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小米作为一种很有前途的 C4 模式作物,可用于可持续生物燃料生产。

Millet as a promising C4 model crop for sustainable biofuel production.

机构信息

Department of Plant Sciences, School of Life Sciences, University of Hyderabad, Hyderabad, Telangana, India.

Department of Plant Sciences, School of Life Sciences, University of Hyderabad, Hyderabad, Telangana, India.

出版信息

J Biotechnol. 2024 Nov 20;395:110-121. doi: 10.1016/j.jbiotec.2024.09.019. Epub 2024 Sep 28.

Abstract

The rapid depletion of conventional fuel resources and rising energy demand has accelerated the search for alternative energy sources. Further, the expanding need to use bioenergy crops for sustainable fuel production has enhanced the competition for agricultural land, raising the "food vs. fuel" competition. Considering this, producing bioenergy crops on marginal land has a great perspective for achieving sustainable bioenergy production and mitigating the negative impacts of climate change. C4 crops are dual-purpose crops with better efficiency to fix atmospheric CO and convert solar energy into lignocellulosic biomass. Of these, millets have gained worldwide attention due to their climate resilience and nutraceutical properties. Due to close synteny with contemporary C4 bioenergy crops, millets are being considered a model crop for studying diverse agronomically important traits associated with biomass production. Millets can be cultivated on marginal land with minimum fertilizer inputs and maximum biomass production. In this regard, advanced molecular approaches, including marker-assisted breeding, multi-omics approaches, and gene-editing technologies, can be employed to genetically engineer these crops for enhanced biofuel production efficiency. The current study aims to provide an overview of millets as a sustainable bioenergy source and underlines the significance of millets as a C4 model to elucidate the genes and pathways involved in lignocellulosic biomass production using advanced molecular biology approaches.

摘要

常规燃料资源的迅速枯竭和能源需求的不断增长,加速了人们对替代能源的寻找。此外,为了可持续地生产生物燃料而扩大对生物能源作物的需求,加剧了“粮食与燃料”的竞争。考虑到这一点,在边际土地上生产生物能源作物对于实现可持续的生物能源生产和缓解气候变化的负面影响具有广阔的前景。C4 作物是具有双重用途的作物,其固定大气 CO2 和将太阳能转化为木质纤维素生物质的效率更高。其中,小米由于其对气候的适应能力和营养特性而受到全球关注。由于与当代 C4 生物能源作物具有紧密的同线性,小米被认为是研究与生物质生产相关的各种重要农艺性状的模式作物。小米可以在边际土地上种植,只需少量肥料投入就能实现最大的生物量生产。在这方面,可以采用先进的分子方法,包括标记辅助选择、多组学方法和基因编辑技术,对这些作物进行基因工程改造,以提高生物燃料生产效率。本研究旨在概述小米作为一种可持续生物能源的潜力,并强调小米作为 C4 模型的重要性,以利用先进的分子生物学方法阐明木质纤维素生物质生产涉及的基因和途径。

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