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Gibberellin is required for the formation of tension wood and stem gravitropism in Acacia mangium seedlings

  • Widyanto Dwi Nugroho
  • , Yusuke Yamagishi
  • , Satoshi Nakaba
  • , Shiori Fukuhara
  • , Shahanara Begum
  • , Sri Nugroho Marsoem
  • , Jae Heung Ko
  • , Hyun O. Jin
  • , Ryo Funada

Research output: Contribution to journalArticlepeer-review

43 Citations (Scopus)

Abstract

Background and AimsAngiosperm trees generally form tension wood on the upper sides of leaning stems. The formation of tension wood is an important response to gravitational stimulus. Gibberellin appears to be involved in the differentiation of secondary xylem, but it remains unclear whether gibberellin plays a key role in the formation of tension wood and plant gravitropism. Therefore, a study was designed to investigate the effects of gibberellin and of inhibitors of the synthesis of gibberellin, namely paclobutrazole and uniconazole-P, on the formation of tension wood and negative stem gravitropism in Acacia mangium seedlings.MethodsGibberellic acid (GA3), paclobutrazole and uniconazole-P were applied to seedlings via the soil in which they were growing. Distilled water was applied similarly as a control. Three days after such treatment, seedlings were tilted at an angle of 45° from the vertical, and samples of stems were collected for analysis 2 weeks, 2 months and 6 months after tilting. The effects of treatments on the stem recovery degree (R) were analysed as an index of the negative gravitropism of seedlings, together the width of the region of tension wood in the upper part of inclined stems.Key ResultsIt was found that GA3 stimulated the negative gravitropism of tilted seedling stems of A. mangium, while paclobutrazole and uniconazole-P inhibited recovery to vertical growth. Moreover, GA3 stimulated the formation of tension wood in tilted A. mangium seedlings, while paclobutrazole and uniconazole-P strongly suppressed the formation of tension wood, as assessed 2 weeks after tilting.ConclusionsThe results suggest that gibberellin plays an important role at the initial stages of formation of tension wood and in stem gravitropism in A. mangium seedlings in response to a gravitational stimulus.

Original languageEnglish
Pages (from-to)887-895
Number of pages9
JournalAnnals of Botany
Volume110
Issue number4
DOIs
Publication statusPublished - Sept 2012

Bibliographical note

Funding Information:
W.D.N. thanks the Hitachi Scholarship Foundation, Japan, for supporting and funding his doctoral degree programme at the United Graduate School of Agricultural Science at Tokyo University of Agriculture and Technology. The authors also thank Alan Cabout and Adityo Roem, Universitas Gadjah Mada, for their assistance in the collection of samples. We are very grateful to the referees and editor for their constructive comments and suggestions. This work was supported, in part, by Grants-in-Aid for Scientific Research from the Ministry of Education, Science, Sports and Culture of Japan (nos 19580183, 20120009, 21380107, 23380105 and 24380090).

Keywords

  • Acacia mangium
  • formation of tension wood
  • gibberellin
  • gravitropism
  • inhibitor of gibberellin biosynthesis

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