Narváez-Vásquez Javier, Orozco-Cárdenas Martha L, Ryan Clarence A
Institute of Biological Chemistry, Washington State University, Pullman, WA 99164-6340, USA.
Plant Mol Biol. 2007 Dec;65(6):711-8. doi: 10.1007/s11103-007-9242-z. Epub 2007 Sep 25.
Hydroxyproline-rich glycopeptides (HypSys peptides) have been isolated recently from tobacco and tomato leaves that are powerful activators of protease inhibitor synthesis. The peptides are processed from polyprotein precursors, two from a single tobacco precursor and three from a single tomato precursor. The precursor genes are expressed in response to wounding and methyl jasmonate, similar to the expression of the systemin precursor prosystemin in tomato leaves. Here we investigate the relationships between systemin and the tomato HypSys peptides in regulating wound signaling in tomato plants. Analysis of transgenic tomato plants over-expressing sense and antisense constructs of the tomato HypSys precursor under the 35S CaMV promoter show that the transgenic plants regulate protease inhibitor gene expression in response to wounding in a manner similar to prosystemin. The evidence indicates that the expression of both the tomato HypSys precursor gene and the prosystemin gene in response to wounding are necessary for strong systemic signaling. The data supports a role for both genes in an amplification loop that up-regulates the octadecanoid pathway and the synthesis of jasmonates to effect strong systemic signaling of defense genes. This report provides the first demonstration of the involvement of two plant peptides derived from two unrelated genes in regulating long distance wound signaling in plants.
富含羟脯氨酸的糖肽(HypSys肽)最近已从烟草和番茄叶片中分离出来,它们是蛋白酶抑制剂合成的强力激活剂。这些肽是从多蛋白前体加工而来的,烟草的一个前体产生两种肽,番茄的一个前体产生三种肽。前体基因在受伤和茉莉酸甲酯的刺激下表达,这与番茄叶片中系统素前体原系统素的表达情况相似。在这里,我们研究了系统素与番茄HypSys肽在调节番茄植株伤口信号传导中的关系。对在35S CaMV启动子控制下过表达番茄HypSys前体的正义和反义构建体的转基因番茄植株进行分析,结果表明,转基因植株在受伤时调节蛋白酶抑制剂基因表达的方式与原系统素相似。有证据表明,番茄HypSys前体基因和原系统素基因在受伤时的表达对于强烈的系统信号传导都是必需的。这些数据支持这两个基因在一个放大环中发挥作用,该放大环上调十八烷途径和茉莉酸的合成,以实现防御基因的强烈系统信号传导。本报告首次证明了源自两个不相关基因的两种植物肽参与调节植物中的长距离伤口信号传导。