Esparza-Araiza Mayra J, Bañuelos-Hernández Bernardo, Argüello-Astorga Gerardo R, Lara-Ávila José P, Goodwin Paul H, Isordia-Jasso María I, Castillo-Collazo Rosalba, Rougon-Cardoso Alejandra, Alpuche-Solís Ángel G
División Biología Molecular, Instituto Potosino de Investigación Científica y Tecnológica A.C. San Luis Potosí, México.
Facultad de Agronomía y Veterinaria, Universidad Autónoma de San Luis San Luis Potosí, México.
Front Plant Sci. 2015 Dec 17;6:1019. doi: 10.3389/fpls.2015.01019. eCollection 2015.
Clavibacter michiganensis subsp. michiganensis (Cmm) causes bacterial wilt and canker of tomato. Currently, no Solanum lycopersicum resistant varieties are commercially available, but some degree of Cmm resistance has been identified in Solanum peruvianum. Previous research showed up-regulation of a SUMO E2 conjugating enzyme (SCEI) transcript in S. peruvianum compared to S. lycopersicum following infection with Cmm. In order to test the role of SCEI in resistance to Cmm, a fragment of SCEI from S. peruvianum was cloned into a novel virus-induced gene-silencing (VIGS) vector based on the geminivirus, Tomato Mottle Virus (ToMoV). Using biolistic inoculation, the ToMoV-based VIGS vector was shown to be effective in S. peruvianum by silencing the magnesium chelatase gene, resulting in leaf bleaching. VIGS with the ToMoV_SCEI construct resulted in ~61% silencing of SCEI in leaves of S. peruvianum as determined by quantitative RT-PCR. The SCEI-silenced plants showed unilateral wilting (15 dpi) and subsequent death (20 dpi) of the entire plant after Cmm inoculation, whereas the empty vector-treated plants only showed wilting in the Cmm-inoculated leaf. The SCEI-silenced plants showed higher Cmm colonization and an average of 4.5 times more damaged tissue compared to the empty vector control plants. SCEI appears to play an important role in the innate immunity of S. peruvianum against Cmm, perhaps through the regulation of transcription factors, leading to expression of proteins involved in salicylic acid-dependent defense responses.
密执安棒形杆菌密执安亚种(Cmm)可引发番茄细菌性萎蔫病和溃疡病。目前,尚无市售的抗番茄品种,但已在秘鲁番茄中鉴定出一定程度的Cmm抗性。先前的研究表明,与感染Cmm后的番茄相比,秘鲁番茄中一种SUMO E2缀合酶(SCEI)转录本上调。为了测试SCEI在抗Cmm中的作用,将来自秘鲁番茄的SCEI片段克隆到基于双生病毒番茄斑驳病毒(ToMoV)的新型病毒诱导基因沉默(VIGS)载体中。通过生物弹道接种,基于ToMoV的VIGS载体通过沉默镁螯合酶基因在秘鲁番茄中显示出有效性,导致叶片漂白。用ToMoV_SCEI构建体进行VIGS后,通过定量RT-PCR测定,秘鲁番茄叶片中SCEI的沉默率约为61%。接种Cmm后,SCEI沉默的植株在15天出现单侧萎蔫,随后在20天整株死亡,而空载体处理的植株仅在接种Cmm的叶片中出现萎蔫。与空载体对照植株相比,SCEI沉默的植株显示出更高的Cmm定殖率,受损组织平均多4.5倍。SCEI似乎在秘鲁番茄对Cmm的先天免疫中发挥重要作用,可能是通过调节转录因子,导致参与水杨酸依赖性防御反应的蛋白质表达。