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PMID: 20047776 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Dark exposure of petunia cuttings strongly improves adventitious root formation and enhances carbohydrate availability during rooting in the light.

Journal of plant physiology ·Vol. 167 ·No. 7 ·2010-05-01 ·Pages 547-54

Klopotek Y, Haensch KT, Hause B, Hajirezaei MR, Druege U

Abstract

The effect of temporary dark exposure on adventitious root formation (ARF) in Petuniaxhybrida 'Mitchell' cuttings was investigated. Histological and metabolic changes in the cuttings during the dark treatment and subsequent rooting in the light were recorded. Excised cuttings were exposed to the dark for seven days at 10 degrees C followed by a nine-day rooting period in perlite or were rooted immediately for 16 days in a climate chamber at 22/20 degrees C (day/night) and a photosynthetic photon flux density (PPFD) of 100micromolm(-2)s(-1). Dark exposure prior to rooting increased, accelerated and synchronized ARF. The rooting period was reduced from 16 days (non-treated cuttings) to 9 days (treated cuttings). Under optimum conditions, despite the reduced rooting period, dark-exposed cuttings produced a higher number and length of roots than non-treated cuttings. An increase in temperature to 20 degrees C during the dark treatment or extending the cold dark exposure to 14 days caused a similar enhancement of root development compared to non-treated cuttings. Root meristem formation had already started during the dark treatment and was enhanced during the subsequent rooting period. Levels of soluble sugars (glucose, fructose and sucrose) and starch in leaf and basal stem tissues significantly decreased during the seven days of dark exposure. This depletion was, however, compensated during rooting after 6 and 24h for soluble sugars in leaves and the basal stem, respectively, whereas the sucrose level in the basal stem was already increased at 6h. The association of higher carbohydrate levels with improved rooting in previously dark-exposed versus non-treated cuttings indicates that increased post-darkness carbohydrate availability and allocation towards the stem base contribute to ARF under the influence of dark treatment and provide energy for cell growth subject to a rising sink intensity in the base of the cutting.

MeSH Terms
Carbohydrate Metabolism Darkness Petunia/growth & development,metabolism Plant Roots/growth & development
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Klopotek Yvonne
Leibniz Institute of Vegetable and Ornamental Crops, Kuehnhauser Strasse 101, D-99189 Erfurt-Kuehnhausen, Germany.
Haensch Klaus-Thomas
Hause Bettina
Hajirezaei Mohammad-Reza
Druege Uwe
Article Info
Journal
Journal of plant physiology
Abbr.
J Plant Physiol
ISSN
1618-1328
Published
2010-05-01
Epub
2010-00-04
Pages
547-54
Language
English
Region
Germany
NLM ID
9882059
Subset
IM
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