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葡萄果肉生长过程中的比较代谢谱分析揭示了根域限制下的系统性影响。

Comparative Metabolic Profiling of Grape Pulp during the Growth Process Reveals Systematic Influences under Root Restriction.

作者信息

Leng Feng, Duan Shuyan, Song Shiren, Zhao Liping, Xu Wenping, Zhang Caixi, Ma Chao, Wang Lei, Wang Shiping

机构信息

Department of Plant Science, School of Agriculture and Biology, Shanghai Jiao Tong University, Shanghai 200240, China.

College of Horticulture and Plant Protection, Yangzhou University, Yangzhou 225009, China.

出版信息

Metabolites. 2021 Jun 11;11(6):377. doi: 10.3390/metabo11060377.

Abstract

The compositions and contents of metabolites in the pulp tissue play critical roles in the fruit quality for table grape. In this study, the effects of root restriction (RR) on the primary and secondary metabolites of pulp tissue at five developmental stages were studied at the metabolomics level, using "Red Alexandria" grape berry ( L.) as materials. The main results were as follows: 283 metabolites were annotated by using ultra-high performance liquid chromatography-mass spectrometry (UPLC-MS); 28 and 16 primary metabolites contents were increased and decreased, and 11 and 19 secondary metabolites contents were increased and decreased, respectively, along the berry development; RR significantly decreased 12 metabolites (four amino acids and derivatives, three organic acids, four flavonoids and one other compound) contents, and improved 40 metabolites (22 amino acids and derivatives, six nucleotides, four carbohydrates, four cofactors, three cinnamic acids and one other compound) accumulation at the different developmental stages. Altogether, our study would be helpful to increase our understanding of grape berry's responses to RR stress.

摘要

果肉组织中代谢物的组成和含量对鲜食葡萄的果实品质起着关键作用。本研究以“红亚历山大”葡萄浆果(L.)为材料,在代谢组学水平上研究了根域限制(RR)对五个发育阶段果肉组织中初生和次生代谢物的影响。主要结果如下:通过超高效液相色谱 - 质谱联用(UPLC - MS)鉴定出283种代谢物;随着浆果发育,28种初生代谢物含量增加,16种初生代谢物含量降低,11种次生代谢物含量增加,19种次生代谢物含量降低;RR显著降低了12种代谢物(4种氨基酸及其衍生物、3种有机酸、4种黄酮类化合物和1种其他化合物)的含量,并提高了40种代谢物(22种氨基酸及其衍生物、6种核苷酸、4种碳水化合物、4种辅因子、3种肉桂酸和1种其他化合物)在不同发育阶段的积累。总之,我们的研究将有助于增进对葡萄浆果对RR胁迫响应的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/86d5/8230651/9d2a0b1aec26/metabolites-11-00377-g001.jpg

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本文引用的文献

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Front Plant Sci. 2017 Sep 5;8:1524. doi: 10.3389/fpls.2017.01524. eCollection 2017.
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Food Res Int. 2017 Aug;98:10-19. doi: 10.1016/j.foodres.2017.01.024. Epub 2017 Jan 30.
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