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Involvement of ethylene in the latex metabolism and tapping panel dryness of Hevea brasilensis

Authors :
Putranto, Riza Arief
Herlinawati, Eva
Rio, Maryannick
Leclercq, Julie
Piyatrakul, Piyanuch
Gohet, Eric
Sanier, Christine
Oktavia, Fetrina
Pirrello, Julien
Kuswanhadi
Montoro, Pascal
Putranto, Riza Arief
Herlinawati, Eva
Rio, Maryannick
Leclercq, Julie
Piyatrakul, Piyanuch
Gohet, Eric
Sanier, Christine
Oktavia, Fetrina
Pirrello, Julien
Kuswanhadi
Montoro, Pascal
Source :
International Journal of Molecular Sciences
Publication Year :
2015

Abstract

Ethephon, an ethylene releaser, is used to stimulate latex production in Hevea brasiliensis. Ethylene induces many functions in latex cells including the production of reactive oxygen species (ROS). The accumulation of ROS is responsible for the coagulation of rubber particles in latex cells, resulting in the partial or complete stoppage of latex flow. This study set out to assess biochemical and histological changes as well as changes in gene expression in latex and phloem tissues from trees grown under various harvesting systems. The Tapping Panel Dryness (TPD) susceptibility of Hevea clones was found to be related to some biochemical parameters, such as low sucrose and high inorganic phosphorus contents. A high tapping frequency and ethephon stimulation induced early TPD occurrence in a high latex metabolism clone and late occurrence in a low latex metabolism clone. TPD-affected trees had smaller number of laticifer vessels compared to healthy trees, suggesting a modification of cambial activity. The differential transcript abundance was observed for twenty-seven candidate genes related to TPD occurrence in latex and phloem tissues for ROS-scavenging, ethylene biosynthesis and signalling genes. The predicted function for some Ethylene Response Factor genes suggested that these candidate genes should play an important role in regulating susceptibility to TPD.

Details

Database :
OAIster
Journal :
International Journal of Molecular Sciences
Notes :
IndoneĢsie, text, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1055752409
Document Type :
Electronic Resource