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Natural genetic variation for morphological and molecular determinants of plant growth and yield

机译:自然遗传变异决定植物生长和产量的形态和分子决定因素

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Although a yield ceiling has been reached for several major crops, enhancements are required to keep up with the demands of the increasing population. Here, traits which could help tackle this issue are discussed.The rates of increase in yield of the main commercial crops have been steadily falling in many areas worldwide. This generates concerns because there is a growing demand for plant biomass due to the increasing population. Plant yield should thus be improved in the context of climate change and decreasing natural resources. It is a major challenge which could be tackled by improving and/or altering light-use efficiency, CO2 uptake and fixation, primary metabolism, plant architecture and leaf morphology, and developmental plant processes. In this review, we discuss some of the traits which could lead to yield increase, with a focus on how natural genetic variation could be harnessed. Moreover, we provide insights for advancing our understanding of the molecular aspects governing plant growth and yield, and propose future avenues for improvement of crop yield. We also suggest that knowledge accumulated over the last decade in the field of molecular physiology should be integrated into new ideotypes.
机译:尽管几种主要农作物的单产都达到了最高水平,但仍需提高产量以适应不断增长的人口需求。在这里,讨论了可以帮助解决该问题的性状。世界许多地区主要商业作物的单产增长率一直在稳步下降。这引起了关注,因为由于人口增加,对植物生物质的需求不断增长。因此,应在气候变化和自然资源减少的情况下提高植物产量。这是一项重大挑战,可以通过提高和/或改变光利用效率,吸收和固定二氧化碳,初级代谢,植物结构和叶片形态以及植物发育过程来解决。在这篇综述中,我们讨论了一些可能导致产量增加的性状,重点是如何利用自然遗传变异。此外,我们提供了一些见识,以增进我们对控制植物生长和产量的分子方面的了解,并提出了改善作物产量的未来途径。我们还建议,在过去的十年中在分子生理学领域积累的知识应整合到新的意识形态中。

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