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环肽是菊三七固有防御系统的组成部分。

Cyclotides are a component of the innate defense of Oldenlandia affinis.

机构信息

Institute for Molecular Bioscience, The University of Queensland, Brisbane, Queensland 4072, Australia.

出版信息

Biopolymers. 2010;94(5):635-46. doi: 10.1002/bip.21419.

Abstract

Cyclotides are small cysteine-rich plant peptides similar in size and processing to the defensins. Long-term growth of the Rubiaceae family plant Oldenlandia affinis under different conditions reveals a diverse cyclotide gene and peptide expression profile, including tissue specificity, suggesting that different cyclotides are regulated differently both spatially and in response to the environment. To determine whether cyclotide precursor gene regulation was dynamic we exposed O. affinis to a range of abiotic, biotic, and hormonal stimuli and monitored Oak1-4 expression over a 48-h period. Unlike some defensins, the genes for cyclotide precursor proteins Oak1-4 did not display dynamic change, indicating that they contribute to the basal defense of O. affinis. Despite this lack of dynamism, the cyclotide profile of plants grown on plates differed markedly from field-grown plants and so prompted attempts to discover novel cyclotides and precursor genes. The two most abundant cyclotides from plate-grown O. affinis were sequenced and one was found to be an unusual linear cyclotide derivative, kalata B20-lin. Degenerate PCR of plate-grown O. affinis obtained five novel cyclotide genes including Oak9 which encodes for kalata B20-lin and appears to have arisen by the presence of a premature stop codon.

摘要

环肽是一类小的富含半胱氨酸的植物肽,在大小和加工上与防御素相似。在不同条件下对茜草科植物耳草属植物长期生长的研究揭示了不同的环肽基因和肽表达谱,包括组织特异性,表明不同的环肽在空间和对环境的响应上受到不同的调控。为了确定环肽前体基因的调控是否具有动态性,我们将耳草属植物暴露于一系列非生物、生物和激素刺激下,并在 48 小时内监测 Oak1-4 的表达。与一些防御素不同,Oak1-4 等环肽前体蛋白基因没有表现出动态变化,表明它们对耳草属植物的基础防御有贡献。尽管缺乏这种动态性,但在平板上生长的植物的环肽谱与田间生长的植物明显不同,因此促使我们尝试发现新的环肽和前体基因。从平板培养的耳草属植物中分离出两种最丰富的环肽并对其进行测序,发现一种是不寻常的线性环肽衍生物 kalata B20-lin。对平板培养的耳草属植物进行简并 PCR 获得了五个新的环肽基因,包括编码 kalata B20-lin 的 Oak9,它似乎是由于存在过早的终止密码子而产生的。

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