Laboratory of Plant Genetics, Vavilov Institute of General Genetics, Russian Academy of Sciences, ul. Gubkina 3, Moscow, GSP-1, Russian Federation.
Biochimie. 2011 Mar;93(3):450-6. doi: 10.1016/j.biochi.2010.10.019. Epub 2010 Nov 4.
Two novel highly homologous defensins, Sm-AMP-D1 and Sm-AMP-D2, were isolated from seeds of common chickweed Stellaria media L. (family Cariophyllaceae). They show sequence homology to defensins of the Brassicaceae plants and display strong inhibitory activity against phytopathogenic fungi and oomycetes in the micromolar range (IC(50)≤1μM). The cDNA sequences coding for Sm-AMP-D1 and Sm-AMP-D2 were obtained. They code for highly homologous precursor proteins, consisting of a signal peptide of 32 amino acid residues and the mature peptide domain of 50 amino acid residues. The Sm-AMP-D1 and Sm-AMP-D2 precursors differ by two amino acids: one in the signal peptide region, and the other, in the mature peptide domain. Two Sm-D1-encoding genes were identified in S. media genome by PCR amplification from the genomic DNA using Sm-D1-specific primers. They contain a single 599-bp intron in the signal peptide domain and differ from each other by nucleotide substitutions in the intron and 3'-untranslated regions, while the coding sequences are well conserved. One of the genes matched perfectly the sm-D1 cDNA sequence. The sm-D genes show promise for engineering pathogen resistance in crops and expand our knowledge on weed genomics.
从普通繁缕 Stellaria media L.(藜科)种子中分离到两个新型高度同源防御素,Sm-AMP-D1 和 Sm-AMP-D2。它们与芸薹科植物防御素有序列同源性,并在微摩尔范围内对植物病原真菌和卵菌显示出强烈的抑制活性(IC(50)≤1μM)。获得了编码 Sm-AMP-D1 和 Sm-AMP-D2 的 cDNA 序列。它们编码高度同源的前体蛋白,由 32 个氨基酸残基的信号肽和 50 个氨基酸残基的成熟肽域组成。Sm-AMP-D1 和 Sm-AMP-D2 前体在信号肽区域和成熟肽域中有两个氨基酸不同。通过使用 Sm-D1 特异性引物从基因组 DNA 中进行 PCR 扩增,在 S. media 基因组中鉴定出两个 Sm-D1 编码基因。它们在信号肽结构域中包含一个 599bp 的内含子,并且在内含子和 3'-非翻译区中通过核苷酸取代彼此不同,而编码序列则很好地保守。其中一个基因与 sm-D1 cDNA 序列完全匹配。sm-D 基因有望在作物中工程化抗病原体,并扩展我们对杂草基因组学的认识。