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在耐冷细菌中表达外源1-氨基环丙烷-1-羧酸脱氨酶基因可调节低温胁迫下番茄的乙烯代谢和冷诱导基因。

Expression of an exogenous 1-aminocyclopropane-1-carboxylate deaminase gene in psychrotolerant bacteria modulates ethylene metabolism and cold induced genes in tomato under chilling stress.

作者信息

Subramanian Parthiban, Krishnamoorthy Ramasamy, Chanratana Mak, Kim Kiyoon, Sa Tongmin

机构信息

Department of Environmental and Biological Chemistry, College of Agriculture, Life and Environment Sciences, Chungbuk National University, Cheongju, Chungbuk 361-763, Republic of Korea.

Department of Environmental and Biological Chemistry, College of Agriculture, Life and Environment Sciences, Chungbuk National University, Cheongju, Chungbuk 361-763, Republic of Korea.

出版信息

Plant Physiol Biochem. 2015 Apr;89:18-23. doi: 10.1016/j.plaphy.2015.02.003. Epub 2015 Feb 9.

Abstract

The role of stress induced ethylene under low temperature stress has been controversial and hitherto remains unclear. In the present study, 1-aminocyclopropane-1-carboxylate deaminase (ACCD) gene, acdS expressing mutant strains were generated from ACCD negative psychrotolerant bacterial strains Flavobacterium sp. OR306 and Pseudomonas frederiksbergensis OS211, isolated from agricultural soil during late winter. After transformation with plasmid pRKACC which contained the acdS gene, both the strains were able to exhibit ACCD activity in vitro. The effect of this ACCD under chilling stress with regards to ethylene was studied in tomato plants inoculated with both acdS expressing and wild type bacteria. On exposing the plants to one week of chilling treatment at 12/10 °C, it was found that stress ethylene, ACC accumulation and ACO activity which are markers of ethylene stress, were significantly reduced in plants inoculated with the acdS gene transformed mutants. In case of plants inoculated with strain OS211-acdS, ethylene emission, ACC accumulation and ACO activity was significantly reduced by 52%, 75.9% and 23.2% respectively compared to uninoculated control plants. Moreover, expression of cold induced LeCBF1 and LeCBF3 genes showed that these genes were significantly induced by the acdS transformed mutants in addition to reduced expression of ethylene-responsive transcription factor 13 (ETF-13) and ACO genes. Induced expression of LeCBF1 and LeCBF3 in plants inoculated with acdS expressing mutants compared to wild type strains show that physiologically evolved stress ethylene and its transcription factors play a role in regulation of cold induced genes as reported earlier in the literature.

摘要

低温胁迫下,胁迫诱导乙烯的作用一直存在争议,至今仍不清楚。在本研究中,从冬末农业土壤中分离出的耐冷细菌菌株黄杆菌属OR306和弗雷德里克斯伯格假单胞菌OS211中,构建了1-氨基环丙烷-1-羧酸脱氨酶(ACCD)基因acdS的表达突变菌株,这两种菌株原本是ACCD阴性的。用含有acdS基因的质粒pRKACC转化后,这两种菌株在体外均能表现出ACCD活性。在接种了表达acdS基因的细菌和野生型细菌的番茄植株中,研究了这种ACCD在冷胁迫下对乙烯的影响。将植株置于12/10℃下进行一周的冷处理后,发现接种了acdS基因转化突变体的植株中,作为乙烯胁迫标志物的胁迫乙烯、ACC积累和ACO活性显著降低。对于接种了菌株OS211-acdS的植株,与未接种的对照植株相比,乙烯释放量、ACC积累量和ACO活性分别显著降低了52%、75.9%和23.2%。此外,冷诱导的LeCBF1和LeCBF3基因的表达表明,除了乙烯反应转录因子13(ETF-13)和ACO基因的表达降低外,这些基因还被acdS转化突变体显著诱导。与野生型菌株相比,接种表达acdS突变体的植株中LeCBF1和LeCBF3的诱导表达表明,如文献中先前报道的那样,生理上产生的胁迫乙烯及其转录因子在冷诱导基因的调控中发挥作用。

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