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Cloning and characterization of a cowpea seed lipid transfer protein cDNA: expression analysis during seed development and under fungal and cold stresses in seedlings' tissues.

机译:cow豆种子脂质转移蛋白cDNA的克隆和表征:种子发育过程中以及幼苗组织中真菌和寒冷胁迫下的表达分析。

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Lipid transfer proteins (LTPs) are antimicrobial peptides (AMPs) involved in the defence of plants against pathogens. Our group has previously characterized and purified a LTP from cowpea (Vigna unguiculata (L.) Walp.) seeds which caused the inhibition of growth of fungal pathogens in vitro. The aim of this work was to obtain the cDNA encoding the cowpea LTP and after cloning, to use the cDNA as a probe for studying its expression profile during the development of cowpea seeds. In this work, the N-terminal sequence of the mature LTP peptide from cowpea was used to produce a degenerated oligonucleotide. This primer allowed the amplification of the LTP cDNA by RT-PCR from mRNA of cowpea seeds. The sequence analysis of the cloned cDNA, named VULTP, showed 494 bp which encoded a polypeptide of 91 amino acids. The deduced peptide presented high homology of similarity to plant LTPs of Vigna radiata var. radiate (94%), Prunus domestica (82%) and Zea mays (72%). The expression profile of the VULTP gene in cowpea was analysed by Northern blot and revealed that the transcript is not accumulated in adult tissues. Conversely, VULTP mRNA is early and strongly accumulated during seed development. The results obtained to seedling of cowpea demonstrate that the VULTP gene presents differential expression in response to different stress. Further studies will be conducted to try to gain better understanding about the physiological role of this gene in cowpea..
机译:脂质转移蛋白(LTP)是与植物防御病原体有关的抗菌肽(AMP)。我们的研究小组以前已经从cow豆(Vigna unguiculata(L.)Walp。)种子中鉴定并纯化了LTP,该LTP引起了体外真菌病原体生长的抑制。这项工作的目的是获得编码encoding豆LTP的cDNA,并在克隆后使用该cDNA作为探针来研究its豆种子发育过程中的表达谱。在这项工作中,来自cow豆的成熟LTP肽的N端序列用于产生简并寡核苷酸。该引物允许通过RT-PCR从cow豆种子的mRNA扩增LTP cDNA。克隆的cDNA名为VULTP的序列分析显示494 bp,编码91个氨基酸的多肽。推导的肽与Vigna radiata var的植物LTP具有高度相似性。放射状(94%),李属(82%)和玉米((72%)。通过Northern印迹分析了ULT豆中VULTP基因的表达谱,发现该转录本未在成人组织中积累。相反,VULTP mRNA在种子发育过程中早期且强烈积累。 cow豆幼苗获得的结果表明,VULTP基因在不同胁迫下表现出差异表达。将进行进一步的研究以试图更好地了解该基因在cow豆中的生理作用。

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