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营养供应和模拟食草作用对十字花科植物中代谢物库及基于硫代葡萄糖苷的防御系统功效的影响存在差异。

Nutrient Supply and Simulated Herbivory Differentially Alter the Metabolite Pools and the Efficacy of the Glucosinolate-Based Defense System in Brassica Species.

作者信息

Almuziny Makhdora, Decker Charlotte, Wang Dong, Gerard Patrick, Tharayil Nishanth

机构信息

Department of Plant and Environmental Science, Clemson University, 120 BRC, 105 Collins Street, Clemson, SC, 29634, USA.

USDA Agricultural Research Service, Water Management Research Unit, San Joaquin Valley Agricultural Sciences Center, 9611 South Riverbend Avenue, Parlier, CA, 93648, USA.

出版信息

J Chem Ecol. 2017 Feb;43(2):129-142. doi: 10.1007/s10886-016-0811-y. Epub 2017 Jan 3.

Abstract

Environmental stress hinders growth of plants and commonly results in the accumulation of carbon-based defense compounds. However, the dynamics of nitrogen (N)-containing defense compounds are less predictable under environmental stress. The impact of nutrient deficiency on plant defenses that require the metabolic conversion of a less toxic compound to a more potent toxin is even more poorly understood. We evaluated the effects of nitrogen (N) and potassium (K) deficiency and simulated herbivory on the concentration of metabolites including glucosinolates (GSLs), on the conversion of GSLs to more toxic isothiocyanates (ITCs), and on the activity of myrosinase (MYR) in leaves of Brassica juncea and Brassica nigra. Both species contained GSLs, predominantly sinigrin, but also derivatives of glucobrassicin. Compared to the control, N deficiency increased the sinigrin concentration in both species. Methyl jasmonate (MeJA) application increased sinigrin production in B. junceae, whereas in B. nigra MeJA increased sinigrin only under K-deficiency. Compared to the aliphatic-glucosinolates, MeJA application produced a greater compositional change in the profiles of indolic-glucosinolates. In both species the increase in sinigrin content of the tissue was associated with a decrease in its overall nutritive value as assessed by the content of sugars and amino acids. In B. juncea, application of MeJA decreased the conversion of sinigrin to allyl isothiocyanate (AITC) under both N and K deficiency. The potential activity of MYR decreased in both species under N deficiency. The reduced conversion of sinigrin to AITC and the lower activity of MYR suggest that the GSL-ITC defense system might have a limited efficiency in deterring generalist herbivores under environmental stress.

摘要

环境胁迫会阻碍植物生长,并通常导致碳基防御化合物的积累。然而,在环境胁迫下,含氮(N)防御化合物的动态变化较难预测。对于需要将毒性较小的化合物代谢转化为毒性更强的毒素的植物防御机制,养分缺乏对其影响的了解甚至更少。我们评估了氮(N)和钾(K)缺乏以及模拟食草作用对芥菜和黑芥叶片中包括硫代葡萄糖苷(GSLs)在内的代谢物浓度、GSLs向毒性更强的异硫氰酸酯(ITCs)的转化以及黑芥子酶(MYR)活性的影响。这两个物种都含有GSLs,主要是芥子碱,也有葡萄糖芸苔素的衍生物。与对照相比,氮缺乏增加了两个物种中芥子碱的浓度。茉莉酸甲酯(MeJA)处理增加了芥菜中芥子碱的产生,而在黑芥中,MeJA仅在钾缺乏时增加了芥子碱的含量。与脂肪族硫代葡萄糖苷相比,MeJA处理使吲哚族硫代葡萄糖苷的谱图产生了更大的组成变化。在这两个物种中,组织中芥子碱含量的增加与其通过糖和氨基酸含量评估的总体营养价值的降低有关。在芥菜中,在氮和钾缺乏的情况下,MeJA处理都降低了芥子碱向烯丙基异硫氰酸酯(AITC)的转化。在氮缺乏的情况下,两个物种中MYR的潜在活性均降低。芥子碱向AITC转化的减少以及MYR活性的降低表明,在环境胁迫下,GSL-ITC防御系统在阻止多食性食草动物方面的效率可能有限。

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