Szczegielniak Jadwiga
Zakiad Biochemii Roślin, Instytut Biochemii i Biofizyki PAN, Warszawa.
Postepy Biochem. 2007;53(2):121-32.
A significant advancement in our knowledge and understanding of wound-signaling pathways in plants has been made recently. Essential role in the explanation of these processes came from the genetic screens and analysis of mutants which are defective in either jasmonic acid (JA) biosynthesis, JA perception or systemin function. Plants equally react to wound in the tissues directly damaged (local response) as well as in the non-wounded areas (systemic response). Jasmonides and in particular the most studied JA, produced by the octadecanoid pathway, are responsible for the systemic response. Jasmonides functioning as long-distance signal particles transmit the information about wound to distant, non-wounded tissues where defense response is invoked. Peptyd - systemin, identified in some Solanaceous species, acts locally to the wounded area to elicit the production of JA. Jasmonic acid-dependent and -independent wound signal transduction pathways have been identified and partially characterized. JA-dependent wound signaling pathways are responsible for the activation of systemic responses, whereas JA-independent wound signaling pathways, activated close to wound side, have a role in reparation of damaged tissue and in defense against pathogens.
最近,我们对植物伤口信号通路的认识和理解取得了重大进展。对这些过程的解释中,关键作用来自于对茉莉酸(JA)生物合成、JA感知或系统素功能存在缺陷的突变体进行的遗传筛选和分析。植物对直接受损组织(局部反应)以及未受损区域(系统反应)的伤口都会产生反应。茉莉酸类化合物,特别是由十八烷途径产生的研究最多的JA,负责系统反应。作为长距离信号分子的茉莉酸类化合物将伤口信息传递到远处未受损的组织,在那里引发防御反应。在一些茄科植物中发现的肽-系统素在伤口局部起作用,引发JA的产生。已经鉴定并部分表征了依赖茉莉酸和不依赖茉莉酸的伤口信号转导途径。依赖茉莉酸的伤口信号通路负责激活系统反应,而在伤口附近激活的不依赖茉莉酸的伤口信号通路在受损组织的修复和病原体防御中发挥作用。