Joubert Dirk A, Kars Ilona, Wagemakers Lia, Bergmann Carl, Kemp Gabré, Vivier Melané A, van Kan Jan A L
Institute for Wine Biotechnology, Department of Viticulture and Oenology, Stellenbosch University, Stellenbosch, 7600, South Africa.
Mol Plant Microbe Interact. 2007 Apr;20(4):392-402. doi: 10.1094/MPMI-20-4-0392.
Six endopolygalacturonases from Botrytis cinerea (BcPG1 to BcPG6) as well as mutated forms of BcPG1 and BcPG2 were expressed transiently in leaves of Nicotiana benthamiana using agroinfiltration. Expression of BcPG1, BcPG2, BcPG4, BcPG5, and mutant BcPG1-D203A caused symptoms, whereas BcPG3, BcPG6, and mutant BcPG2-D192A caused no symptoms. Expression of BcPG2 caused the most severe symptoms, including wilting and necrosis. BcPG2 previously has been shown to be essential for B. cinerea virulence. The in vivo effect of this enzyme and the inhibition by a polygalacturonase-inhibiting protein (PGIP) was examined by coexpressing Bcpg2 and the Vvpgipl gene from Vitis vinifera in N. benthamiana. Coinfiltration resulted in a substantial reduction of the symptoms inflicted by the activity of BcPG2 in planta, as evidenced by quantifying the variable chlorophyll fluorescence yield. In vitro, however, no interaction between pure VvPGIP1 and pure BcPG2 was detected. Specifically, VvPGIP1 neither inhibited BcPG2 activity nor altered the degradation profile of polygalacturonic acid by BcPG2. Furthermore, using surface plasmon resonance technology, no physical interaction between VvPGIP1 and BcPG2 was detected in vitro. The data suggest that the in planta environment provided a context to support the interaction between BcPG2 and VvPGIP1, leading to a reduction in symptom development, whereas neither of the in vitro assays detected any interaction between these proteins.
利用农杆菌浸润法,将来自灰葡萄孢的六种内切多聚半乳糖醛酸酶(BcPG1至BcPG6)以及BcPG1和BcPG2的突变形式在本氏烟草叶片中瞬时表达。BcPG1、BcPG2、BcPG4、BcPG5和突变体BcPG1-D203A的表达引发了症状,而BcPG3、BcPG6和突变体BcPG2-D192A未引发症状。BcPG2的表达引发了最严重的症状,包括萎蔫和坏死。先前已证明BcPG2对灰葡萄孢的毒力至关重要。通过在本氏烟草中共表达Bcpg2和来自葡萄的Vvpgipl基因,研究了该酶的体内效应以及多聚半乳糖醛酸酶抑制蛋白(PGIP)的抑制作用。共浸润导致BcPG2在植物中的活性所引发的症状大幅减轻,通过量化可变叶绿素荧光产量可证明这一点。然而,在体外未检测到纯VvPGIP1与纯BcPG2之间的相互作用。具体而言,VvPGIP1既不抑制BcPG2的活性,也不改变BcPG2对聚半乳糖醛酸的降解模式。此外,使用表面等离子体共振技术,在体外未检测到VvPGIP1与BcPG2之间的物理相互作用。数据表明,植物体内环境为支持BcPG2与VvPGIP1之间的相互作用提供了条件,导致症状发展减轻,而体外试验均未检测到这些蛋白质之间的任何相互作用。