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油菜基因型的代谢组学分化:迈向对油菜化感物质的理解

Metabolomics differentiation of canola genotypes: toward an understanding of canola allelochemicals.

作者信息

Asaduzzaman M, Pratley James E, An Min, Luckett David J, Lemerle Deirdre

机构信息

School of Agricultural and Wine Sciences, Faculty of Science, Charles Sturt University Wagga Wagga, NSW, Australia ; Graham Centre for Agricultural Innovation, Charles Sturt University Wagga Wagga, NSW, Australia.

Graham Centre for Agricultural Innovation, Charles Sturt University Wagga Wagga, NSW, Australia ; Faculty of Science, Charles Sturt University Wagga Wagga, NSW, Australia.

出版信息

Front Plant Sci. 2015 Jan 9;5:765. doi: 10.3389/fpls.2014.00765. eCollection 2014.

Abstract

Allelopathy is one crop attribute that could be incorporated in an integrated weed management system as a supplement to synthetic herbicides. However, the underlying principles of crop allelopathy and secondary metabolite production are still poorly understood including in canola. In this study, an allelopathic bioassay and a metabolomic analysis were conducted to compare three non-allelopathic and three allelopathic canola genotypes. Results from the laboratory bioassay showed that there were significant differences among canola genotypes in their ability to inhibit root and shoot growth of the receiver annual ryegrass; impacts ranged from 14% (cv. Atr-409) to 76% (cv. Pak85388-502) and 0% (cv. Atr-409) to 45% (cv. Pak85388-502) inhibition respectively. The root length of canola also differed significantly between genotypes, there being a non-significant negative interaction (r = -0.71; y = 0.303x + 21.33) between the root length of donor canola and of receiver annual ryegrass. Variation in chemical composition was detected between organs (root extracts, shoot extracts) and root exudates and also between canola genotypes. Root extracts contained more secondary metabolites than shoot extracts while fewer compounds were recorded in the root exudates. Individual compound assessments identified a total of 14 secondary metabolites which were identified from the six tested genotypes. However, only Pak85388-502 and Av-opal exuded sinapyl alcohol, p-hydroxybenzoic acid and 3,5,6,7,8-pentahydroxy flavones in agar growth medium, suggesting that the synergistic effect of these compounds playing a role for canola allelopathy against annual ryegrass in vitro.

摘要

化感作用是一种作物特性,可纳入综合杂草管理系统,作为合成除草剂的补充。然而,包括油菜在内,作物化感作用和次生代谢产物产生的潜在原理仍知之甚少。在本研究中,进行了化感生物测定和代谢组学分析,以比较三种非化感油菜基因型和三种化感油菜基因型。实验室生物测定结果表明,油菜基因型在抑制受体一年生黑麦草根系和地上部生长的能力上存在显著差异;抑制程度分别为14%(品种Atr-409)至76%(品种Pak85388-502)和0%(品种Atr-409)至45%(品种Pak85388-502)。油菜基因型之间的根长也存在显著差异,供体油菜根长与受体一年生黑麦草根长之间存在不显著的负相关(r = -0.71;y = 0.303x + 21.33)。在器官(根提取物、地上部提取物)和根分泌物之间以及油菜基因型之间检测到化学成分的差异。根提取物比地上部提取物含有更多的次生代谢产物,而根分泌物中记录的化合物较少。对单个化合物的评估共鉴定出14种次生代谢产物,这些产物来自六个测试基因型。然而,只有品种Pak85388-502和品种Av-opal在琼脂生长培养基中分泌芥子醇、对羟基苯甲酸和3,5,6,7,8-五羟基黄酮,表明这些化合物的协同作用在体外对油菜对一年生黑麦草的化感作用中发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4f66/4288380/70082cf31a78/fpls-05-00765-g001.jpg

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