

作者信息

Jurić Ivan, González-Pérez Vinicio, Hibberd Julian M, Edwards Gerald, Burroughs Nigel J

机构信息

Warwick Systems Biology Centre, University of Warwick, Coventry CV4 7AL, UK

Institute of Physics, Bijenička c. 46, PO Box 304, HR-10001 Zagreb, Croatia.

出版信息

J Exp Bot. 2017 Jan;68(2):255-267. doi: 10.1093/jxb/erw374. Epub 2016 Oct 12.

Abstract

Bienertia cycloptera belongs to a diverse set of plants, recently discovered to perform C photosynthesis within individual mesophyll cells. How these plants accomplish high photosynthetic efficiency without adopting Kranz anatomy remains unanswered. By modelling the processes of diffusion, capture, and release of carbon dioxide and oxygen inside a typical Bienertia mesophyll cell geometry, we show that a spatial separation as low as 10 μm between the primary and the secondary carboxylases, can, on its own, provide enough diffusive resistance to sustain a viable C pathway at 20 °C, with a CO leakage <35%. This critical separation corresponds to a cell diameter of 50 μm, consistent with the observed range where Bienertia's mesophyll cells start to develop their characteristic mature anatomy. Our results are robust to significant alterations in model assumptions and environmental conditions, their applicability extending even to aquatic plants.

摘要

圆叶Bienertia属于一组多样的植物,最近发现它们在单个叶肉细胞内进行C4光合作用。这些植物如何在不采用花环结构的情况下实现高光合效率仍是未解之谜。通过对典型的Bienertia叶肉细胞几何结构内二氧化碳和氧气的扩散、捕获和释放过程进行建模,我们表明,初级和次级羧化酶之间低至10μm的空间分离本身就可以提供足够的扩散阻力,以在20°C下维持可行的C4途径,二氧化碳泄漏率<35%。这种关键的分离对应于50μm的细胞直径,与观察到的Bienertia叶肉细胞开始发育其特征性成熟结构的范围一致。我们的结果对于模型假设和环境条件的重大改变具有鲁棒性,其适用性甚至扩展到水生植物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bd4c/5853773/6bf208a68613/erw37401.jpg

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