Abstract
The plant vascular system serves as a conduit for delivery of both nutrients and signaling molecules to various distantly located organs. The anucleate sieve tube system of the angiosperm phloem delivers sugars and amino acids to developing organs, and has recently been shown to contain a unique population of RNA and proteins. Grafting studies have established that a number of these macromolecules are capable of moving long distances between tissues, thus providing support for operation of a phloem-mediated inter-organ communication network. Currently, our knowledge of the roles played by such phloem-borne macromolecules is in its infancy. Here, we show that, in tomato, translocation of a phloem-mobile cyclophilin, SlCyp1, from a wild-type scion into a mutant rootstock results in restoration of vascular development and lateral root initiation. This process occurs through reactivation of auxin response pathways and reprogramming of the root transcriptome. Moreover, we show that long-distance trafficking of SlCyp1 is associated with regulation of the shoot-to-root ratio in response to changing light intensities, by modulating root growth. We conclude that long-distance trafficking of SlCyp1 acts as a rheostat to control the shoot-to-root ratio, by mediating root development to integrate photosynthesis and light intensity with requirements for access to water and mineral nutrients.
Keywords
Solanum lycopersicum
auxin
cyclophilin
diageotropica
phloem
root development
shoot-to-root ratio
MeSH Terms
Biological Transport
Cyclophilins/genetics,metabolism
Gene Expression Regulation, Plant
Indoleacetic Acids/metabolism
Lycopersicon esculentum/genetics,metabolism
Mutation
Phloem/genetics,metabolism
Photosynthesis/physiology
Plant Proteins/metabolism
Plant Roots/genetics,growth & development,metabolism
Plant Shoots/genetics,growth & development,metabolism
Plants, Genetically Modified
Signal Transduction
Chemicals
Indoleacetic Acids
Plant Proteins
Cyclophilins
Authors & Affiliations
9 authors, click to expand affiliations / ORCID
Spiegelman Ziv
The Robert H. Smith Institute of Plant Sciences and Genetics in Agriculture, and The Otto Warburg Minerva Centre for Agricultural Biotechnology, The Robert H. Smith Faculty of Agriculture, Food and Environment, Hebrew University of Jerusalem, Rehovot, 76100, Israel.
Ham Byung-Kook
Department of Plant Biology, College of Biological Sciences, University of California at Davis, Davis, CA, 95616, USA.
Zhang Zhaoliang
Department of Plant Biology, College of Biological Sciences, University of California at Davis, Davis, CA, 95616, USA.
Toal Ted W
Department of Plant Biology, College of Biological Sciences, University of California at Davis, Davis, CA, 95616, USA.
Brady Siobhan M
Department of Plant Biology, College of Biological Sciences, University of California at Davis, Davis, CA, 95616, USA.
Zheng Yi
Boyce Thompson Institute for Plant Research, Cornell University, Ithaca, NY, 14853, USA.
Fei Zhangjun
Boyce Thompson Institute for Plant Research, Cornell University, Ithaca, NY, 14853, USA. | US Department of Agriculture, Robert W. Holley Center for Agriculture and Health, Ithaca, NY, 14853, USA.
Lucas William J
Department of Plant Biology, College of Biological Sciences, University of California at Davis, Davis, CA, 95616, USA.
Wolf Shmuel
The Robert H. Smith Institute of Plant Sciences and Genetics in Agriculture, and The Otto Warburg Minerva Centre for Agricultural Biotechnology, The Robert H. Smith Faculty of Agriculture, Food and Environment, Hebrew University of Jerusalem, Rehovot, 76100, Israel.