Chen Xi, Zhang Zhao, Visser Richard G F, Vosman Ben, Broekgaarden Colette
BMC Plant Biol. 2014 Aug 14;14:217. doi: 10.1186/s12870-014-0217-3.
Plants have developed a variety of mechanisms to counteract aphid attacks. They activate their defences by changing the expression of specific genes. Previously we identified an activation tag mutant of Arabidopsis thaliana on which Myzus persicae population development was reduced. Activation tag mutants are gain-of-function in which the expression of a gene is increased by the insertion of the Cauliflower mosaic virus 35S enhancer that acts on the natural promoter. By further characterizing this previously identified mutant we identified a gene that reduces performance of M. persicae and also provided clues about the mechanism involved.
We show that SKU5 SIMILAR 13 (SKS13), a gene whose expression in wild type plants is restricted to pollen and non-responsive to M. persicae attack, is overexpressed in the A. thaliana mutant showing reduced performance of M. persicae. Monitoring M. persicae feeding behaviour on SKS13 overexpressing plants indicated that M. persicae have difficulties feeding from the phloem. The constitutive expression of SKS13 results in accumulation of reactive oxygen species, which is possibly regulated through the jasmonic acid pathway. The enhanced resistance is not aphid species specific as also the population development of Brevicoryne brassicae was affected.
We demonstrate that constitutive expression in leaves of the pollen-specific gene SKS13 can enhance plant defence, resulting in a reduction of M. persicae population development and also decreases the transmission of persistent viruses. Overexpression of SKS13 in A. thaliana also affects B. brassicae and possibly other phloem feeding insects as well. Identifying genes that can enhance plant defence against insects will be important to open up new avenues for the development of insect resistant crop plants.
植物已进化出多种机制来抵御蚜虫的侵害。它们通过改变特定基因的表达来激活自身防御。此前我们鉴定出一个拟南芥激活标签突变体,在该突变体上桃蚜的种群发育受到抑制。激活标签突变体是功能获得型突变体,其中基因的表达通过插入作用于天然启动子的花椰菜花叶病毒35S增强子而增加。通过进一步表征这个先前鉴定的突变体,我们鉴定出一个能降低桃蚜生存能力的基因,并提供了有关其涉及机制的线索。
我们发现,SKU5 类似物13(SKS13)在野生型植物中的表达仅限于花粉,且对桃蚜攻击无反应,但在表现出桃蚜生存能力降低的拟南芥突变体中过度表达。监测桃蚜在过表达SKS13的植物上的取食行为表明,桃蚜在取食韧皮部时存在困难。SKS13的组成型表达导致活性氧的积累,这可能是通过茉莉酸途径调控的。增强的抗性并非蚜虫物种特异性的,因为甘蓝蚜的种群发育也受到了影响。
我们证明,花粉特异性基因SKS13在叶片中的组成型表达可增强植物防御,导致桃蚜种群发育减少,并降低持久性病毒的传播。SKS13在拟南芥中的过表达也影响甘蓝蚜,可能还影响其他取食韧皮部的昆虫。鉴定能够增强植物对昆虫防御能力的基因对于开辟抗虫作物植物开发的新途径至关重要。