The Robert H Smith Institute of Plant Sciences and Genetics in Agriculture, The Hebrew University of Jerusalem, Rehovot 7610001, Israel.
The Robert H Smith Institute of Plant Sciences and Genetics in Agriculture, The Hebrew University of Jerusalem, Rehovot 7610001, Israel.
Plant Sci. 2019 May;282:49-59. doi: 10.1016/j.plantsci.2018.05.008. Epub 2018 May 17.
Plants are autotrophic organisms in which there are linear relationships between the rate at which organic biomass is accumulated and many ambient parameters such as water, nutrients, CO and solar radiation. These linear relationships are the result of good feedback regulation between a plants sensing of the environment and the optimization of its performance response. In this review, we suggest that continuous monitoring of the plant physiological profile in response to changing ambient conditions could be a useful new phenotyping tool, allowing the characterization and comparison of different levels of functional phenotypes and productivity. This functional physiological phenotyping (FPP) approach can be integrated into breeding programs, which are facing difficulties in selecting plants that perform well under abiotic stress. Moreover, high-throughput FPP will increase the efficiency of the selection of traits that are closely related to environmental interactions (such as plant water status, water-use efficiency, stomatal conductance, etc.) thanks to its high resolution and dynamic measurements. One of the important advantages of FPP is, its simplicity and effectiveness and compatibility with experimental methods that use load-cell lysimeters and ambient sensors. In the future, this platform could help with phenotyping of complex physiological traits, beneficial for yield gain to enhance functional breeding approaches and guide in crop modeling.
植物是自养生物,其有机生物量的积累速度与水、养分、CO 和太阳辐射等许多环境参数之间存在线性关系。这些线性关系是植物对环境的感知与性能响应优化之间良好反馈调节的结果。在本综述中,我们建议对植物生理特征进行连续监测,以响应不断变化的环境条件,这可能是一种有用的新表型分析工具,可以对不同功能表型和生产力水平进行表征和比较。这种功能生理表型(FPP)方法可以集成到育种计划中,这些计划在选择在非生物胁迫下表现良好的植物方面遇到困难。此外,由于其高分辨率和动态测量,高通量 FPP 将提高与环境相互作用密切相关的性状选择的效率(例如植物水分状况、水分利用效率、气孔导度等)。FPP 的一个重要优点是,它简单有效,并且与使用称重传感器测渗计和环境传感器的实验方法兼容。在未来,该平台将有助于对复杂生理性状进行表型分析,有利于提高功能育种方法的产量增益,并为作物模型提供指导。