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Generalized Induction of Defense Responses in Bean Is Not Correlated with the Induction of the Hypersensitive Reaction.

机译:Bean中防御反应的广义归纳与超敏反应的归纳无关。

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摘要

Transcripts for phenylalanine ammonia-lyase, chalcone synthase, chalcone isomerase, and chitinase accumulated in common bean after infiltration with the Pseudomonas syringae pv tabaci Hrp- mutant Pt11528::Hrp1, even though a hypersensitive reaction did not occur. The temporal pattern of this transcript accumulation was similar to that seen after infiltration with wild-type P. s. tabaci Pt11528, which resulted in a hypersensitive reaction. Escherichia coli DH5[alpha], P. fluorescens Pf101, heat-killed Pt11528 cells, and Pt11528 cells treated with protein synthesis inhibitors also induced accumulation of defense transcripts but not a hypersensitive reaction. In contrast, these transcripts were not detected in plants infiltrated with water or P.s. pv phaseolicola NPS3121, a compatible pathogen that causes halo blight. Phytoalexins were produced in bean after infiltration with Pt11528, Pt11528::Hrp1, Pt11528 cells treated with neomycin, or Pf101, but not in plants infiltrated with NPS3121 or water. These results suggest that there are unique biochemical events associated with the expression of a hypersensitive reaction which are distinct from other plant defense responses such as phytoalexin biosynthesis. In addition, our results support the hypothesis that there is a general, nonspecific mechanism for the induction of defense transcripts and phytoalexins by pathogenic and saprophytic bacteria that is distinct from the more specific mechanism associated with the induction of the hypersensitive reaction.
机译:即使丁香假单胞菌pv烟粉虱Hrp突变体Pt11528 :: Hrp1浸润后,在普通豆中积累的苯丙氨酸氨解酶,查尔酮合酶,查尔酮异构酶和几丁质酶的转录本,即使未发生超敏反应。该转录物积累的时间模式类似于用野生型P.s浸润后看到的。烟粉虱Pt11528,导致过敏反应。用蛋白合成抑制剂处理的大肠杆菌DH5α,荧光假单胞菌Pf101,热灭活的Pt11528细胞和Pt11528细胞也诱导防御转录物的积累,但不引起过敏反应。相反,在水中或水浸润的植物中未检测到这些转录本。 pv phaseolicola NPS3121,一种相容性病原体,可引起晕疫。在用新霉素或Pf101处理的Pt11528,Pt11528 :: Hrp1,Pt11528细胞浸润后,在豆中产生了植物抗毒素,但在用NPS3121或水浸润的植物中未产生植物抗毒素。这些结果表明,存在与超敏反应的表达相关的独特生化事件,其与其他植物防御反应(例如植物抗毒素生物合成)不同。此外,我们的结果支持以下假设:病原菌和腐生细菌诱导防御性转录本和植物抗毒素的一般性,非特异性机制不同于与超敏反应诱导相关的更具体机制。

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