Reymond P, Weber H, Damond M, Farmer E E
Laboratoire de Biologie et de Physiologie Végétales, Institut d'Ecologie, Université de Lausanne, Bâtiment de Biologie, 1015 Switzerland.
Plant Cell. 2000 May;12(5):707-20. doi: 10.1105/tpc.12.5.707.
Wounding in multicellular eukaryotes results in marked changes in gene expression that contribute to tissue defense and repair. Using a cDNA microarray technique, we analyzed the timing, dynamics, and regulation of the expression of 150 genes in mechanically wounded leaves of Arabidopsis. Temporal accumulation of a group of transcripts was correlated with the appearance of oxylipin signals of the jasmonate family. Analysis of the coronatine-insensitive coi1-1 Arabidopsis mutant that is also insensitive to jasmonate allowed us to identify a large number of COI1-dependent and COI1-independent wound-inducible genes. Water stress was found to contribute to the regulation of an unexpectedly large fraction of these genes. Comparing the results of mechanical wounding with damage by feeding larvae of the cabbage butterfly (Pieris rapae) resulted in very different transcript profiles. One gene was specifically induced by insect feeding but not by wounding; moreover, there was a relative lack of water stress-induced gene expression during insect feeding. These results help reveal a feeding strategy of P. rapae that may minimize the activation of a subset of water stress-inducible, defense-related genes.
多细胞真核生物受伤会导致基因表达发生显著变化,这些变化有助于组织防御和修复。我们使用cDNA微阵列技术,分析了拟南芥机械损伤叶片中150个基因表达的时间、动态变化及其调控。一组转录本的时间积累与茉莉酸家族氧化脂质信号的出现相关。对冠菌素不敏感的coi1-1拟南芥突变体(该突变体对茉莉酸也不敏感)进行分析,使我们能够鉴定出大量依赖COI1和不依赖COI1的创伤诱导基因。我们发现水分胁迫对这些基因中出乎意料的很大一部分的调控有作用。将机械损伤的结果与菜青虫(粉蝶)幼虫取食造成的损伤结果进行比较,得到了非常不同的转录谱。有一个基因是由昆虫取食特异性诱导的,而不是由损伤诱导;此外,在昆虫取食期间,相对缺乏水分胁迫诱导的基因表达。这些结果有助于揭示菜青虫的一种取食策略,该策略可能会尽量减少一部分水分胁迫诱导的、与防御相关的基因的激活。