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How can we make plants grow faster? A source-sink perspective on growth rate. | LitMetric

How can we make plants grow faster? A source-sink perspective on growth rate.

J Exp Bot

Department of Animal and Plant Sciences, University of Sheffield, Sheffield S10 2TN, UK

Published: January 2016

AI Article Synopsis

  • Growth is crucial for the fitness, competition, and yield of plants, making it essential to understand the factors that limit it in agriculture and ecology.
  • Source-sink interactions play a key role in determining plant growth, highlighting how sources (like leaves that produce energy) and sinks (like fruits that consume energy) affect overall growth dynamics.
  • A comprehensive, whole-plant approach is needed to identify growth limitations and improve crop productivity, incorporating insights from physiology, resource allocation, and development.

Article Abstract

Growth is a major component of fitness in all organisms, an important mediator of competitive interactions in plant communities, and a central determinant of yield in crops. Understanding what limits plant growth is therefore of fundamental importance to plant evolution, ecology, and crop science, but each discipline views the process from a different perspective. This review highlights the importance of source-sink interactions as determinants of growth. The evidence for source- and sink-limitation of growth, and the ways in which regulatory molecular feedback systems act to maintain an appropriate source:sink balance, are first discussed. Evidence clearly shows that future increases in crop productivity depend crucially on a quantitative understanding of the extent to which sources or sinks limit growth, and how this changes during development. To identify bottlenecks limiting growth and yield, a holistic view of growth is required at the whole-plant scale, incorporating mechanistic interactions between physiology, resource allocation, and plant development. Such a holistic perspective on source-sink interactions will allow the development of a more integrated, whole-system level understanding of growth, with benefits across multiple disciplines.

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Source
http://dx.doi.org/10.1093/jxb/erv447DOI Listing

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