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一种综合分析方法揭示了野生番茄中腺毛酰基糖代谢物的多样性。

An Integrated Analytical Approach Reveals Trichome Acylsugar Metabolite Diversity in the Wild Tomato .

作者信息

Lybrand Daniel B, Anthony Thilani M, Jones A Daniel, Last Robert L

机构信息

Department of Biochemistry and Molecular Biology, Michigan State University, East Lansing, MI 48824, USA.

Department of Plant Biology, Michigan State University, East Lansing, MI 48824, USA.

出版信息

Metabolites. 2020 Oct 9;10(10):401. doi: 10.3390/metabo10100401.

Abstract

Acylsugars constitute an abundant class of pest- and pathogen-protective Solanaceae family plant-specialized metabolites produced in secretory glandular trichomes. produces copious triacylated sucrose and glucose esters, and the core biosynthetic pathway producing these compounds was previously characterized. We performed untargeted metabolomic analysis of surface metabolites from accessions spanning the species range, which indicated geographic trends in the acylsugar profile and revealed two compound classes previously undescribed from this species, tetraacylglucoses and flavonoid aglycones. A combination of ultrahigh-performance liquid chromatography-high resolution mass spectrometry (UHPLC-HR-MS) and NMR spectroscopy identified variations in the number, length, and branching pattern of acyl chains, and the proportion of sugar cores in acylsugars among accessions. The new dimensions of acylsugar variation revealed by this analysis further indicate variation in the biosynthetic and degradative pathways responsible for acylsugar accumulation. These findings provide a starting point for deeper investigation of acylsugar biosynthesis, an understanding of which can be exploited through crop breeding or metabolic engineering strategies to improve the endogenous defenses of crop plants.

摘要

酰基糖是茄科植物中一类丰富的、由分泌型腺毛产生的、具有害虫和病原体防护作用的植物特化代谢产物。 能产生大量的三酰化蔗糖和葡萄糖酯,且此前已对产生这些化合物的核心生物合成途径进行了表征。我们对该物种范围内不同种质的表面代谢产物进行了非靶向代谢组学分析,结果表明酰基糖谱存在地理趋势,并揭示了该物种此前未描述过的两类化合物,即四酰基葡萄糖和黄酮苷元。超高效液相色谱-高分辨率质谱(UHPLC-HR-MS)和核磁共振光谱相结合,确定了不同种质中酰基链的数量、长度和分支模式以及酰基糖中糖核心的比例存在差异。该分析揭示的酰基糖变异的新维度进一步表明了负责酰基糖积累的生物合成和降解途径存在差异。这些发现为深入研究酰基糖生物合成提供了一个起点,对酰基糖生物合成的理解可通过作物育种或代谢工程策略加以利用,以提高作物的内源防御能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/37bf/7599763/1ea05bb49cfd/metabolites-10-00401-g001.jpg

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