The Acid Growth Theory of auxin-induced cell elongation is alive and well

Plant Physiol. 1992 Aug;99(4):1271-4. doi: 10.1104/pp.99.4.1271.

Abstract

Plant cells elongate irreversibly only when load-bearing bonds in the walls are cleaved. Auxin causes the elongation of stem and coleoptile cells by promoting wall loosening via cleavage of these bonds. This process may be coupled with the intercalation of new cell wall polymers. Because the primary site of auxin action appears to be the plasma membrane or some intracellular site, and wall loosening is extracellular, there must be communication between the protoplast and the wall. Some "wall-loosening factor" must be exported from auxin-impacted cells, which sets into motion the wall loosening events. About 20 years ago, it was suggested that the wall-loosening factor is hydrogen ions. This idea and subsequent supporting data gave rise to the Acid Growth Theory, which states that when exposed to auxin, susceptible cells excrete protons into the wall (apoplast) at an enhanced rate, resulting in a decrease in apoplastic pH. The lowered wall pH then activates wall-loosening processes, the precise nature of which is unknown. Because exogenous acid causes a transient (1-4 h) increase in growth rate, auxin must also mediate events in addition to wall acidification for growth to continue for an extended period of time. These events may include osmoregulation, cell wall synthesis, and maintenance of the capacity of walls to undergo acid-induced wall loosening. At present, we do not know if these phenomena are tightly coupled to wall acidification or if they are the products of multiple independent signal transduction pathways.

Publication types

  • Research Support, U.S. Gov't, Non-P.H.S.

MeSH terms

  • Acids
  • Cell Membrane / enzymology
  • Cell Membrane / physiology
  • Cell Wall / physiology*
  • Cotyledon / cytology
  • Cotyledon / growth & development
  • Cotyledon / physiology
  • Hydrogen-Ion Concentration
  • Indoleacetic Acids / physiology*
  • Plant Cells*
  • Plant Development*
  • Plant Physiological Phenomena
  • Plant Stems / cytology
  • Plant Stems / growth & development
  • Plant Stems / physiology
  • Proton Pumps / physiology
  • Proton-Translocating ATPases / physiology
  • Protons*
  • Signal Transduction / physiology

Substances

  • Acids
  • Indoleacetic Acids
  • Proton Pumps
  • Protons
  • Proton-Translocating ATPases