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首页> 外文期刊>BMC Plant Biology >Constitutive expression of transgenes encoding derivatives of the synthetic antimicrobial peptide BP100: impact on rice host plant fitness
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Constitutive expression of transgenes encoding derivatives of the synthetic antimicrobial peptide BP100: impact on rice host plant fitness

机译:编码合成抗菌肽BP100衍生物的转基因的组成型表达:对水稻寄主植物适应性的影响

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Background The Biopeptide BP100 is a synthetic and strongly cationic α-helical undecapeptide with high, specific antibacterial activity against economically important plant-pathogenic bacteria, and very low toxicity. It was selected from a library of synthetic peptides, along with other peptides with activities against relevant bacterial and fungal species. Expression of the BP100 series of peptides in plants is of major interest to establish disease-resistant plants and facilitate molecular farming. Specific challenges were the small length, peptide degradation by plant proteases and toxicity to the host plant. Here we approached the expression of the BP100 peptide series in plants using BP100 as a proof-of-concept. Results Our design considered up to three tandemly arranged BP100 units and peptide accumulation in the endoplasmic reticulum (ER), analyzing five BP100 derivatives. The ER retention sequence did not reduce the antimicrobial activity of chemically synthesized BP100 derivatives, making this strategy possible. Transformation with sequences encoding BP100 derivatives (bp100der) was over ten-fold less efficient than that of the hygromycin phosphotransferase (hptII) transgene. The BP100 direct tandems did not show higher antimicrobial activity than BP100, and genetically modified (GM) plants constitutively expressing them were not viable. In contrast, inverted repeats of BP100, whether or not elongated with a portion of a natural antimicrobial peptide (AMP), had higher antimicrobial activity, and fertile GM rice lines constitutively expressing bp100der were produced. These GM lines had increased resistance to the pathogens Dickeya chrysanthemi and Fusarium verticillioides, and tolerance to oxidative stress, with agronomic performance comparable to untransformed lines. Conclusions Constitutive expression of transgenes encoding short cationic α-helical synthetic peptides can have a strong negative impact on rice fitness. However, GM plants expressing, for example, BP100 based on inverted repeats, have adequate agronomic performance and resistant phenotypes as a result of a complex equilibrium between bp100der toxicity to plant cells, antimicrobial activity and transgene-derived plant stress response. It is likely that these results can be extended to other peptides with similar characteristics.
机译:背景技术生物肽BP100是一种合成的强阳离子α-螺旋十一肽,对经济上重要的植物致病细菌具有很高的特异性抗菌活性,并且毒性极低。它是从合成肽库以及对相关细菌和真菌具有活性的其他肽库中选择的。 BP100系列多肽在植物中的表达对于建立抗病植物和促进分子耕作具有重大意义。具体挑战是其长度短,肽被植物蛋白酶降解以及对宿主植物的毒性。在这里,我们使用BP100作为概念证明来研究BP100肽系列在植物中的表达。结果我们的设计考虑了多达三个串联排列的BP100单元和内质网(ER)中的肽积累,分析了五种BP100衍生物。 ER保留序列不会降低化学合成的BP100衍生物的抗菌活性,从而使该策略成为可能。用编码BP100衍生物(bp100der)的序列进行转化的效率比潮霉素磷酸转移酶(hptII)转基因的效率低十倍。与BP100相比,BP100直接植株没有更高的抗菌活性,组成型表达它们的转基因(GM)植物不可行。相反,无论是否用天然抗微生物肽(AMP)的一部分延长,BP100的反向重复序列都具有较高的抗微生物活性,并产生了组成型表达bp100der的可育转基因水稻系。这些GM品系对病原菌Dickeya chrysanthemi和Fusarium v​​erticillioides具有增强的抗性,并且对氧化胁迫具有耐受性,其农艺性能可与未转化品系相比。结论编码短阳离子α-螺旋合成肽的转基因的组成型表达可能对水稻适应性产生强烈的负面影响。然而,由于bp100der对植物细胞的毒性,抗菌活性和转基因衍生的植物胁迫反应之间的复杂平衡,转基因植物表达例如基于反向重复的BP100,具有足够的农艺性能和抗性表型。这些结果可能会扩展到具有相似特征的其他肽。

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