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首页> 外文期刊>Frontiers in Plant Science >Marginal Lands to Grow Novel Bio-Based Crops: A Plant Breeding Perspective
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Marginal Lands to Grow Novel Bio-Based Crops: A Plant Breeding Perspective

机译:边缘地区以种植新的生物作物:植物育种观点

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The biomass demand to fuel a growing global bio-based economy is expected to tremendously increase over the next decades, and projections indicate that dedicated biomass crops will satisfy a large portion of it. The establishment of dedicated biomass crops raises huge concerns, as they can subtract land that is required for food production, undermining food security. In this context, perennial biomass crops suitable for cultivation on marginal lands (MALs) raise attraction, as they could supply biomass without competing for land with food supply. While these crops withstand marginal conditions well, their biomass yield and quality do not ensure acceptable economic returns to farmers and cost-effective biomass conversion into bio-based products, claiming genetic improvement. However, this is constrained by the lack of genetic resources for most of these crops. Here we first review the advantages of cultivating novel perennial biomass crops on MALs, highlighting management practices to enhance the environmental and economic sustainability of these agro-systems. Subsequently, we discuss the preeminent breeding targets to improve the yield and quality of the biomass obtainable from these crops, as well as the stability of biomass production under MALs conditions. These targets include crop architecture and phenology, efficiency in the use of resources, lignocellulose composition in relation to bio-based applications, and tolerance to abiotic stresses. For each target trait, we outline optimal ideotypes, discuss the available breeding resources in the context of (orphan) biomass crops, and provide meaningful examples of genetic improvement. Finally, we discuss the available tools to breed novel perennial biomass crops. These comprise conventional breeding methods (recurrent selection and hybridization), molecular techniques to dissect the genetics of complex traits, speed up selection, and perform transgenic modification (genetic mapping, QTL and GWAS analysis, marker-assisted selection, genomic selection, transformation protocols), and novel high-throughput phenotyping platforms. Furthermore, novel tools to transfer genetic knowledge from model to orphan crops (i.e., universal markers) are also conceptualized, with the belief that their development will enhance the efficiency of plant breeding in orphan biomass crops, enabling a sustainable use of MALs for biomass provision.
机译:在未来几十年中,预计将燃料日益增长的全球生物的经济的生物质的需求预计将增加,并且预测表明专用生物质作物将满足其中的大部分。专用生物量作物的建立提出了巨大的担忧,因为它们可以减去食品生产所需的土地,破坏粮食安全。在这种情况下,适用于边缘土地(MALS)培养的多年生生物量作物培养吸引力,因为它们可以在不竞争与食物供应的情况下提供生物量。虽然这些作物良好地承受了边缘条件,但它们的生物质产量和质量不会确保农民的可接受的经济回报和成本效益的生物量转换为生物的产品,索取遗传改善。然而,这受到缺乏遗传资源对于大多数这些作物的限制。在这里,我们首先审查了在MALS上培养了新型多年生生物量作物的优势,突出了管理措施,以提高这些农业系统的环境和经济可持续性。随后,我们讨论了卓越的育种目标,以提高可从这些作物获得的生物质的产量和质量,以及在MALS条件下的生物质产生的稳定性。这些目标包括作物建筑和诸如使用资源的效率,木质纤维素组合物与生物基的应用,以及对非生物应激的耐受性。对于每个目标特征,我们概述最佳意识式字,讨论(孤儿)生物质作物的上下文中的可用育种资源,并提供有意义的遗传改进的实例。最后,我们讨论了培育新款多年生生物质作物的可用工具。这些包含常规的育种方法(复发选择和杂交),分子技术将复杂性状的遗传描述,加速选择和进行转基因修饰(遗传映射,QTL和GWAS分析,标记辅助选择,基因组选择,转化方案)和新型高吞吐量表型平台。此外,从模型转移到孤儿作物(即普遍标记)的新型工具也是概念化的,因为他们的发展将提高孤儿生物量作物的植物育种效率,从而实现生物量的可持续利用MALS 。

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