Department of Biological Sciences, University of North Texas, Denton, TX 76203, USA.
Plant J. 2010 Dec;64(5):800-11. doi: 10.1111/j.1365-313X.2010.04378.x. Epub 2010 Oct 26.
The green peach aphid (GPA) (Myzus persicae Sülzer) is an important sap-sucking pest of a large variety of plants, including Arabidopsis thaliana. Arabidopsis utilizes a combination of defenses that deter insects from settling on the plant, limit insect feeding and curtail insect reproduction. We demonstrate that the previously uncharacterized Arabidopsis MPL1 (MYZUS PERSICAE-INDUCED LIPASE1) gene has an important role in defense against the GPA. MPL1 expression was rapidly induced to high level in GPA-infested plants. Furthermore, the GPA population was larger on the mpl1 mutant than the wild-type (WT) plant. In contrast, constitutive over-expression of MPL1 from the Cauliflower mosaic virus 35S gene promoter curtailed the size of the GPA population. Insect settling and feeding behavior were unaffected on the mpl1 mutant. However, compared with the phloem-sap enriched petiole exudate from the WT plant, mpl1 petiole exudate was deficient in an activity that restricts insect reproduction on a synthetic diet. Furthermore, MPL1 was required for the heightened accumulation of an antibiotic activity in petiole exudate of the Arabidopsis ssi2 mutant, which exhibits enhanced resistance to GPA. These results indicate that MPL1 has an essential function in antibiosis against GPA. The MPL1 protein exhibits homology to lipases and recombinant MPL1 has lipase activity, thus suggesting that a MPL1-dependent lipid, or a product thereof, has an important role in antibiosis against GPA.
绿桃蚜(GPA)(Myzus persicae Sülzer)是一种重要的吸食植物汁液的害虫,包括拟南芥。拟南芥利用一系列防御机制来阻止昆虫在植物上定居、限制昆虫取食和减少昆虫繁殖。我们证明,以前未被表征的拟南芥 MPL1(GPA 诱导的脂酶 1)基因在防御 GPA 方面具有重要作用。MPL1 在被 GPA 侵害的植物中迅速被诱导到高水平表达。此外,在 mpl1 突变体上的 GPA 种群比野生型(WT)植物更大。相比之下,来自花椰菜花叶病毒 35S 启动子的 MPL1 的组成型过表达减少了 GPA 种群的大小。昆虫定居和取食行为在 mpl1 突变体上不受影响。然而,与 WT 植物富含韧皮部汁液的叶柄渗出物相比,mpl1 叶柄渗出物缺乏一种在合成饮食上限制昆虫繁殖的活性。此外,MPL1 是拟南芥 ssi2 突变体叶柄渗出物中抗生素活性增强所必需的,ssi2 突变体对 GPA 表现出增强的抗性。这些结果表明,MPL1 在针对 GPA 的抗生性中具有重要功能。MPL1 蛋白与脂肪酶具有同源性,重组 MPL1 具有脂肪酶活性,因此表明 MPL1 依赖性脂质或其产物在针对 GPA 的抗生性中具有重要作用。