Cultural advice

The Australian National University acknowledges, celebrates and pays our respects to the Ngunnawal and Ngambri people of the Canberra region and to all First Nations Australians on whose traditional lands we meet and work, and whose cultures are among the oldest continuing cultures in human history.

Aboriginal and Torres Strait Islander peoples are advised that ANU Library collections may include images, names, voices, and other representations of deceased persons.

Material in the collection may contain terms, language or views that reflect the period in which the item was created and may be considered inappropriate today.

Regulation of gibberellin biosynthesis and stem elongation by low temperature in Eustoma grandiflorum

dc.contributor.authorHisamatsu, Tamotsu
dc.contributor.authorKoshioka, Masaji
dc.contributor.authorMander, Lewis
dc.date.accessioned2015-12-13T22:39:43Z
dc.date.available2015-12-13T22:39:43Z
dc.date.issued2004
dc.date.updated2015-12-11T09:51:51Z
dc.description.abstractHeat-induced rosetted Eustoma grandiflorum requires low temperature for induction of stem elongation and flowering. Although heat-induced rosetting is associated with a reduction of gibberellin A1 (GA1) content, how thermo-induction affects GA biosynthesis is unclear. Thus, we examined levels of GA, precursors including that of ent-kaurene which is the first committed step in GA biosynthesis. We used uniconazole, an ent-kaurene oxidase inhibitor to estimate the ent-kaurene biosynthesis activity.The accumulation level of ent-kaurene in stems of the cold-treated seedlings was approximately 1.8 times that of the non-cold-treated seedlings, whereas no difference was observed in the leaves. No change was observed in endogenous levels of GA1 and GA20 in stems of the heat-induced rosetted plants during the cold treatment, whereas their levels increased with stem elongation after transfer to warm conditions. In contrast to the levels of GA1 and GA20, endogenous levels of ent-kaurene, ent-kaurenoic acid, GA53, GA44 and GA19 in the stems markedly increased at the end of cold treatment. These results indicate that ent-kaurene biosynthesis and its metabolism early in the GA biosynthetic pathway are stimulated by low temperature and, later, the stimulation leads to an increment of endogenous levels of GA1 which is essential for stem elongation of the heat-induced rosetted E. grandiflorum.
dc.identifier.issn1462-0316
dc.identifier.urihttp://hdl.handle.net/1885/77900
dc.publisherHeadley Brothers Ltd, Invicta Press
dc.sourceJournal of Horticultural Science and Biotechnology
dc.source.urihttp://www.ingenta.com/isis/shopping/cart/ShoppingCart/ingenta;jsessionid=p8dtp58xlxdl.circus
dc.subjectKeywords: Eustoma; Eustoma grandiflorum
dc.titleRegulation of gibberellin biosynthesis and stem elongation by low temperature in Eustoma grandiflorum
dc.typeJournal article
local.bibliographicCitation.issue3
local.bibliographicCitation.lastpage359
local.bibliographicCitation.startpage354
local.contributor.affiliationHisamatsu, Tamotsu, National Research Institute of Vegetables, Ornamental Plants & Tea
local.contributor.affiliationKoshioka, Masaji, National Institute of Floricultural Science
local.contributor.affiliationMander, Lewis, College of Physical and Mathematical Sciences, ANU
local.contributor.authoruidMander, Lewis, u7500768
local.description.notesImported from ARIES
local.description.refereedYes
local.identifier.absfor060705 - Plant Physiology
local.identifier.ariespublicationMigratedxPub6640
local.identifier.citationvolume79
local.identifier.scopusID2-s2.0-2642550964
local.type.statusPublished Version

Downloads