Kooman-Gersmann M., Honee G., Bonnema G., De Wit PJGM.
Department of Phytopathology, Wageningen Agricultural University, P.O. Box 8025, 6700 EE Wageningen, The Netherlands.
Plant Cell. 1996 May;8(5):929-938. doi: 10.1105/tpc.8.5.929.
The race-specific Cladosporium fulvum peptide elicitor AVR9, which specifically induces a hypersensitive response in tomato genotypes carrying the Cf-9 resistance gene, was labeled with iodine-125 at the N-terminal tyrosine residue and used in binding studies. 125I-AVR9 showed specific, saturable, and reversible binding to plasma membranes isolated from leaves of tomato cultivar Moneymaker without Cf resistance genes (MM-Cf0) or from a near-isogenic genotype with the Cf-9 resistance gene (MM-Cf9). The dissociation constant was found to be 0.07 nM, and the receptor concentration was 0.8 pmol/mg microsomal protein. Binding was highly influenced by pH and the ionic strength of the binding buffer and by temperature, indicating the involvement of both electrostatic and hydrophobic interactions. Binding kinetics and binding capacity were similar for membranes of the MM-Cf0 and MM-Cf9 genotypes. In all solanaceous plant species tested, an AVR9 binding site was present, whereas in the nonsolanaceous species that were analyzed, such a binding site could not be identified. The ability of membranes isolated from different solanaceous plant species to bind AVR9 seems to correlate with the presence of members of the Cf-9 gene family, but whether this correlation is functional remains to be determined.
具有种属特异性的番茄叶霉病菌肽激发子AVR9能在携带Cf-9抗性基因的番茄基因型中特异性诱导超敏反应,该激发子在N端酪氨酸残基处用碘-125进行标记,并用于结合研究。125I-AVR9与从没有Cf抗性基因的番茄品种Money maker(MM-Cf0)叶片或具有Cf-9抗性基因的近等基因基因型(MM-Cf9)叶片中分离得到的质膜表现出特异性、可饱和且可逆的结合。解离常数为0.07 nM,受体浓度为0.8 pmol/mg微粒体蛋白。结合受到pH、结合缓冲液的离子强度以及温度的高度影响,表明存在静电和疏水相互作用。MM-Cf0和MM-Cf9基因型膜的结合动力学和结合能力相似。在所有测试的茄科植物物种中都存在AVR9结合位点,而在分析的非茄科物种中未鉴定出此类结合位点。从不同茄科植物物种中分离得到的膜结合AVR9的能力似乎与Cf-9基因家族成员的存在相关,但这种相关性是否具有功能仍有待确定。