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Review
. 2015 Apr;206(1):57-73.
doi: 10.1111/nph.13209. Epub 2015 Jan 7.

Flood adaptive traits and processes: an overview

Affiliations
Free article
Review

Flood adaptive traits and processes: an overview

Laurentius A C J Voesenek et al. New Phytol. 2015 Apr.
Free article

Abstract

Unanticipated flooding challenges plant growth and fitness in natural and agricultural ecosystems. Here we describe mechanisms of developmental plasticity and metabolic modulation that underpin adaptive traits and acclimation responses to waterlogging of root systems and submergence of aerial tissues. This includes insights into processes that enhance ventilation of submerged organs. At the intersection between metabolism and growth, submergence survival strategies have evolved involving an ethylene-driven and gibberellin-enhanced module that regulates growth of submerged organs. Opposing regulation of this pathway is facilitated by a subgroup of ethylene-response transcription factors (ERFs), which include members that require low O₂ or low nitric oxide (NO) conditions for their stabilization. These transcription factors control genes encoding enzymes required for anaerobic metabolism as well as proteins that fine-tune their function in transcription and turnover. Other mechanisms that control metabolism and growth at seed, seedling and mature stages under flooding conditions are reviewed, as well as findings demonstrating that true endurance of submergence includes an ability to restore growth following the deluge. Finally, we highlight molecular insights obtained from natural variation of domesticated and wild species that occupy different hydrological niches, emphasizing the value of understanding natural flooding survival strategies in efforts to stabilize crop yields in flood-prone environments.

Keywords: adventitious roots; aerenchyma; ethylene; flooding physiology; hypoxia; radial oxygen loss; submergence; waterlogging.

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References

    1. Abiko T, Obara M. 2014. Enhancement of porosity and aerenchyma formation in nitrogen-deficient rice roots. Plant Science 215-216: 76-83.
    1. Abiko TT, Kotula LL, Shiono KK, Imran AI, Malik Al, Colmer TDT, Nakazono MM. 2012. Enhanced formation of aerenchyma and induction of a barrier to radial oxygen loss in adventitious roots of Zea nicaraguensis contribute to its waterlogging tolerance as compared with maize (Zea mays ssp. mays). Plant, Cell & Environment 35: 1618-1630.
    1. Armstrong W, Cousins D, Armstrong J, Turner DW, Beckett PM. 2000. Oxygen distribution in wetland plant roots and permeability barriers to gas-exchange with the rhizosphere: a microelectrode and modelling study with Phragmites australis. Annals of Botany 86: 687-703.
    1. Ayano M, Kani T, Kojima M, Sakakibara H, Kitaoka T, Kuroha T, Angeles-Shim RB, Kitano H, Nagai K, Ashikari M. 2014. Gibberellin biosynthesis and signal transduction is essential for internode elongation in deepwater rice. Plant, Cell & Environment 37: 2313-2324.
    1. Baena-Gonzalez E, Rolland F, Thevelein JM, Sheen J. 2007. A central integrator of transcription networks in plant stress and energy signaling. Nature 448: 938-942.

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