首页> 外文期刊>Biotechnology Advances: An International Review Journal >Dynamic root growth and architecture responses to limiting nutrient availability: linking physiological models and experimentation.
【24h】

Dynamic root growth and architecture responses to limiting nutrient availability: linking physiological models and experimentation.

机译:动态根系生长和结构对限制养分供应的响应:将生理模型和实验联系起来。

获取原文
获取原文并翻译 | 示例
           

摘要

In recent years the study of root phenotypic plasticity in response to sub-optimal environmental factors and the genetic control of these responses have received renewed attention. As a path to increased productivity, in particular for low fertility soils, several applied research projects worldwide target the improvement of crop root traits both in plant breeding and biotechnology contexts. To assist these tasks and address the challenge of optimizing root growth and architecture for enhanced mineral resource use, the development of realistic simulation models is of great importance. We review this research field from a modeling perspective focusing particularly on nutrient acquisition strategies for crop production on low nitrogen and low phosphorous soils. Soil heterogeneity and the dynamics of nutrient availability in the soil pose a challenging environment in which plants have to forage efficiently for nutrients in order to maintain their internal nutrient homeostasis throughout their life cycle. Mathematical models assist in understanding plant growth strategies and associated root phenes that have potential to be tested and introduced in physiological breeding programs. At the same time, we stress that it is necessary to carefully consider model assumptions and development from a whole plant-resource allocation perspective and to introduce or refine modules simulating explicitly root growth and architecture dynamics through ontogeny with reference to key factors that constrain root growth. In this view it is important to understand negative feedbacks such as plant-plant competition. We conclude by briefly touching on available and developing technologies for quantitative root phenotyping from lab to field, from quantification of partial root profiles in the field to 3D reconstruction of whole root systems. Finally, we discuss how these approaches can and should be tightly linked to modeling to explore the root phenome.
机译:近年来,对次优环境因素响应的根表型可塑性的研究以及这些响应的遗传控制受到了新的关注。作为提高生产力的途径,特别是在低肥力土壤上,全世界范围内的一些应用研究项目都致力于在植物育种和生物技术领域中改善作物根系性状。为了协助完成这些任务并应对优化根系生长和建筑结构以增强矿产资源利用的挑战,开发逼真的仿真模型非常重要。我们从建模的角度审视了该研究领域,特别是在低氮和低磷土壤上,针对作物生产的养分获取策略。土壤异质性和土壤中养分利用率的动态构成了一个充满挑战的环境,在这种环境中,植物必须有效地觅食养分,以在整个生命周期中保持内部养分的体内稳态。数学模型有助于理解植物的生长策略和相关的根酚,它们有可能在生理育种程序中进行测试和引入。同时,我们强调,有必要从整个植物资源分配的角度认真考虑模型假设和开发,并引入或完善模块,通过本体论明确地模拟根系生长和体系结构动力学,并参考限制根系生长的关键因素。 。在这种观点下,了解负面反馈(例如植物-植物竞争)非常重要。最后,我们简要介绍了从实验室到现场进行定量根表型分析的可用技术,这些技术从田间部分根轮廓的定量到整个根系的3D重建。最后,我们讨论了如何以及应该将这些方法与建模紧密联系起来以探索根表型。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号