Barker Claire L, Talbot Stephen J, Jones Jonathan D G, Jones David A
Plant Cell Biology Group, Research School of Biological Sciences, The Australian National University, Canberra, ACT 0200, Australia.
Plant J. 2006 May;46(3):369-84. doi: 10.1111/j.1365-313X.2006.02698.x.
The tomato Cf-9 gene confers resistance to races of the leaf mould fungus Cladosporium fulvum that carry the Avr9 avirulence gene. Cf-9 resides at a locus containing five paralogous genes and was isolated by transposon tagging using a modified maize Dissociation (Ds) element. The tagging experiment generated an allelic series of Ds-induced mutations of Cf-9, most of which were wild type in appearance. However, one mutant, designated M205, showed stunted growth, wilting, progressive leaf chlorosis and necrosis and constitutive expression of defence genes. The phenotype of M205 was caused by a semidominant, Avr9-independent mutation that co-segregated with a Ds element insertion at the Cf-9 locus. Molecular genetic analysis indicated that the Cf-9 locus of M205 had undergone recombination, generating a chimeric gene, designated Hcr9-M205, that comprised an in-frame fusion between the 5' coding region of the Cf-9 paralogue, Hcr9-9A, and the 3' coding region of Cf-9. The presence of a possible excision footprint adjacent to the junction between Hcr9-9A and Cf-9, and a Ds insertion at the homologous position in the downstream paralogue Hcr9-9D, is consistent with recombination between Hcr9-9A and Cf-9 promoted by transposition of Ds from Cf-9 into Hcr9-9D. Agrobacterium tumefaciens-mediated transient expression of Hcr9-M205 in Nicotiana tabacum caused chlorosis and the accumulation of defence gene transcripts, indicating that the protein encoded by this novel Hcr9 gene is autoactive.
番茄Cf-9基因赋予对携带Avr9无毒基因的叶霉病菌(Cladosporium fulvum)小种的抗性。Cf-9位于一个包含五个旁系同源基因的位点,通过使用修饰的玉米解离(Ds)元件进行转座子标签法分离得到。标签实验产生了一系列由Ds诱导的Cf-9等位基因突变,其中大多数在外观上是野生型的。然而,一个名为M205的突变体表现出生长发育迟缓、萎蔫、叶片逐渐黄化和坏死以及防御基因的组成型表达。M205的表型是由一个半显性、不依赖Avr9的突变引起的,该突变与Ds元件插入Cf-9位点共分离。分子遗传学分析表明,M205的Cf-9位点发生了重组,产生了一个嵌合基因,命名为Hcr9-M205,它由Cf-9旁系同源基因Hcr9-9A的5'编码区与Cf-9的3'编码区框内融合组成。在Hcr9-9A和Cf-9之间的连接处相邻位置存在一个可能的切除足迹,以及在下游旁系同源基因Hcr9-9D的同源位置有一个Ds插入,这与Ds从Cf-9转座到Hcr9-9D促进Hcr9-9A和Cf-9之间的重组一致。根癌农杆菌介导的Hcr9-M205在烟草中的瞬时表达导致黄化和防御基因转录本的积累,表明这个新的Hcr9基因编码的蛋白质具有自激活活性。