Photoassimilate Distribution Plants and Crops Source-Sink RelationshipsAdopting an interdisciplinary approach to the study of photoassimilate partitioning and source-sink relationhips, this work details the major aspects of source-sink physiology and metabolism, the integration of individual components and photoassimilate partitioning, and the whole plant source-sink relationships in 16 agriculturally important crops. The work examines in detail the components of carbon partitioning, such as ecology, photosynthesis, loading, transport and anatomy, and discusses the impact of genetic, environmental and agrotechnical factors on the parts of whole plant source-link physiology. |
Contents
1 | |
THE INTEGRATION OF SOURCESINK COMPONENTS | 311 |
WHOLE PLANT SOURCESINK RELATIONSHIPS OF SELECTED CROPS | 501 |
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accumulation acid activity amylopectin apoplastic assimilate associated Biochem branching carbohydrate carbon cells changes characterization chloroplast concentration crop cytoplasm decrease dependent determined effects endosperm environment enzyme et al evidence expression flowering fructan fruit function gene genetic glucose grain growth higher important increase indicate inhibition invertase involved isolated leaf leaves levels light limited loading maize mature mechanism membrane metabolism molecular mutants nitrogen observed occur organs partitioning pathway phloem phosphate photosynthesis physiological Plant Cell Plant Physiol potato potential Preiss present processes production protein ratio reaction reduced regulation relationship relative respiration response rice role root seed shoot showed similar sink soybean species starch starch synthesis stem storage stress structure studies sucrose sucrose synthase sugar suggested supply synthesis temperature tissue translocation transport tubers unloading uptake yield