首页> 美国卫生研究院文献>PLoS Clinical Trials >CsBZIP40, a BZIP transcription factor in sweet orange, plays a positive regulatory role in citrus bacterial canker response and tolerance
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CsBZIP40, a BZIP transcription factor in sweet orange, plays a positive regulatory role in citrus bacterial canker response and tolerance

机译:CsBZIP40是甜橙中的BZIP转录因子,在柑橘细菌性溃疡病反应和耐受中起正调节作用

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摘要

Citrus bacterial canker (CBC) caused by Xanthomonas citri subsp. citri (Xcc) is a systemic bacterial disease that affects citrus plantations globally. Biotic stress in plants has been linked to a group of important transcription factors known as Basic Leucine Zippers (BZIPs). In this study, CsBZIP40 was functionally characterized by expression analysis, including induction by Xcc and hormones, subcellular localization, over-expression and RNAi silencing. CsBZIP40 belongs to group D of the CsBZIP family of transcription factors and localizes in the nucleus, potentially serving as a transcriptional regulator. In wild type (WT) plants CsBZIP40 can be induced by plant hormones in addition to infection by Xcc which has given insight into its involvement in CBC. In the present study, over-expression of CsBZIP40 conferred resistance to Xcc while its silencing led to Xcc susceptibility. Both over-expression and RNAi affected salicylic acid (SA) production and expression of the genes involved in the SA synthesis and signaling pathway, in addition to interaction of CsBZIP40 with CsNPR1, as detected by a GST pull-down assay. Taken together, the results of this study confirmed the important role of CsBZIP40 in improving resistance to citrus canker through the SA signaling pathway by the presence of NPR1 to activate PR genes. Our findings are of potential value in the breeding of tolerance to CBC in citrus fruits.
机译:Xanthomonas citri subsp引起的柑橘细菌性溃疡病(CBC)。柠檬(Xcc)是一种系统性细菌病,在全球范围内影响柑橘种植园。植物中的生物胁迫已与称为重要亮氨酸拉链(BZIPs)的一组重要转录因子相关。在这项研究中,CsBZIP40在功能上通过表达分析来表征,包括Xcc和激素的诱导,亚细胞定位,过表达和RNAi沉默。 CsBZIP40属于CsBZIP家族的转录因子D组,位于细胞核中,有可能充当转录调节因子。在野生型(WT)植物中,除了被Xcc感染外,植物激素还可以通过植物激素诱导CsBZIP40,而Xcc可以深入了解其参与CBC。在本研究中,CsBZIP40的过表达赋予Xcc抗性,而其沉默导致Xcc易感性。如通过GST下拉测定法检测到的,除了CsBZIP40与CsNPR1的相互作用外,过表达和RNAi都影响水杨酸(SA)的生产和参与SA合成和信号传导途径的基因的表达。两者合计,这项研究的结果证实了CsBZIP40在通过SA信号通路提高NPR1激活PR基因对柑桔溃疡病的抵抗中的重要作用。我们的发现对于柑桔类水果对CBC的耐性育种具有潜在价值。

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