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Wheat zinc finger protein TaLSD1, a negative regulator of programmed cell death, is involved in wheat resistance against stripe rust fungus

机译:小麦锌指蛋白TaLSD1是程序性细胞死亡的负调节剂,与小麦对条锈菌的抗性有关

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摘要

Genetic characterization of the Arabidopsis lesion simulating disease 1 (lsd1) mutant, a lesion mimic mutant (LMM), has revealed the essential role of AtLSD1 in the negative regulation of cell death and disease resistance. The three zinc-finger motifs found in AtLSD1 revealed a novel plant-specific gene family, whose members are significantly related to programmed cell death (PCD). In this study, we characterized a functional homologue to AtLSD1, TaLSD1, in the wheat-stripe rust fungus pathosystem. The expression of TaLSD1 was differentially induced during incompatible and compatible interactions between wheat and Puccinia striiformis f. sp. tritici (Pst) and was up-regulated by oxidative stress generated by methyl viologen (MV). TaLSD1 was found to be predominately localized in the nucleus of onion epidermal cell. Transient overexpression assays in Nicotiana benthamiana demonstrated that TaLSD1 partially inhibited programmed cell death triggered by a mouse Bax protein, whereas expression of TaLSD1 alone had no influence on the phenotype of tobacco. Knocking down the expression of TaLSD1 through virus-induced gene silencing (VIGS) increased wheat resistance against Pst accompanied by an enhanced hypersensitive response (HR), an increase in PR1 gene expression and a reduction in Pst hyphal growth. Our results suggest that TaLSD1 functions negatively in regulating the plant hypersensitive cell death and is involved in disease resistance of wheat against the stripe rust pathogen.
机译:拟南芥病灶模拟疾病1(lsd1)突变体(病灶模拟突变体(LMM))的遗传学特征揭示了AtLSD1在细胞死亡和疾病抗性的负调控中的重要作用。 AtLSD1中发现的三个锌指基序揭示了一个新的植物特异性基因家族,其成员与程序性细胞死亡(PCD)密切相关。在这项研究中,我们表征了小麦条带锈病真菌病理系统中AtLSD1,TaLSD1的功能同源物。 TaLSD1的表达在小麦和小麦条锈菌之间的不相容和相容相互作用中被差异诱导。 sp。小麦(Pst)并被甲基紫精(MV)产生的氧化应激上调。发现TaLSD1主要位于洋葱表皮细胞的细胞核中。在本氏烟草中的瞬时过表达测定表明,TaLSD1部分抑制了由小鼠Bax蛋白触发的程序性细胞死亡,而单独TaLSD1的表达对烟草表型没有影响。通过病毒诱导的基因沉默(VIGS)抑制TaLSD1的表达增加了小麦对Pst的抗性,同时增加了过敏反应(HR),PR1基因表达的增加和Pst菌丝生长的减少。我们的结果表明,TaLSD1在调节植物超敏细胞死亡中起负作用,并且参与了小麦对条锈病病原体的抗病性。

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