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鳄梨果实的成熟与衰老:中果皮、异细胞和种子中脂肪族产乙酸素及脂质组学特征的动态变化

Avocado fruit maturation and ripening: dynamics of aliphatic acetogenins and lipidomic profiles from mesocarp, idioblasts and seed.

作者信息

Rodríguez-López Carlos Eduardo, Hernández-Brenes Carmen, Treviño Víctor, Díaz de la Garza Rocío I

机构信息

Escuela de Ingeniería y Ciencias, Campus Monterrey, Tecnologico de Monterrey, Monterrey, Nuevo Leon, Mexico.

Cátedra de Bioinformática, Escuela de Medicina, Tecnologico de Monterrey, Monterrey, Nuevo Leon, Mexico.

出版信息

BMC Plant Biol. 2017 Sep 29;17(1):159. doi: 10.1186/s12870-017-1103-6.

Abstract

BACKGROUND

Avocado fruit contains aliphatic acetogenins (oft-acetylated, odd-chain fatty alcohols) with promising bioactivities for both medical and food industries. However, we have scarce knowledge about their metabolism. The present work aimed to study changes in acetogenin profiles from mesocarp, lipid-containing idioblasts, and seeds from 'Hass' cultivar during fruit development, germination, and three harvesting years. An untargeted LC-MS based lipidomic analysis was also conducted to profile the lipidome of avocado fruit in each tissue.

RESULTS

The targeted analysis showed that acetogenin profiles and contents remained unchanged in avocado mesocarp during maturation and postharvest ripening, germination, and different harvesting years. However, a shift in the acetogenin profile distribution, accompanied with a sharp increase in concentration, was observed in seed during early maturation. Untargeted lipidomics showed that this shift was accompanied with remodeling of glycerolipids: TAGs and DAGs decreased during fruit growing in seed. Remarkably, the majority of the lipidome in mature seed was composed by acetogenins; we suggest that this tissue is able to synthesize them independently from mesocarp. On the other hand, lipid-containing idioblasts accumulated almost the entire acetogenin pool measured in the whole mesocarp, while only having 4% of the total fatty acids. The lipidome of this cell type changed the most when the fruit was ripening after harvesting, TAGs decreased while odd-chain DAGs increased. Notably, idioblast lipidome was more diverse than that from mesocarp.

CONCLUSIONS

Evidence shown here suggests that idioblasts are the main site of acetogenin biosynthesis in avocado mesocarp. This work unveiled the prevalence of aliphatic acetogenins in the avocado fruit lipidome and evidenced TAGs as initial donors of the acetogenin backbones in its biosynthesis. It also sets evidence for acetogenins being included in future works aimed at characterizing the avocado seed, as they are a main component of their lipidome.

摘要

背景

鳄梨果实含有脂肪族产乙酸素(通常为乙酰化的奇数链脂肪醇),对医药和食品工业具有潜在的生物活性。然而,我们对它们的代谢了解甚少。本研究旨在探究‘哈斯’品种果实发育、萌发及三个收获年份期间,中果皮、含脂异细胞和种子中产乙酸素谱的变化。还进行了基于非靶向液相色谱 - 质谱联用的脂质组学分析,以描绘每个组织中鳄梨果实的脂质组。

结果

靶向分析表明,鳄梨中果皮在成熟、采后成熟、萌发及不同收获年份期间,产乙酸素谱和含量保持不变。然而,在早期成熟阶段,种子中产乙酸素谱分布发生变化,同时浓度急剧增加。非靶向脂质组学表明,这种变化伴随着甘油olipids的重塑:在种子中果实生长期间,三酰甘油(TAGs)和二酰甘油(DAGs)减少。值得注意的是,成熟种子中的大部分脂质组由产乙酸素组成;我们认为该组织能够独立于中果皮合成它们。另一方面,含脂异细胞积累了几乎整个中果皮中测得的产乙酸素库,而其脂肪酸总量仅占4%。这种细胞类型的脂质组在采后果实成熟时变化最大,TAGs减少而奇数链DAGs增加。值得注意的是,异细胞脂质组比中果皮的脂质组更多样化。

结论

此处所示证据表明,异细胞是鳄梨中果皮中产乙酸素生物合成的主要部位。这项工作揭示了脂肪族产乙酸素在鳄梨果实脂质组中的普遍性,并证明TAGs是其生物合成中产乙酸素骨架的初始供体。它还为产乙酸素被纳入未来旨在表征鳄梨种子的研究提供了证据,因为它们是其脂质组的主要成分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b439/5623960/602f63f97811/12870_2017_1103_Fig1_HTML.jpg

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