番茄枯萎病病原菌与壳聚糖诱导豌豆易感与抗病互作的基因表达

Brian Fristensky, Robert C. Riggleman , Wendy Wagoner, L.A. Hadwiger
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引用次数: 66

摘要

确定植物抗病分子基础的第一步可能是鉴定其表达与侵染过程密切相关的基因。从先前筛选的cDNA文库中获得了9个豌豆克隆,这些克隆是在接种番茄枯萎菌8小时后从豌豆mRNA诱导的单个群体中获得的。在豌豆荚用相容或不相容形式的茄蓝梭菌或壳聚糖(真菌细胞壁的一种次要成分,已知可诱导抗病)处理后的48小时感染过程中,比较了这些克隆同源RNA的转录和积累。豌豆组织的不亲和性反应与亲和性反应在基因表达上有明显区别。其中三个克隆的基因,被称为I组克隆,在抗病组织中显示出它们的rna的大量诱导,这与细胞学上观察到的抗性暂时相关。在相容反应中,与不相容反应相比,I族基因的激活通常较弱或延迟,并且在接种后12-24 h受到抑制。与第II组克隆同源的基因仅显示部分符合抗性基因的预期活性。我们认为,选择诱导时间与植物对侵染的反应相匹配的克隆基因是获得跨种转化实验候选基因的一种有用的初步筛选技术。
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Gene expression in susceptible and disease resistant interactions of peas induced with Fusarium solani pathogens and chitosan

A first step for establishing the molecular basis of disease resistance in plants may be to identify genes whose expression closely follows the events occurring during infection. Nine pea clones were available from a prior screening of a cDNA library, developed from a single population of pea mRNA induced 8 h following inoculation with Fusarium solani f. sp. phaseoli. Transcription and accumulation of RNA homologous to these clones were compared over a 48 h infection course following the treatment of pea pods with either compatible or incompatible forms of F. solani or chitosan, a minor component of the fungal cell wall which is known to induce disease resistance. The incompatible reaction of the pea tissue is clearly distinguished from the compatible reaction on the basis of gene expression. Three of the cloned genes, designated Group I clones, show a large induction of their RNAs in disease resisting tissue which temporally correlates with the resistance observed cytologically. In the compatible reaction activation of Group I genes is commonly weaker or delayed, and is suppressed 12–24 h after inoculation, compared with the incompatible reaction. Genes homologous with Group II clones showed only a partial fit to the activity expected for resistance genes. We propose that selecting cloned genes whose time course of induction matches the response of plant issue to infection is a useful preliminary screening technique towards obtaining gene candidates for cross-species transformation experiments.

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