Peña-Cortés H, Fisahn J, Willmitzer L
Institut für Genbiologische Forschung Berlin GmbH, Berlin, Germany.
Proc Natl Acad Sci U S A. 1995 May 9;92(10):4106-13. doi: 10.1073/pnas.92.10.4106.
Chemical and physical signals have been reported to mediate wound-induced proteinase inhibitor II (Pin2) gene expression in tomato and potato plants. Among the chemical signals, phytohormones such as abscisic acid (ABA) and jasmonic acid (JA) and the peptide systemin represent the best characterized systems. Furthermore, electrical and hydraulic mechanisms have also been postulated as putative Pin2-inducing systemic signals. Most of the chemical agents are able to induce Pin2 gene expression without any mechanical wounding. Thus, ABA, JA, and systemin initiate Pin2 mRNA accumulation in the directly treated leaves and in the nontreated leaves (systemic) that are located distal to the treated ones. ABA-deficient tomato and potato plants do not respond to wounding by accumulation of Pin2 mRNA, therefore providing a suitable model system for analysis of the signal transduction pathway involved in wound-induced gene activation. It was demonstrated that the site of action of JA is located downstream to the site of action of ABA. Moreover, systemin represents one of the initial steps in the signal transduction pathway regulating the wound response. Recently, it was reported that heat treatment and mechanical injury generate electrical signals, which propagate throughout the plant. These signals are capable of inducing Pin2 gene expression in the nontreated leaves of wounded plants. Furthermore, electrical current application to tomato leaves leads to an accumulation of Pin2 mRNA in local and systemic tissues. Examination of photosynthetic parameters (assimilation and transpiration rate) on several types of stimuli suggests that heat-induced Pin2 gene expression is regulated by an alternative pathway from that mediating the electrical current and mechanical wound response.
据报道,化学和物理信号可介导番茄和马铃薯植株中创伤诱导的蛋白酶抑制剂II(Pin2)基因表达。在化学信号中,脱落酸(ABA)、茉莉酸(JA)等植物激素以及肽系统素是特征最明确的系统。此外,电信号和水力机制也被假定为可能诱导Pin2的系统性信号。大多数化学物质能够在没有任何机械创伤的情况下诱导Pin2基因表达。因此,ABA、JA和系统素可在直接处理的叶片以及位于处理叶片远端的未处理叶片(系统性)中引发Pin2 mRNA积累。ABA缺陷型番茄和马铃薯植株不会通过Pin2 mRNA积累对创伤作出反应,因此为分析创伤诱导基因激活所涉及的信号转导途径提供了一个合适的模型系统。已证明JA的作用位点位于ABA作用位点的下游。此外,系统素代表了调节创伤反应的信号转导途径中的初始步骤之一。最近,有报道称热处理和机械损伤会产生电信号,这些信号会在整个植株中传播。这些信号能够在受伤植株的未处理叶片中诱导Pin2基因表达。此外,对番茄叶片施加电流会导致Pin2 mRNA在局部和系统性组织中积累。对几种类型刺激下光合参数(同化率和蒸腾速率)的检测表明,热诱导的Pin2基因表达受一条与介导电流和机械创伤反应的途径不同的途径调控。