首页> 外文期刊>Journal of Plant Growth Regulation >Differential Expression of Methyl Jasmonate-Responsive Genes Correlates with Laticifer Vessel Proliferation in Phloem Tissue of Rubber Tree (Hevea brasiliensis)
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Differential Expression of Methyl Jasmonate-Responsive Genes Correlates with Laticifer Vessel Proliferation in Phloem Tissue of Rubber Tree (Hevea brasiliensis)

机译:茉莉酸甲酯响应基因的差异表达与橡胶树韧皮部组织中胶乳细胞的增殖相关

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Rubber tree (Hevea brasiliensis) is a pivotal source for natural rubber production. Polyisoprene is synthesized in laticifer vessels, which are developed from vascular cambium in the phloem area of the inner bark tissue. The transcription factors and phytohormones were reported to be involved in network regulation of plant vascular tissue differentiation. Methyl jasmonate (MeJA) was reported to act as a stimulator for laticifer vessel formation in rubber tree, but the regulatory mechanism remains largely unknown. In this study, the correlation of laticifer vessel proliferation in phloem tissue upon MeJA treatment and the MeJA-responsive gene expression was investigated. Histochemical study of the laticifer revealed the circle and diffused structure around the secondary phloem of the stem. The number of laticifer vessels was increased from the top shoot to the lower stem part. The higher average number of laticifer vessels in stems of high latex-producing clones than in low latex/high wood yield clones suggested the correlation of laticifer vessel number and latex yield potential. This study demonstrated the temporal differential expression of MeJA-responsive genes upon MeJA treatment and adjusted back to a normal level after 3 months in two high latex-producing clones. The increasing number of laticifer vessels in MeJA-treated plants confirmed the consequent effect of MeJA treatment, and the possible roles of these genes in relation with laticifer vessel proliferation are discussed. A better understanding of gene function in laticifer development would be beneficial in rubber tree improvement and exploitation.
机译:橡胶树(巴西橡胶树)是天然橡胶生产的重要来源。聚异戊二烯是在由内部树皮组织韧皮部区域中的维管形成层发育而成的乳化器容器中合成的。据报道,转录因子和植物激素参与植物血管组织分化的网络调节。据报道,茉莉酸甲酯(MeJA)可以刺激橡胶树中胶乳细胞的形成,但其调控机制仍然未知。在这项研究中,研究了韧皮部组织在MeJA处理后韧皮部血管增殖与MeJA反应基因表达之间的相关性。对laticifer的组织化学研究揭示了茎次生韧皮部周围的圆形和分散结构。从顶部枝到下部茎部位,乳杆菌的数量增加。高产乳胶的无性系茎中的高产乳胶管的平均数比低产乳胶/高木材产量无性系中的高。这项研究证明了在MeJA处理后,MeJA响应基因在时间上的差异表达,并在两个高乳胶生产克隆中经过3个月的调节回到正常水平。 MeJA处理过的植物中越来越多的laticifer血管证实了MeJA处理的结果,并讨论了这些基因与laticifer血管增殖有关的可能作用。更好地了解乳杆菌发育中的基因功能将有助于橡胶树的改良和开发。

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