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从苏格兰松树中提取的防御素:结构和功能特征。

Seed-derived defensins from Scots pine: structural and functional features.

机构信息

Ukrainian National Forestry University, 103, Gen. Chuprynka, St., Lviv, 79057, Ukraine.

Ivan Franko National University of Lviv, 1, Saksagansky St., Lviv, 79005, Ukraine.

出版信息

Planta. 2021 Nov 24;254(6):129. doi: 10.1007/s00425-021-03788-w.

Abstract

The recombinant PsDef5.1 defensin inhibits the growth of phytopathogenic fungi, Gram-positive and Gram-negative bacteria, and human pathogen Candida albicans. Expression of seed-derived Scots pine defensins is tissue-specific and developmentally regulated. Plant defensins are ubiquitous antimicrobial peptides that possess a broad spectrum of activities and multi-functionality. The genes for these antimicrobial proteins form a multigenic family in the plant genome and are expressed in every organ. Most of the known defensins have been isolated from seeds of various monocot and dicot species, but seed-derived defensins have not yet been characterized in gymnosperms. This study presents the isolation of two new 249 bp cDNA sequences from Scots pine seeds with 97.9% nucleotide homology named PsDef5.1 and PsDef5.2. Their deduced amino acid sequences have typical plant defensin features, including an endoplasmic reticulum signal sequence of 31 amino acids (aa), followed by a characteristic defensin domain of 51 aa. To elucidate the functional activity of new defensins, we expressed the mature form of PsDef5.1 in a prokaryotic system. The purified recombinant peptide exhibited activity against the phytopathogenic fungi and Gram-negative and Gram-positive bacteria with the IC of 5-18 µM. Moreover, it inhibited the growth of the human pathogen Candida albicans with the IC of 6.0 µM. Expression analysis showed that transcripts of PsDef5.1-2 genes were present in immature and mature pine seeds and different parts of seedlings at the early stage of germination. In addition, unlike the PsDef5.2, the PsDef5.1 gene was expressed in the reproductive organs. Our findings indicate that novel defensins are promising candidates for transgenic application and the development of new antimicrobial drugs.

摘要

重组 PsDef5.1 防御素抑制植物病原真菌、革兰氏阳性和革兰氏阴性细菌以及人病原体白色念珠菌的生长。种子衍生的苏格兰松树防御素的表达具有组织特异性和发育调控性。植物防御素是具有广谱活性和多功能性的普遍存在的抗菌肽。这些抗菌蛋白的基因在植物基因组中形成一个多基因家族,并在每个器官中表达。大多数已知的防御素已从各种单子叶和双子叶物种的种子中分离出来,但在裸子植物中尚未对种子衍生的防御素进行特征描述。本研究从苏格兰松树种子中分离出两个新的 249bp cDNA 序列,命名为 PsDef5.1 和 PsDef5.2,它们的核苷酸同源性为 97.9%。它们推导的氨基酸序列具有典型的植物防御素特征,包括 31 个氨基酸(aa)的内质网信号序列,随后是 51 个 aa 的特征防御素结构域。为了阐明新防御素的功能活性,我们在原核系统中表达了 PsDef5.1 的成熟形式。纯化的重组肽对植物病原真菌和革兰氏阴性和革兰氏阳性细菌表现出活性,IC 值为 5-18µM。此外,它还抑制了人病原体白色念珠菌的生长,IC 值为 6.0µM。表达分析表明,PsDef5.1-2 基因的转录本存在于不成熟和成熟的松树种子以及幼苗的早期不同部分。此外,与 PsDef5.2 不同,PsDef5.1 基因在生殖器官中表达。我们的研究结果表明,新型防御素是转基因应用和新型抗菌药物开发的有前途的候选物。

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