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一条新的三酰甘油生物合成途径导致杨梅(Myrica pensylvanica)果实表面蜡质中大量甘油脂质的积累。

A Novel Pathway for Triacylglycerol Biosynthesis Is Responsible for the Accumulation of Massive Quantities of Glycerolipids in the Surface Wax of Bayberry (Myrica pensylvanica) Fruit.

作者信息

Simpson Jeffrey P, Ohlrogge John B

机构信息

Department of Plant Biology, Michigan State University, East Lansing, Michigan 48824 Great Lakes Bioenergy Research Center, Michigan State University, East Lansing, Michigan 48824.

Department of Plant Biology, Michigan State University, East Lansing, Michigan 48824 Great Lakes Bioenergy Research Center, Michigan State University, East Lansing, Michigan 48824

出版信息

Plant Cell. 2016 Jan;28(1):248-64. doi: 10.1105/tpc.15.00900. Epub 2016 Jan 7.

Abstract

Bayberry (Myrica pensylvanica) fruits synthesize an extremely thick and unusual layer of crystalline surface wax that accumulates to 32% of fruit dry weight, the highest reported surface lipid accumulation in plants. The composition is also striking, consisting of completely saturated triacylglycerol, diacylglycerol, and monoacylglycerol with palmitate and myristate acyl chains. To gain insight into the unique properties of Bayberry wax synthesis, we examined the chemical and morphological development of the wax layer, monitored wax biosynthesis through [(14)C]-radiolabeling, and sequenced the transcriptome. Radiolabeling identified sn-2 monoacylglycerol as an initial glycerolipid intermediate. The kinetics of [(14)C]-DAG and [(14)C]-TAG accumulation and the regiospecificity of their [(14)C]-acyl chains indicated distinct pools of acyl donors and that final TAG assembly occurs outside of cells. The most highly expressed lipid-related genes were associated with production of cutin, whereas transcripts for conventional TAG synthesis were >50-fold less abundant. The biochemical and expression data together indicate that Bayberry surface glycerolipids are synthesized by a pathway for TAG synthesis that is related to cutin biosynthesis. The combination of a unique surface wax and massive accumulation may aid understanding of how plants produce and secrete non-membrane glycerolipids and also how to engineer alternative pathways for lipid production in non-seeds.

摘要

杨梅(Myrica pensylvanica)果实合成了一层极其厚实且不同寻常的结晶表面蜡质层,其含量占果实干重的32%,这是植物中报道的最高表面脂质积累量。其组成也很引人注目,由完全饱和的三酰甘油、二酰甘油和单酰甘油组成,酰基链为棕榈酸酯和肉豆蔻酸酯。为了深入了解杨梅蜡质合成的独特特性,我们研究了蜡质层的化学和形态发育,通过[(14)C] - 放射性标记监测蜡质生物合成,并对转录组进行了测序。放射性标记确定sn - 2单酰甘油是初始的甘油脂中间体。[(14)C] - DAG和[(14)C] - TAG积累的动力学以及它们[(14)C] - 酰基链的区域特异性表明存在不同的酰基供体池,并且最终的TAG组装发生在细胞外。表达量最高的脂质相关基因与角质的产生有关,而传统TAG合成的转录本丰度则低50倍以上。生化和表达数据共同表明,杨梅表面甘油脂是通过与角质生物合成相关的TAG合成途径合成的。独特的表面蜡质和大量积累的结合可能有助于理解植物如何产生和分泌非膜性甘油脂,以及如何设计非种子中脂质生产的替代途径。

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