Unverified paper record
Assessing Long-Distance Carbon Partitioning from Photosynthetic Source Leaves to Heterotrophic Sink Organs with Photoassimilated [ 14 C]CO 2 .
Methods in molecular biology (Clifton, N.J.) · 1 Jan 2019 · 10.1007/978-1-4939-9562-2_19
Abstract
Phloem loading and long-distance transport of photoassimilate from source leaves to sink organs are essential physiological processes that contribute to plant growth and yield. At a minimum, three steps are involved: phloem loading in source organs, transport along the phloem path, and phloem unloading in sink organs. Each of these can have variable rates contingent on the physiological state of the plant, and thereby influence the overall transport rate. In addition to these phloem transport steps, rates of photosynthesis and photosynthate movement in the pre-phloem path, as well as photosynthate utilization in post phloem tissues of sink organs also contribute to phloem transport. The protocol described here estimates carbon allocation along the entire path from initial carbon fixation to delivery to sink organs after a labeling pulse: [ 14 C]CO 2 is photoassimilated in source leaves and loading and transport of the 14 C label to heterotrophic sink organs (roots) is quantified by scintillation counting. This method is flexible and can be adapted to quantify long-distance transport in many plant species.
Plant phenotyping relevance
植物の炭素配分・長距離輸送を定量する再利用可能なプロトコルが研究の中心であり、植物の生理状態を測定する方法論的研究である。
abstractThe protocol described here estimates carbon allocation along the entire path from initial carbon fixation to delivery to sink organs after a labeling pulse
abstract[ 14 C]CO 2 is photoassimilated in source leaves and loading and transport of the 14 C label to heterotrophic sink organs (roots) is quantified by scintillation counting.
Code and data availability
公開本文の所在を確認できませんでした。非公開または購読が必要な可能性があります。
No evidence-backed public reproduction asset is currently recorded.
This is an automatically classified, unverified record. Curator approval is required before any resource enters the Catalog.