Gene expression pattern in response to wounding, methyl jasmonate and ethylene in the bark of Hevea brasiliensis

茉莉酸甲酯 巴西橡胶树 茉莉酸 茉莉酸 乙烯利 基因 生物 树皮(声音) 基因表达 植物 细胞生物学 乙烯 生物化学 拟南芥 化学 天然橡胶 生态学 有机化学 突变体 催化作用
作者
Cuifang Duan,Maryannick Rio,Julie Leclercq,François Bonnot,G. C. Oliver,Pascal Montoro
出处
期刊:Tree Physiology [Oxford University Press]
卷期号:30 (10): 1349-1359 被引量:84
标识
DOI:10.1093/treephys/tpq066
摘要

Natural rubber production in Hevea brasiliensis is determined by both tapping and ethephon frequencies. It is affected by a complex physiological disorder called tapping panel dryness. This syndrome is likely to be induced by environmental and latex harvesting stresses. Defence responses, including rubber biosynthesis, are dramatically mediated by wounding, jasmonate and ethylene (ET), among other factors. Using real-time RT-PCR, the effects of wounding, methyl jasmonate (MeJA) and ET on the relative transcript abundance of a set of 25 genes involved in their signalling and metabolic pathways were studied in the bark of 3-month-old epicormic shoots. Temporal regulation was found for 9 out of 25 genes. Wounding treatment regulated the transcript abundance of 10 genes. Wounding-specific regulation was noted for the HbMAPK, HbBTF3b, HbCAS1, HbLTPP and HbPLD genes. MeJA treatment regulated the transcript abundance of nine genes. Of these, the HbMYB, HbCAS2, HbCIPK and HbChi genes were shown to be specifically MeJA inducible. ET response was accompanied by regulation of the transcript abundance of eight genes, and six genes, HbETR2, HbEIN2, HbEIN3, HbCaM, HbPIP1 and HbQM, were specifically regulated by ET treatment. Additionally, the transcript level of the HbGP and HbACR genes was enhanced by all three treatments simultaneously. Overall, a large number of genes were found to be regulated 4 h after the treatments were applied. This study nevertheless revealed some jasmonic acid-independent wound signalling pathways in H. brasiliensis, provided a general characterization of signalling pathways and will serve as a new base from which to launch advanced studies of the network of pathways operating in H. brasiliensis.
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