The science of plant hydraulics has long sought to understand the fundamental mechanisms of how water moves through plant vascular systems. Over the last 50 yr, advances in our understanding of embolism formation, hydraulic segmentation, and refilling were generated both through novel measurements and model development. This knowledge provided a foundation of mechanistic understanding that has impacted fields of study from crop physiology to the global hydrologic cycle. Scientific advances in our understanding of plant hydraulics and its implications for plant function have arguably accelerated over the last two decades. New empirical and modeling approaches have been applied to tackle some of our largest challenges, and different perspectives have been integrated to better understand the entire vascular system.
Hydraulics in the 21st century
Nardini A.
2019-01-01
Abstract
The science of plant hydraulics has long sought to understand the fundamental mechanisms of how water moves through plant vascular systems. Over the last 50 yr, advances in our understanding of embolism formation, hydraulic segmentation, and refilling were generated both through novel measurements and model development. This knowledge provided a foundation of mechanistic understanding that has impacted fields of study from crop physiology to the global hydrologic cycle. Scientific advances in our understanding of plant hydraulics and its implications for plant function have arguably accelerated over the last two decades. New empirical and modeling approaches have been applied to tackle some of our largest challenges, and different perspectives have been integrated to better understand the entire vascular system.File | Dimensione | Formato | |
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