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TaLHY a 1R-MYB Transcription Factor Plays an Important Role in Disease Resistance against Stripe Rust Fungus and Ear Heading in Wheat

机译:TaLHY一种1R-MYB转录因子在小麦抗条纹锈病和穗穗病害中起重要作用

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摘要

LHY (late elongated hypocotyl) is an important gene that regulates and controls biological rhythms in plants. Additionally, LHY is highly expressed in the SSH (suppression subtractive hybridization) cDNA library-induced stripe rust pathogen (CYR32) in our previous research. To identify the function of the LHY gene in disease resistance against stripe rust, we used RACE-PCR technology to clone TaLHY in the wheat variety Chuannong19. The cDNA of TaLHY is 3085 bp long with an open reading frame of 1947 bp. TaLHY is speculated to encode a 70.3 kDa protein of 648 amino acids , which has one typical plant MYB-DNA binding domain; additionally, phylogenetic tree shows that TaLHY has the highest homology with LHY of Brachypodium distachyon(BdLHY-like). Quantitative fluorescence PCR indicates that TaLHY has higher expression in the leaf, ear and stem of wheat but lower expression in the root. Infestation of CYR32 can result in up-regulated expression of TaLHY, peaking at 72 h. Using VIGS (virus-induced gene silencing) technology to disease-resistant wheat in the fourth leaf stage, plants with silenced TaLHY cannot complete their heading stage. Through the compatible interaction with the stripe rust physiological race CYR32, Chuannong 19 loses its immune capability toward the stripe rust pathogen, indicating that TaLHY may regulate and participate in the heading of wheat, as well as the defense responses against stripe rust infection.
机译:LHY(晚期伸长的下胚轴)是一个重要的基因,可调节和控制植物的生物节律。此外,在我们先前的研究中,LHY在SSH(抑制消减杂交)cDNA文库诱导的条锈病病原体(CYR32)中高表达。为了鉴定LHY基因在抗条锈病中的功能,我们使用RACE-PCR技术克隆了小麦品种川农19中的TaLHY。 TaLHY的cDNA长3085 bp,开放阅读框为1947 bp。推测TaLHY编码70.3 kDa的648个氨基酸的蛋白质,该蛋白质具有一个典型的植物MYB-DNA结合域。另外,系统进化树显示,TaLHY与短枝曲霉(BdLHY-like)的LHY具有最高的同源性。定量荧光PCR表明,TaLHY在小麦的叶,穗和茎中具有较高的表达,但在根中却具有较低的表达。 CYR32的侵染可导致TaLHY表达上调,在72 h达到高峰。使用VIGS(病毒诱导的基因沉默)技术在第四叶期对抗病小麦产生抗性,具有TaLHY沉默的植物无法完成抽穗期。通过与条锈病生理小种CYR32的相容相互作用,川农19号失去了对条锈病病原体的免疫能力,这表明TaLHY可能调控并参与了小麦的抽穗,以及对条锈病感染的防御反应。

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