4.7 Review

The angiosperm phloem sieve tube system: a role in mediating traits important to modern agriculture

Journal

JOURNAL OF EXPERIMENTAL BOTANY
Volume 65, Issue 7, Pages 1799-1816

Publisher

OXFORD UNIV PRESS
DOI: 10.1093/jxb/ert417

Keywords

Carbon allocation; epigenetics; phloem long-distance signalling; production agriculture; protein trafficking; yield potential

Categories

Funding

  1. National Science Foundation [IOS-0752997]
  2. USDA National Institute of Food and Agriculture [NIFA 201015479]

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This review focuses on recent advances in the area of phloem biology, with emphasis on the long-distance delivery of proteins, mRNA and small RNAs as signaling agents that function to integrate developmental and physiological events at the whole plant level.The plant vascular system serves a vital function by distributing water, nutrients and hormones essential for growth and development to the various organs of the plant. In this review, attention is focused on the role played by the phloem as the conduit for delivery of both photosynthate and information macromolecules, especially from the context of its mediation in traits that are important to modern agriculture. Resource allocation of sugars and amino acids, by the phloem, to specific sink tissues is of importance to crop yield and global food security. Current findings are discussed in the context of a hierarchical control network that operates to integrate resource allocation to competing sinks. The role of plasmodesmata that connect companion cells to neighbouring sieve elements and phloem parenchyma cells is evaluated in terms of their function as valves, connecting the sieve tube pressure manifold system to the various plant tissues. Recent studies have also revealed that plasmodesmata and the phloem sieve tube system function cooperatively to mediate the long-distance delivery of proteins and a diverse array of RNA species. Delivery of these information macromolecules is discussed in terms of their roles in control over the vegetative-to-floral transition, tuberization in potato, stress-related signalling involving miRNAs, and genetic reprogramming through the delivery of 24-nucleotide small RNAs that function in transcriptional gene silencing in recipient sink organs. Finally, we discuss important future research areas that could contribute to developing agricultural crops with engineered performance characteristics for enhance yield potential.

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