Methyl jasmonate deficiency alters cellular metabolome, including the aminome of tomato (Solanum lycopersicum L.) fruit

被引:0
|
作者
Kurt D. Kausch
Anatoly P. Sobolev
Ravinder K. Goyal
Tahira Fatima
Rekha Laila-Beevi
Robert A. Saftner
Avtar K. Handa
Autar K. Mattoo
机构
[1] Purdue University,Department of Horticulture and Landscape Architecture
[2] Istituto di Metodologie Chimiche,Sustainable Agricultural Systems Laboratory, The Henry A. Wallace Beltsville Agricultural Research Center
[3] Laboratorio di Risonanza Magnetica “Annalaura Segre”,Department of Professional Development
[4] U.S. Department of Agriculture,Department of Biology
[5] Agriculture Research Service,undefined
[6] Advocate Illinois Masonic Medical Center,undefined
[7] Agriculture and Agri-Food Canada-Lethbridge Research Centre,undefined
[8] The University of Western Ontario,undefined
[9] Institute of Landscape Matter Dynamics,undefined
[10] Leibniz-Centre for Agricultural Landscape Research (ZALF),undefined
来源
Amino Acids | 2012年 / 42卷
关键词
Aminome; Fruit metabolism; Lipoxygenase; Oxylipins; Tomato; Transgenics;
D O I
暂无
中图分类号
学科分类号
摘要
Exogenous treatment with jasmonates (JA) has been shown to reduce the levels of polyamines in many plants. But the role of endogenous JA on polyamine biosynthesis or other cellular metabolites has thus far remained uninvestigated. We developed transgenic tomato (Solanum lycopersicum L.) having severely reduced methyl JA levels by silencing a fruit ripening-associated lipoxygenase (LOX), SlLoxB, using a truncated LOX gene under the control of the constitutive CaMV35S promoter. The LOX suppressed and MeJA-deficient fruits had lowered polyamine levels. Thus, these transgenic fruits were used as a plant model to evaluate the effects of reduced endogenous MeJA on cellular metabolites in ripening tomato fruits using NMR spectroscopy. During on-shelf ripening, transgenic fruits were significantly reduced in the content of 19 out of 30 metabolites examined, including Ile, Val, Ala, Thr, Asn Tyr, Glu, Gln, His, Phe, Trp, GABA, citrate, succinate, myo-inositol, unidentified compound B, nucleic acid compound Nucl1, choline, and trigonelline as compared to the wild-type azygous counterparts. A significant increase in β-glucose levels in transgenic fruits was observed at the pink stage. The transgenic fruits were equivalent to the wild type in lycopene level and chlorophyll degradation rates. Taken together, these results show that intracellular MeJA significantly regulates overall primary metabolism, especially aminome (amino acids and polyamines) of ripening fruits.
引用
收藏
页码:843 / 856
页数:13
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