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首页> 外文期刊>Plant Cell, Tissue and Organ Culture: An International Journal on in Vitro Culture of Higher Plants >Exogenous methyl jasmonate prevents necrosis caused by mechanical wounding and increases terpenoid biosynthesis in Panax ginseng
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Exogenous methyl jasmonate prevents necrosis caused by mechanical wounding and increases terpenoid biosynthesis in Panax ginseng

机译:外源茉莉酸甲酯可预防人参引起的坏死并增强人参中的萜类生物合成

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Upon mechanical wounding, plants locally induce necrosis, accumulate methyl jasmonate (MeJA) and acquire systemic resistance in nearby tissues. One-month-old in vitro grown Panax ginseng seedlings were treated with either 50 A mu M MeJA or mechanical wounding alone or a combination of both, to evaluate jasmonic acid (JA) signaling and terpene biosynthetic pathway genes along with terpenoid accumulation. After MeJA treatment, JA pathway genes, such as lipoxygenase (PgLOX), hydrogen peroxidase lyase (PgHPL), allene oxide synthase (PgAOS), and allene oxide cyclase (PgAOC1), and terpene pathway genes, such as isopentenyl diphosphate isomerase (PgIPP) and farnesyl diphosphate synthase (PgFPS), were highly expressed and resulted in the accumulation of mono- and sesquiterpenes. During mechanical wounding, PgLOX expression was induced relatively late after 72 h of treatment, however PgAOC1 was not induced. This resulted in decreased production of MeJA that in turn may have lowered terpenoid production. In contrast, wounding + MeJA treatment increased PgAOC1 and PgLOX gene expression earlier after 6 h and slowly promoted the production of mono- and sesquiterpenes. Furthermore, we monitored the effect of MeJA upon wounding in in vitro grown 1-month-old seedlings treated with MeJA + wounding. These result demonstrated that exogenous MeJA is able to promote recovery from the wounding effect by functioning as a long distance signal. Additionally, these results suggest that exogenous MeJA supplied at the time of mechanical wounding prevents necrosis in the ginseng leaves by increasing the production of terpenoids.
机译:机械伤害后,植物会局部诱导坏死,积聚茉莉酸甲酯(MeJA),并在附近的组织中获得全身抵抗力。对一个月大的离体人参幼苗进行50 AμM MeJA处理或单独机械伤口处理或两者结合处理,以评估茉莉酸(JA)信号传导和萜烯生物合成途径基因以及萜类化合物的积累。经过MeJA处理后,JA途径基因,例如脂氧合酶(PgLOX),过氧化氢裂解酶(PgHPL),烯丙氧化物合酶(PgAOS)和烯丙氧化物环化酶(PgAOC1)和萜烯途径基因,例如异戊烯基二磷酸异构酶(PgIPP)和法呢基二磷酸合酶(PgFPS),高表达,并导致单和倍半萜的积累。在机械性损伤过程中,治疗72小时后PgLOX表达被诱导相对较晚,而PgAOC1没有被诱导。这导致MeJA产量降低,进而可能降低了萜类化合物的产量。相反,伤口+ MeJA处理在6小时后更早地增加了PgAOC1和PgLOX基因的表达,并缓慢地促进了单萜和倍半萜的产生。此外,我们在用MeJA +创伤处理的体外生长的1个月大幼苗中监测了MeJA对创伤的影响。这些结果表明,外源性MeJA能够作为长距离信号发挥作用,促进伤口的恢复。另外,这些结果表明,在机械性受伤时提供的外源MeJA通过增加萜类化合物的产生来防止人参叶片中的坏死。

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