首页> 外文期刊>Plant Biotechnology Journal >Comparison of pathogen-induced expression and efficacy of two amphibian antimicrobial peptides, MsrA2 and temporin A, for engineering wide-spectrum disease resistance in tobacco
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Comparison of pathogen-induced expression and efficacy of two amphibian antimicrobial peptides, MsrA2 and temporin A, for engineering wide-spectrum disease resistance in tobacco

机译:病原体诱导的两种两栖抗微生物肽,MSRA2和Tempin A中的疗效的表达和功效,在烟草中工程广谱疾病性

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The rapid accumulation of defensive transgene products in plants only on pathogen invasion has clear advantages over their constitutive synthesis. In this study, two antimicrobial peptides from the skin secretions of frogs, MsrA2 (N-methionine-dermaseptin B1) and temporin A, were evaluated for engineering pathogen-induced disease resistance in plants. Both peptides inhibited plant-specific pathogens in vitro at micromolar concentrations that were not toxic to plant protoplasts. The plant-optimized nucleotide sequences encoding MsrA2 and temporin A were transcriptionally fused to the inducible win3.12T poplar promoter, which had strong systemic activity in response to fungal infection, and introduced into tobacco (Nicotiana tabacum L. cv. Xanthi). Transgene expression was very low in the leaves of unstressed plants; however, it was strongly increased after pathogen challenge or wounding. The pathogen responsiveness of the win3.12T promoter was found to be universal rather than species specific, with high activity in response to all pathogens tested. On induction, the amount of MsrA2 was up to 6-7 microg per gram of fresh leaf tissue. Most importantly, the induced accumulation of MsrA2 and temporin A in transgenic tobacco was sufficient to confer resistance to a variety of phytopathogenic fungi, such as Fusarium solani, F. oxysporum, Alternaria alternata, Botrytis cinerea, Sclerotinia sclerotiorum, the oomycete Pythium aphanidermatum and the bacterium Pectobacterium carotovorum. The accumulation of these peptides in transgenic plants did not alter the normal phenotype of tobacco. Thus, the expression of MsrA2 and temporin A in a pathogen-inducible manner enables the development of tobacco, and possibly other plant species, with wide-spectrum disease resistance, which can reduce the use of pesticides and the associated environmental risks.
机译:仅在病原体侵袭的植物中的防御性转基因产品的快速积累具有明显的优势,优于它们的本体合成。在该研究中,评估了来自青蛙皮肤分泌物,MSRA2(N-甲硫氨酸 - 皮蛋白B1)和TEMININ A的两种抗菌肽,用于工程病原菌诱导的植物抗性。两种肽在对植物原生质体上没有毒性的微摩尔浓度下抑制了植物特异性病原体。将编码MSRA2和Temporin A的植物优化的核苷酸序列与诱导的Win3.12T杨树启动子进行转录融合,其响应于真菌感染具有强大的全身性能,并引入烟草(Nicotiana Tabacum L.CV.Xanthi)。在无士植物的叶子中,转基因表达非常低;然而,在病原体攻击或伤害后强烈增加。发现Win3.12T启动子的病原体反应性是普及的,而不是特异性的物种,响应所有经病原体的活性高。在诱导中,MSRA2的量高达6-7微克新鲜叶组织。最重要的是,MSRA2的诱导积累和在转基因烟草中的临时A足以赋予各种植物致病性真菌的抗性,例如镰刀菌,F. oxysporum,alercaria alternerata,Botrytis cinerea,sclerotinia sclerotiorum,oomycete茄属植物血清和细菌胶杆菌Carotovorum。转基因植物中这些肽的积累没有改变烟草的正常表型。因此,MSRA2和Temputin A以病原体诱导方式的表达能够开发烟草,并且可能是其他植物物种,可以减少杀虫剂的使用和相关的环境风险。

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