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首页> 外文期刊>The New Phytologist >Applying modelling experiences from the past to shape crop systems biology: the need to converge crop physiology and functional genomics
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Applying modelling experiences from the past to shape crop systems biology: the need to converge crop physiology and functional genomics

机译:将过去的建模经验应用于塑造作物系统生物学:融合作物生理学和功能基因组学的需求

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Functional genomics has been driven greatly by emerging experimental technologies. Its development as a scientific discipline will be enhanced by systems biology, which generates novel, quantitative hypotheses via modelling. However, in order to better assist crop improvement, the impact of developing functional genomics needs to be assessed at the crop level, given a projected diminishing effect of genetic alteration on phenotypes from the molecule to crop levels. This review illustrates a recently proposed research field, crop systems biology, which is located at the crossroads of crop physiology and functional genomics, and intends to promote communications between the two. Past experiences with modelling whole-crop physiology indicate that the layered structure of biological systems should be taken into account. Moreover, modelling not only plays a role in data synthesis and quantitative prediction, but certainly also in heuristics and system design. These roles of modelling can be applied to crop systems biology to enhance its contribution to our understanding of complex crop phenotypes and subsequently to crop improvement. The success of crop systems biology needs commitments from scientists along the entire knowledge chain of plant biology, from molecule or gene to crop and agro-ecosystem.
机译:新兴的实验技术极大地推动了功能基因组学的发展。系统生物学将促进其作为一门科学学科的发展,该系统生物学将通过建模产生新颖的定量假设。然而,为了更好地协助作物改良,鉴于基因改变对从分子水平到作物水平的表型的预期减弱作用,需要在作物水平上评估开发功能基因组学的影响。这篇评论阐明了最近提出的研究领域,即作物系统生物学,它位于作物生理学和功能基因组学的交汇处,旨在促进两者之间的交流。过去对全作物生理进行建模的经验表明,应考虑生物系统的分层结构。此外,建模不仅在数据合成和定量预测中起作用,而且在启发式和系统设计中当然也起作用。建模的这些作用可以应用于作物系统生物学,以增强其对我们对复杂作物表型的理解以及随后对作物改良的贡献。作物系统生物学的成功需要科学家在整个植物生物学知识链中作出承诺,从分子或基因到作物和农业生态系统。

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