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Constitutive overexpression of RAM1 leads to an increase in arbuscule density in Brachypodium distachyon

Lena Maria Müller, Lidia Campos-Soriano, Véronique Lévesque-Tremblay, Armando Bravo, Dierdra A Daniels, Sunita Pathak, Hee-Jin Park, Maria J. Harrison
Lena Maria Müller
Boyce Thompson Institute CITY: Ithaca STATE: NY United States Of America [US]
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  • For correspondence: Lena.Mueller@miami.edu
Lidia Campos-Soriano
Boyce Thompson Institute for Plant Research CITY: Ithaca STATE: New York United States Of America [US]
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  • For correspondence: lidia.campos@cragenomica.es
Véronique Lévesque-Tremblay
Boyce Thompson Institute CITY: Ithaca STATE: NY United States Of America [US]
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  • For correspondence: krupplefactor5@gmail.com
Armando Bravo
Boyce Thompson Institute for Plant Research CITY: Ithaca STATE: New York United States Of America [US]
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  • For correspondence: AB2284@cornell.edu
Dierdra A Daniels
Boyce Thompson Institute for Plant Research CITY: Ithaca STATE: New York United States Of America [US]
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  • For correspondence: dierdra777@yahoo.com
Sunita Pathak
Boyce Thompson Institute for Plant Research CITY: Ithaca STATE: New York United States Of America [US]
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  • For correspondence: psunita980@gmail.com
Hee-Jin Park
Boyce Thompson Institute CITY: Ithaca STATE: New York POSTAL_CODE: 14850 United States Of America [US]
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  • For correspondence: phj4960@gmail.com
Maria J. Harrison
Boyce Thompson Institute for Plant Research Boyce Thompson Institute for Plant Research, Tower Road CITY: Ithaca STATE: New York POSTAL_CODE: 14853 United States Of America [US]
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  • For correspondence: mjh78@cornell.edu

Published September 2020. DOI: https://doi.org/10.1104/pp.20.00997

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  • {copyright, serif} 2020 American Society of Plant Biologists. All rights reserved.

Abstract

Arbuscular mycorrhizal (AM) symbiosis is a mutually beneficial association of plants and fungi of the sub-phylum Glomeromycotina. Endosymbiotic AM fungi colonize the inner cortical cells of the roots, where they form branched hyphae called arbuscules that function in nutrient exchange with the plant. To support arbuscule development and subsequent bidirectional nutrient exchange, the root cortical cells undergo substantial transcriptional re-programming. REDUCED ARBUSCULAR MYCORRHIZA 1 (RAM1), previously studied in several dicot plant species, is a major regulator of this cortical cell transcriptional program. Here, we generated ram1 mutants and RAM1 overexpressors in a monocot, Brachypodium distachyon. The AM phenotypes of two ram1 lines revealed that RAM1 is only partly required to enable arbuscule development in B. distachyon. Transgenic lines constitutively overexpressing BdRAM1 showed constitutive expression of AM-inducible genes even in the shoots. Following inoculation with AM fungi, BdRAM1-overexpressing roots showed higher arbuscule densities relative to controls, indicating the potential to manipulate the relative proportion of symbiotic interfaces via modulation of RAM1. However, the overexpressors also show altered expression of hormone biosynthesis genes and aberrant growth patterns including stunted bushy shoots and poor seed set. While these phenotypes possibly provide additional clues about the scope of influence of BdRAM1, they also indicate that directed approaches to increase the density of symbiotic interfaces will require a more focused, potentially cell-type specific manipulation of transcription factor gene expression.

  • Received July 28, 2020.
  • Accepted August 20, 2020.

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Overexpression of RAM1 increases arbuscule density
Lena Maria Müller, Lidia Campos-Soriano, Véronique Lévesque-Tremblay, Armando Bravo, Dierdra A Daniels, Sunita Pathak, Hee-Jin Park, Maria J. Harrison
Plant Physiology Sep 2020, pp.00997.2020; DOI: 10.1104/pp.20.00997

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Overexpression of RAM1 increases arbuscule density
Lena Maria Müller, Lidia Campos-Soriano, Véronique Lévesque-Tremblay, Armando Bravo, Dierdra A Daniels, Sunita Pathak, Hee-Jin Park, Maria J. Harrison
Plant Physiology Sep 2020, pp.00997.2020; DOI: 10.1104/pp.20.00997
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Plant Physiology: 184 (4)
Plant Physiology
Vol. 184, Issue 4
Dec 2020
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