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番茄生长和酚类代谢对硝酸盐限制的器官特异性响应。

Organ-specific responses of tomato growth and phenolic metabolism to nitrate limitation.

机构信息

UMR, Université de Lorraine (INPL)-INRA Agronomie et Environnement Nancy-Colmar 1121, ENSAIA, Vandoeuvre, France INRA, UR 1115 Plantes et Systèmes de Culture Horticoles, Avignon, France.

出版信息

Plant Biol (Stuttg). 2012 Sep;14(5):760-9. doi: 10.1111/j.1438-8677.2012.00564.x. Epub 2012 Feb 28.

Abstract

Phenolic compounds are secondary metabolites involved in plant innate chemical defence against pests and diseases. Their concentration varies depending on plant tissue and also on genetic and environmental factors, e.g. availability of nutrient resources. This study examines specific effects of low (LN) and high (HN) nitrogen supply on organ (root, stem and leaf) growth and accumulation of major phenolics [chlorogenic acid (CGA); rutin; kaempferol rutinoside (KR)] in nine hydroponically grown tomato cultivars. LN limited shoot growth but did not affect root growth, and increased concentrations of each individual phenolic in all organs. The strength of the response was organ-dependent, roots being more responsive than leaves and stems. Significant differences were observed between genotypes. Nitrogen limitation did not change the phenolic content in shoots, whereas it stimulated accumulation in roots. The results show that this trade-off between growth and defence in a LN environment can be discussed within the framework of the growth-differentiation balance hypothesis (i.e. GDBH), but highlight the need to integrate all plant organs in future modelling approaches regarding the impact of nitrogen limitation on primary and secondary metabolism.

摘要

酚类化合物是参与植物先天化学防御病虫害的次生代谢物。它们的浓度取决于植物组织,也取决于遗传和环境因素,例如养分资源的可利用性。本研究考察了低(LN)和高(HN)氮供应对 9 种水培番茄品种器官(根、茎和叶)生长和主要酚类物质[绿原酸(CGA);芦丁;山柰酚芸香糖苷(KR)]积累的具体影响。LN 限制了地上部分的生长,但对根的生长没有影响,并且增加了所有器官中每种酚类物质的浓度。这种反应的强度与器官有关,根比叶和茎的反应更强烈。不同基因型之间存在显著差异。氮限制并没有改变地上部分的酚类含量,反而刺激了根的积累。结果表明,在 LN 环境中,生长和防御之间的这种权衡可以在生长-分化平衡假说(即 GDBH)的框架内进行讨论,但强调需要在未来关于氮限制对初生和次生代谢影响的建模方法中整合所有植物器官。

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