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Phenotypic changes associated with RNA interference silencing of chalcone synthase in apple (Malus × domestica)
Authors:Andrew P. Dare  Sumathi Tomes  Midori Jones  Tony K. McGhie  David E. Stevenson  Ross A. Johnson  David R. Greenwood  Roger P. Hellens
Affiliation:1. The New Zealand Institute for Plant and Food Research Ltd, , Auckland, 1141 New Zealand;2. The New Zealand Institute for Plant and Food Research Ltd, , Palmerston North, 4441 New Zealand;3. The New Zealand Institute for Plant and Food Research Ltd, , Hamilton, 3240 New Zealand;4. School of Biological Sciences, University of Auckland, , Auckland, New Zealand
Abstract:We have identified in apple (Malus × domestica) three chalcone synthase (CHS) genes. In order to understand the functional redundancy of this gene family RNA interference knockout lines were generated where all three of these genes were down‐regulated. These lines had no detectable anthocyanins and radically reduced concentrations of dihydrochalcones and flavonoids. Surprisingly, down‐regulation of CHS also led to major changes in plant development, resulting in plants with shortened internode lengths, smaller leaves and a greatly reduced growth rate. Microscopic analysis revealed that these phenotypic changes extended down to the cellular level, with CHS‐silenced lines showing aberrant cellular organisation in the leaves. Fruit collected from one CHS‐silenced line was smaller than the ‘Royal Gala’ controls, lacked flavonoids in the skin and flesh and also had changes in cell morphology. Auxin transport experiments showed increased rates of auxin transport in a CHS‐silenced line compared with the ‘Royal Gala’ control. As flavonoids are well known to be key modulators of auxin transport, we hypothesise that the removal of almost all flavonoids from the plant by CHS silencing creates a vastly altered environment for auxin transport to occur and results in the observed changes in growth and development.
Keywords:chalcone synthase  RNA interference  Malus ×   domestica
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