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Plant Antimicrobial Peptides: An Overview of SuperSAGE Transcrip-tional Profile and a Functional Review

机译:植物抗菌肽:SuperSAGE转录谱概述和功能综述

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摘要

Defensin, thionin and lipid transfer protein (LTP) gene families, which antimicrobial activity has an attractive use in protein engineering and transgenic production of agronomically important plants, have been here functionally reviewed. Also, a transcriptional overview of plant SuperSAGE libraries and analysis of 26 bp tags possibly annotated for those families are presented. Tags differentially expressed (p < 0.05) or constitutively transcribed were identified from leaves or roots from SuperSAGE libraries from important Brazilian plant crops [cowpea (Vigna unguiculata (L.) Walp.), soybean {Glycine max (L.) Merr.) and modern sugarcane hybrids (Saccharum spp.)] submitted to abiotic [salt (100 mM NaCl) or drought] or biotic stresses [fungus inoculation (Phakopsora pachyrhizi; Asiatic Soyben Rust phytopathogen)]. The diverse transcriptional patterns observed, probably related to the variable range of targets and functions involved, could be the first step to unravel the antimicrobial peptide world and the plant stress response relationship. Moreover, SuperSAGE opens the opportunity to find some SNPs or even rare transcripts that could be important on plant stress resistance mechanisms. Putative defensin or LTPs revealed by SuperSAGE following a specific plant treatment or physiological condition could be useful for future use in genetic improvement of plants.
机译:在功能上已对抗微生物活性在蛋白质工程和农艺学上重要的植物的转基因生产中具有有吸引力的用途的防御素,硫蛋白和脂质转移蛋白(LTP)基因家族进行了综述。此外,还介绍了植物SuperSAGE文库的转录概述以及可能为这些家族注释的26 bp标签的分析。从巴西重要农作物[co豆(Vigna unguiculata(L.)Walp。),大豆(Glycine max(L.)Merr。)和SuperSAGE库的叶或根中鉴定出差异表达(p <0.05)或组成型转录的标签。现代甘蔗杂交种(Saccharum spp。)遭受非生物[盐(100 mM NaCl)或干旱]或生物胁迫[真菌接种(Phakopsora pachyrhizi;亚洲Soyben Rust植物病原体)]。观察到的多种转录模式可能与所涉及的靶标和功能的可变范围有关,可能是揭示抗菌肽世界与植物胁迫反应关系的第一步。此外,SuperSAGE开启了寻找一些可能对植物抗逆性机制重要的SNP甚至稀有转录本的机会。在特定的植物处理或生理条件下,SuperSAGE揭示的推定防御素或LTP可能对将来在植物遗传改良中的用途很有用。

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