CIRAD, UMR AGAP, Montpellier, France.
Universitas Indonesia (UI), Depok, Indonesia.
Plant Biotechnol J. 2018 Jan;16(1):322-336. doi: 10.1111/pbi.12774. Epub 2017 Sep 2.
Ethylene response factor 1 (ERF1) is an essential integrator of the jasmonate and ethylene signalling pathways coordinating a large number of genes involved in plant defences. Its orthologue in Hevea brasiliensis, HbERF-IXc5, has been assumed to play a major role in laticifer metabolism and tolerance to harvesting stress for better latex production. This study sets out to establish and characterize rubber transgenic lines overexpressing HbERF-IXc5. Overexpression of HbERF-IXc5 dramatically enhanced plant growth and enabled plants to maintain some ecophysiological parameters in response to abiotic stress such as water deficit, cold and salt treatments. This study revealed that HbERF-IXc5 has rubber-specific functions compared to Arabidopsis ERF1 as transgenic plants overexpressing HbERF-IXc5 accumulated more starch and differentiated more latex cells at the histological level. The role of HbERF-IXc5 in driving the expression of some target genes involved in laticifer differentiation is discussed.
乙烯响应因子 1(ERF1)是茉莉酸和乙烯信号通路的重要整合因子,协调了大量参与植物防御的基因。巴西橡胶树的同源物 HbERF-IXc5 被认为在乳管代谢和对采胶胁迫的耐受中发挥主要作用,以提高乳胶产量。本研究旨在建立和鉴定过表达 HbERF-IXc5 的橡胶转基因系。过表达 HbERF-IXc5 显著促进了植物的生长,并使植物能够在应对非生物胁迫(如水分亏缺、寒冷和盐处理)时维持一些生理参数。本研究表明,与拟南芥 ERF1 相比,HbERF-IXc5 具有橡胶特异性功能,因为过表达 HbERF-IXc5 的转基因植物在组织学水平上积累了更多的淀粉和分化了更多的乳胶细胞。讨论了 HbERF-IXc5 在驱动一些参与乳管分化的靶基因表达中的作用。