首页> 外文期刊>Plant Biotechnology Journal >Systems biology and metabolic modelling unveils limitations to polyhydroxybutyrate accumulation in sugarcane leaves; lessons for C-4 engineering
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Systems biology and metabolic modelling unveils limitations to polyhydroxybutyrate accumulation in sugarcane leaves; lessons for C-4 engineering

机译:系统生物学和代谢模型推出甘蔗叶中多羟基丁酸盐积聚的限制; C-4工程的课程

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摘要

In planta production of the bioplastic polyhydroxybutyrate (PHB) is one important way in which plant biotechnology can address environmental problems and emerging issues related to peak oil. However, high biomass C-4 plants such as maize, switch grass and sugarcane develop adverse phenotypes including stunting, chlorosis and reduced biomass as PHB levels in leaves increase. In this study, we explore limitations to PHB accumulation in sugarcane chloroplasts using a systems biology approach, coupled with a metabolic model of C-4 photosynthesis. Decreased assimilation was evident in high PHB-producing sugarcane plants, which also showed a dramatic decrease in sucrose and starch content of leaves. A subtle decrease in the C/N ratio was found which was not associated with a decrease in total protein content. An increase in amino acids used for nitrogen recapture was also observed. Based on the accumulation of substrates of ATP-dependent reactions, we hypothesized ATP starvation in bundle sheath chloroplasts. This was supported by mRNA differential expression patterns. The disruption in ATP supply in bundle sheath cells appears to be linked to the physical presence of the PHB polymer which may disrupt photosynthesis by scattering photosynthetically active radiation and/or physically disrupting thylakoid membranes.
机译:在Planta生产的生物塑料多羟基丁酸盐(PHB)中是一种重要的方式,其中植物生物技术可以解决环境问题和与峰油有关的新出现问题。然而,高生物量C-4植物如玉米,开关草和甘蔗,产生不良表型,包括静止,氯化和降低生物量,因为叶片的PHB水平增加。在这项研究中,我们利用系统生物学方法探讨了甘蔗叶绿体中PHB积聚的限制,与C-4光合作用的代谢模型相结合。在生产高pHB的甘蔗植物中,同化率下降,这也表现出蔗糖和淀粉含量的显着降低。发现C / N比的微妙降低,其与总蛋白质含量的降低无关。还观察到用于氮重量的氨基酸的增加。基于ATP依赖反应底物的积累,我们假设束纹卟啉的ATP饥饿。这是通过mRNA差异表达模式的支持。在束鞘细胞中的ATP供应中断似乎与PHB聚合物的物理存在相关联,这可能通过散射光合作用辐射和/或物理破坏紫花状膜来破坏光合作用。

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