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Biotechnology of nutrient uptake and assimilation in plants

机译:植物养分吸收与吸收的生物技术

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Plants require a complex balance of mineral nutrients to reproduce successfully. Because the availability of many of these nutrients in the soil is compromised by several factors, such as soil pH, cation presence, and microbial activity, crop plants depend directly on nutrients applied as fertilizers to achieve high yields. However, the excessive use of fertilizers is a major environmental concern due to nutrient leaching that causes water eutrophication and promotes toxic algae blooms. This situation generates the urgent need for crop plants with increased nutrient use efficiency and better-designed fertilization schemes.The plant biology revolution triggered by the development of efficient gene transfer systems for plant cells together with the more recent development of next-generation DNA and RNA sequencing and other omics platforms have advanced considerably our understanding on the molecular basis of plant nutrition and how plants respond to nutritional stress.To date, genes encoding sensors, transcription factors, transporters, and metabolic enzymes have been identified as potential candidates to improve nutrient use efficiency. In addition, the study of other genetic resources, such as bacteria and fungi, allows the identification of alternative mechanisms of nutrient assimilation, which are potentially applicable in plants. Although significant progress in this respect has been achieved by conventional breeding, in this review we focus on the biotechnological approaches reported to date aimed at boosting the use of the three most limiting nutrients in the majority of arable lands: nitrogen, phosphorus, and iron.
机译:植物需要复杂的矿物质营养平衡才能成功繁殖。由于土壤中许多营养素的可用性受到土壤pH值,阳离子存在和微生物活性等多种因素的影响,因此农作物直接依赖于用作肥料的营养素来获得高产。但是,由于养分浸出会导致水体富营养化并促进有毒藻类大量繁殖,因此过度使用肥料是主要的环境问题。这种情况迫切需要具有更高养分利用效率和更好设计的施肥方案的作物植物。植物生物学革命是由植物细胞有效基因转移系统的发展以及下一代DNA和RNA的最新发展引发的测序和其他组学平台大大提高了我们对植物营养的分子基础以及植物如何应对营养压力的理解。迄今为止,编码传感器,转录因子,转运蛋白和代谢酶的基因已被确定为改善营养利用的潜在候选者效率。此外,对其他遗传资源(例如细菌和真菌)的研究,可以确定营养同化的替代机制,这可能适用于植物。尽管常规育种已在这方面取得了重大进展,但在本综述中,我们将重点关注迄今为止报道的旨在提高大多数耕地中氮,磷和铁的三种最限制性养分的使用的生物技术方法。

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