首页> 美国卫生研究院文献>Scientific Reports >Identification characterization and expression profiles of Fusarium udum stress-responsive WRKY transcription factors in Cajanus cajan under the influence of NaCl stress and Pseudomonas fluorescens OKC
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Identification characterization and expression profiles of Fusarium udum stress-responsive WRKY transcription factors in Cajanus cajan under the influence of NaCl stress and Pseudomonas fluorescens OKC

机译:NaCl胁迫和荧光假单胞菌OKC影响下Cajanus cajan中镰刀镰孢胁迫响应WRKY转录因子的鉴定表征和表达谱

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摘要

The WRKY gene family has never been identified in pigeonpea (Cajanus cajan). Therefore, objective of the present study was to identify the WRKY gene family in pigeonpea and characterize the Fusarium udum stress-responsive WRKY genes under normal, NaCl-stressed and Pseudomonas fluorescens OKC (a plant growth-promoting bacterial strain) treated conditions. The aim was to characterize the Fusarium udum stress-responsive WRKY genes under some commonly occurring field conditions. We identified 97 genes in the WRKY family of pigeonpea, using computational prediction method. The gene family was then classified into three groups through phylogenetic analysis of the homologous genes from the representative plant species. Among the 97 identified WRKY genes 35 were further classified as pathogen stress responsive genes. Functional validation of the 35 WRKY genes was done through generating transcriptional profiles of the genes from root tissues of pigeonpea plants under the influence of P. fluorescens OKC after 24 h of stress application (biotic: Fusarium udum, abiotic: NaCl). The entire experiment was conducted in two pigeonpea cultivars Asha (resistant to F. udum) and Bahar (susceptible to F. udum) and the results were concluded on the basis of transcriptional regulation of the WRKY genes in both the pigeonpea cultivars. The results revealed that among the 35 tentatively identified biotic stress responsive CcWRKY genes, 26 were highly F. udum responsive, 17 were better NaCl responsive compared to F. udum and 11 were dual responsive to both F. udum and NaCl. Application of OKC was able to enhance transcript accumulation of the individual CcWRKY genes to both the stresses when applied individually but not in combined challenge of the two stresses. The results thus indicated that CcWRKY genes play a vital role in the defense signaling against F. udum and some of the F. udum responsive CcWRKYs (at least 11 in pigeonpea) are also responsive to abiotic stresses such as NaCl. Further, plant beneficial microbes such as P. fluorescens OKC also help pegionpea to defend itself against the two stresses (F. udum and NaCl) through enhanced expression of the stress responsive CcWRKY genes when the stresses are applied individually.
机译:WRKY基因家族从未在木豆(Cajanus cajan)中鉴定。因此,本研究的目的是鉴定木豆中的WRKY基因家族,并表征在正常,NaCl胁迫和荧光假单胞菌OKC(一种促进植物生长的细菌菌株)处理的条件下,对镰刀菌胁迫响应的WRKY基因。目的是在一些常见的田间条件下表征对镰刀菌胁迫响应的WRKY基因。我们使用计算预测方法鉴定了木豆WRKY家族中的97个基因。然后通过对来自代表性植物物种的同源基因进行系统发育分析,将该基因家族分为三类。在97个已鉴定的WRKY基因中,有35个被进一步分类为病原体应激反应基因。通过在施加荧光24小时后,在荧光假单胞菌OKC的影响下,从木豆植物根组织产生基因转录图谱,对35个WRKY基因进行功能验证(生物素:镰孢,非生物素:NaCl)。整个实验是在两个木豆品种Asha(对圆球镰孢菌有抗性)和Bahar(对木球镰孢易感)中进行的,其结果是基于两个木豆品种中WRKY基因的转录调控得出的结论。结果显示,在35个初步确定的生物胁迫响应CcWRKY基因中,有26个对F. udum具有高响应性,其中17个对NaCl的响应优于对F. udum,而11个对这两个元素均具有双重响应。 udum 和NaCl。当单独使用OKC时,能够增强单个CcWRKY基因在两个胁迫下的转录本积累,但不能同时应对两种胁迫。结果表明,CcWRKY基因在防御 F 的防御信号中起着至关重要的作用。 udum 和一些 F udum 响应性CcWRKYs(木豆中至少11个)对非生物胁迫(如NaCl)也具有响应性。此外,植物有益微生物如 P fluorescens OKC还可以通过增强胁迫响应性CcWRKY基因的表达来帮助豆荚抗逆两种胁迫( F udum 和NaCl)。应力是单独施加的。

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