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表达和功能评估 CaZNF830 在辣椒响应青枯菌或高温高湿过程中的作用。

Expression and functional evaluation of CaZNF830 during pepper response to Ralstonia solanacearum or high temperature and humidity.

机构信息

Key Laboratory of Applied Genetics of Universities in Fujian Province, Fujian Agriculture and Forestry University, Fuzhou, Fujian, 350002, PR China; National Education Ministry, Key Laboratory of Plant Genetic Improvement and Comprehensive Utilization, Fujian Agriculture and Forestry University, Fuzhou, Fujian 350002, PR China; College of Crop Science, Fujian Agriculture and Forestry University, Fuzhou, Fujian 350002, PR China.

Key Laboratory of Applied Genetics of Universities in Fujian Province, Fujian Agriculture and Forestry University, Fuzhou, Fujian, 350002, PR China; National Education Ministry, Key Laboratory of Plant Genetic Improvement and Comprehensive Utilization, Fujian Agriculture and Forestry University, Fuzhou, Fujian 350002, PR China; College of Crop Science, Fujian Agriculture and Forestry University, Fuzhou, Fujian 350002, PR China.

出版信息

Microb Pathog. 2018 May;118:336-346. doi: 10.1016/j.micpath.2018.03.044. Epub 2018 Apr 1.

Abstract

Extensive transcriptional reprogramming after pathogen attack determines immunity to these invaders and plant development. Zinc finger (ZNF) transcription factors regulate important processes in plants such as development, vegetative activities and plant immunity. Despite their immense significance, majority of ZNF transcription factors (TF) involved in pepper immunity and resistance to heat stress have not been focused much. Herein, we identified and functionally characterized CaZNF830 in pepper defense against Ralstonia solanacearum inoculation (RSI) and tolerance to high temperature and high humidity (HTHH). Transient expression analysis of CaZNF830-GFP fusion protein in tobacco leaves revealed its localization to the nucleus. Transcription of CaZNF830 is induced in pepper plants upon RSI or HTHH. Consistent with this, fluorometric GUS enzymatic assay driven by pCaZNF830 presented significantly enhanced activity under RSI and HTHH in comparison with the control plants. The silencing of CaZNF830 by virus induced gene silencing (VIGS) significantly compromised pepper immunity against RSI with enhanced growth of Ralstonia solanacearum in pepper plants. Silencing of CaZNF830 also impaired tolerance to HTHH coupled with decreased expression levels of immunity and thermo-tolerance associated marker genes including CaHIR1, CaNPR1, CaPR1, CaABR1 and CaHSP24. By contrast, the transient over-expression of CaZNF830 in pepper leaves by infiltration of GV3101 cells containing 35S::CaZNF830-HA induced HR mimic cell death, HO accumulation and activated the transcriptions of the tested defense-relative or thermo-tolerance associated marker genes. RT-PCR and immune-blotting assay confirmed the stable expression of HA-tagged CaZNF830 mRNA and protein in pepper. All these results suggest that CaZNF830 acts as a positive regulator of plant immunity against RSI or tolerance to HTHH, it is induced by RSI or HTHH and consequently activate pepper immunity against RSI or tolerance to HTHH by directly or indirectly transcriptional modulation of many defense-linked genes.

摘要

在病原体攻击后,广泛的转录重编程决定了植物对这些入侵者的免疫和发育。锌指(ZNF)转录因子调节植物的重要过程,如发育、营养生长和植物免疫。尽管它们具有重要意义,但涉及辣椒免疫和耐热性的大多数 ZNF 转录因子(TF)并没有得到太多关注。在这里,我们鉴定并功能表征了辣椒抵抗罗尔斯顿氏菌接种(RSI)和高温高湿(HTHH)的耐受性过程中涉及的 CaZNF830。CaZNF830-GFP 融合蛋白在烟草叶片中的瞬时表达分析显示其定位于细胞核。在辣椒植株中,RSI 或 HTHH 诱导 CaZNF830 的转录。与此一致,与对照植物相比,由 pCaZNF830 驱动的荧光 GUS 酶活性测定在 RSI 和 HTHH 下显示出显著增强的活性。通过病毒诱导基因沉默(VIGS)沉默 CaZNF830 显著削弱了辣椒对 RSI 的免疫,导致罗尔斯顿氏菌在辣椒植物中生长增强。CaZNF830 的沉默也损害了对 HTHH 的耐受性,同时降低了与免疫和耐热性相关的标记基因的表达水平,包括 CaHIR1、CaNPR1、CaPR1、CaABR1 和 CaHSP24。相比之下,通过浸润含有 35S::CaZNF830-HA 的 GV3101 细胞瞬时过表达 CaZNF830 在辣椒叶片中诱导 HR 模拟细胞死亡、HO 积累,并激活了测试的防御相关或耐热性相关标记基因的转录。RT-PCR 和免疫印迹分析证实了 HA 标记的 CaZNF830 mRNA 和蛋白质在辣椒中的稳定表达。所有这些结果表明,CaZNF830 作为植物对 RSI 免疫或对 HTHH 耐受性的正调节剂,它由 RSI 或 HTHH 诱导,并通过直接或间接的转录调节许多防御相关基因来激活辣椒对 RSI 的免疫或对 HTHH 的耐受性。

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