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首页> 外文期刊>Plant signaling & behavior >Silencing of DS2 aminoacylase-like genes confirms basal resistance to Phytophthora infestans in Nicotiana benthamiana.
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Silencing of DS2 aminoacylase-like genes confirms basal resistance to Phytophthora infestans in Nicotiana benthamiana.

机译:DS2氨酰酶样基因的沉默证实了本氏烟草对疫霉疫霉的基础抗性。

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Nicotiana benthamiana is a potential host to several plant pathogens, and immature leaves of N. benthamiana are susceptible to Phytophthora infestans. In contrast, mature leaves of N. benthamiana are weakly susceptible and show basal resistance to P. infestans. We screened a gene-silenced mature plant showing high resistance to P. infestans, designated as DS2 (Disease suppression 2). The deduced amino acid sequence of cDNA responsible for DS2 encoded a putative aminoacylase. Growth of P. infestans decreased in DS2 plants. Trypan blue staining revealed inhibited hyphae growth of P. infestans with an increased number of dead cells under the penetration site in DS2 plants. Consistent with growth inhibition of P. infestans, defense responses such as reactive oxygen generation and expression of a salicylic acid-dependent PR-1a increased markedly in DS2 plants compared with that of control plants. DS2 phenotype was compromised in NahG plants, suggesting DS2 phenotype depends on the salicylic acid signaling pathway. Accelerated defense response was observed in DS2 plants elicited by INF1 elicitin as well as by NbMEK2DD, which is the constitutive active form of NbMEK2, and act as a downstream regulator of INF1 perception. On the other hand, INF1- and NbMEK2DD-induced defense responses were prevented by DS2-overexpressing transgenic tobacco. These results suggest that DS2 negatively regulates plant defense responses against P. infestans via NbMEK2 and SA-dependent signaling pathway in N. benthamiana.CAS Registry Numbers 69-72-7
机译:本氏烟草是几种植物病原体的潜在宿主,本氏烟草的未成熟叶片易受疫霉疫霉的影响。相比之下,本氏烟草的成熟叶片较弱,并且对疫霉病原表现出基础抗性。我们筛选了一种基因沉默的成熟植物,该植物对P. infestans具有高抗性,命名为DS2(疾病抑制2)。推导负责DS2的cDNA的氨基酸序列编码一个假定的氨酰酶。 DS2植物中P. infestans的生长下降。锥虫蓝染色显示,在DS2植物的渗透位点下,致病疫霉菌的菌丝生长受到抑制,死细胞数量增加。与疫病菌的生长抑制相一致,与对照植物相比,DS2植物的防御反应(例如活性氧生成和水杨酸依赖性PR-1a的表达)显着增加。在NahG植物中,DS2的表型受到损害,表明DS2的表型取决于水杨酸信号通路。在INF1诱导素和NbMEK2 DD 诱导的DS2植物中,防御反应加速,这是NbMEK2的组成型活性形式,并且是INF1感知的下游调节剂。另一方面,过表达DS2的转基因烟草可以阻止INF1-和NbMEK2 DD 诱导的防御反应。这些结果表明,DS2通过NbMEK2和本塞姆氏烟草中SA依赖的信号传导途径负调控植物对疫霉的防御反应.CAS登记号69-72-7

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