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首页> 外文期刊>Frontiers in Plant Science >Molecular Breeding to Create Optimized Crops: From Genetic Manipulation to Potential Applications in Plant Factories
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Molecular Breeding to Create Optimized Crops: From Genetic Manipulation to Potential Applications in Plant Factories

机译:分子育种创造最佳农作物:从遗传操纵到植物工厂的潜在应用

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Crop cultivation in controlled environment plant factories offers great potential to stabilize the yield and quality of agricultural products. However, many crops are currently unsuited to these environments, particularly closed cultivation systems, due to space limitations, low light intensity, high implementation costs, and high energy requirements. A major barrier to closed system cultivation is the high running cost, which necessitates the use of high-margin crops for economic viability. High-value crops include those with enhanced nutritional value or containing additional functional components for pharmaceutical production or with the aim of providing health benefits. In addition, it is important to develop cultivars equipped with growth parameters that are suitable for closed cultivation. Small plant size is of particular importance due to the limited cultivation space. Other advantageous traits are short production cycle, the ability to grow under low light, and high nutriculture availability. Cost-effectiveness is improved from the use of cultivars that are specifically optimized for closed system cultivation. This review describes the features of closed cultivation systems and the potential application of molecular breeding to create crops that are optimized for cost-effectiveness and productivity in closed cultivation systems.
机译:在受控环境的植物工厂中进行作物种植具有极大的潜力来稳定农产品的产量和质量。然而,由于空间限制,低光强度,高实施成本和高能量需求,许多作物当前不适合这些环境,特别是封闭的栽培系统。封闭系统栽培的主要障碍是高运行成本,这需要使用高利润的农作物以实现经济可行性。高价值农作物包括那些营养价值更高或含有额外功能成分(用于制药)或旨在提供健康益处的农作物。另外,重要的是开发具有适合于封闭栽培的生长参数的栽培品种。由于栽培空间有限,小株型尤为重要。其他有利特性是生产周期短,在弱光下生长的能力以及高养分利用率。通过使用专门针对封闭系统栽培而优化的栽培品种,可以提高成本效益。这篇综述描述了封闭栽培系统的特征以及分子育种在生产作物方面的潜在应用,这些作物针对封闭栽培系统的成本效益和生产力进行了优化。

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