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Role of aquaporin activity in regulating deep and shallow root hydraulic conductance during extreme drought

Publication ,  Journal Article
Johnson, DM; Sherrard, ME; Domec, J-C; Jackson, RB
Published in: Trees (Berlin, Germany : West)
October 2014

KEY MESSAGE : Deep root hydraulic conductance is upregulated during severe drought and is associated with upregulation in aquaporin activity. In 2011, Texas experienced the worst single-year drought in its recorded history and, based on tree-ring data, likely its worst in the past millennium. In the Edwards Plateau of Texas, rainfall was 58 % lower and the mean daily maximum temperatures were >5 °C higher than long-term means in June through September, resulting in extensive tree mortality. To better understand the balance of deep and shallow root functioning for water supply, we measured root hydraulic conductance (K R) in deep (~20 m) and shallow (5–10 cm) roots of Quercus fusiformis at four time points in the field in 2011. Deep roots of Q. fusiformis obtained water from a perennial underground (18–20 m) stream that was present even during the drought. As the drought progressed, deep root K R increased 2.6-fold from early season values and shallow root K R decreased by 50 % between April and September. Inhibitor studies revealed that aquaporin contribution to K R increased in deep roots and decreased in shallow roots as the drought progressed. Deep root aquaporin activity was upregulated during peak drought, likely driven by increased summer evaporative demand and the need to compensate for declining shallow root K R. A whole-tree hydraulic transport model predicted that trees with greater proportions of deep roots would have as much as five times greater transpiration during drought periods and could sustain transpiration during droughts without experiencing total hydraulic failure. Our results suggest that trees shift their dependence on deep roots versus shallow roots during drought periods, and that upregulation of aquaporin activity accounts for at least part of this increase.

Duke Scholars

Published In

Trees (Berlin, Germany : West)

DOI

EISSN

1432-2285

ISSN

0931-1890

Publication Date

October 2014

Volume

28

Issue

5

Start / End Page

1323 / 1331

Related Subject Headings

  • Forestry
  • 3108 Plant biology
  • 3103 Ecology
  • 3007 Forestry sciences
  • 0705 Forestry Sciences
  • 0607 Plant Biology
  • 0602 Ecology
 

Citation

APA
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ICMJE
MLA
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Johnson, D. M., Sherrard, M. E., Domec, J.-C., & Jackson, R. B. (2014). Role of aquaporin activity in regulating deep and shallow root hydraulic conductance during extreme drought. Trees (Berlin, Germany : West), 28(5), 1323–1331. https://doi.org/10.1007/s00468-014-1036-8
Johnson, Daniel M., Mark E. Sherrard, Jean-Christophe Domec, and Robert B. Jackson. “Role of aquaporin activity in regulating deep and shallow root hydraulic conductance during extreme drought.” Trees (Berlin, Germany : West) 28, no. 5 (October 2014): 1323–31. https://doi.org/10.1007/s00468-014-1036-8.
Johnson DM, Sherrard ME, Domec J-C, Jackson RB. Role of aquaporin activity in regulating deep and shallow root hydraulic conductance during extreme drought. Trees (Berlin, Germany : West). 2014 Oct;28(5):1323–31.
Johnson, Daniel M., et al. “Role of aquaporin activity in regulating deep and shallow root hydraulic conductance during extreme drought.” Trees (Berlin, Germany : West), vol. 28, no. 5, Oct. 2014, pp. 1323–31. Epmc, doi:10.1007/s00468-014-1036-8.
Johnson DM, Sherrard ME, Domec J-C, Jackson RB. Role of aquaporin activity in regulating deep and shallow root hydraulic conductance during extreme drought. Trees (Berlin, Germany : West). 2014 Oct;28(5):1323–1331.
Journal cover image

Published In

Trees (Berlin, Germany : West)

DOI

EISSN

1432-2285

ISSN

0931-1890

Publication Date

October 2014

Volume

28

Issue

5

Start / End Page

1323 / 1331

Related Subject Headings

  • Forestry
  • 3108 Plant biology
  • 3103 Ecology
  • 3007 Forestry sciences
  • 0705 Forestry Sciences
  • 0607 Plant Biology
  • 0602 Ecology