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首页> 外文期刊>The New Phytologist >Truffle volatiles: from chemical ecology to aroma biosynthesis. (Special Issue: Feature papers on 'Unearthing the truffle genome'.)
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Truffle volatiles: from chemical ecology to aroma biosynthesis. (Special Issue: Feature papers on 'Unearthing the truffle genome'.)

机译:松露挥发物:从化学生态学到香气生物合成。 (特刊:“发掘松露基因组”的专题论文。)

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摘要

Truffles (Tuber spp.) are symbiotic fungi that develop underground in association with plant roots. Food connoisseurs describe their scent as sensual, seductive and unique. These mysterious fungi, however, do not produce their aroma for the mere pleasure of humans. Truffle volatiles act as odorant cues for mammals and insects which are thus able to locate the precious fungi underground and spread their spores. They also freely diffuse in the soil and mediate interactions with microorganisms and plant roots, potentially regulating a complex molecular dialogue among soil fauna and flora. The aim of this review is to synthesize 30 yr of research on truffle volatiles, spanning fields of study from chemical ecology to aroma biosynthesis. Specific aspects of truffle volatile ecology and biology will be discussed, including which species have been studied so far and for what purpose, what ecological role has been demonstrated or speculated to exist for specific truffle volatiles, which volatiles are common or unique to certain species and what their biosynthetic route might be. Future challenges in truffle aroma research will also be addressed, focusing on how high-throughput post-genomic technologies may advance our understanding of truffle aroma biosynthesis and chemical ecology.Digital Object Identifier http://dx.doi.org/10.1111/j.1469-8137.2010.03523.x
机译:松露( Tuber spp。)是与植物根部结合而在地下生长的共生真菌。食品鉴赏家将其气味描述为感性的,诱人的和独特的。然而,这些神秘的真菌并不会仅仅为了人类的愉悦而产生它们的香气。松露挥发物充当哺乳动物和昆虫的气味线索,因此能够在地下找到珍贵的真菌并传播其孢子。它们还可以在土壤中自由扩散,并介导与微生物和植物根的相互作用,从而可能调节土壤动植物之间复杂的分子对话。这篇综述的目的是合成关于松露挥发物的30年研究,涵盖从化学生态学到香气生物合成的研究领域。将讨论松露挥发物生态学和生物学的特定方面,包括迄今为止已研究了哪些物种以及出于何种目的,已经证明或推测了特定松露挥发物具有哪些生态作用,哪些挥发物对于某些物种是常见或独特的;他们的生物合成路线可能是什么。松露香气研究的未来挑战也将得到解决,重点是高通量后基因组技术如何增进我们对松露香气生物合成和化学生态学的理解。数字对象标识符http://dx.doi.org/10.1111/j。 1469-8137.2010.03523.x

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