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茉莉酸处理诱导两种西兰花品种对小菜蛾产生硫代葡萄糖苷防御后的转录组和代谢组分析

Transcriptome and Metabolome Analyses of Glucosinolates in Two Broccoli Cultivars Following Jasmonate Treatment for the Induction of Glucosinolate Defense to Trichoplusia ni (Hübner).

作者信息

Ku Kang-Mo, Becker Talon M, Juvik John A

机构信息

Division of Plant and Soil Sciences, West Virginia University, Morgantown, WV 26505, USA.

Department of Crop Sciences, University of Illinois at Urbana-Champaign, Urbana, IL 61801, USA.

出版信息

Int J Mol Sci. 2016 Jul 15;17(7):1135. doi: 10.3390/ijms17071135.

Abstract

Lepidopteran larvae growth is influenced by host plant glucosinolate (GS) concentrations, which are, in turn, influenced by the phytohormone jasmonate (JA). In order to elucidate insect resistance biomarkers to lepidopteran pests, transcriptome and metabolome analyses following JA treatments were conducted with two broccoli cultivars, Green Magic and VI-158, which have differentially induced indole GSs, neoglucobrassicin and glucobrassicin, respectively. To test these two inducible GSs on growth of cabbage looper (Trichoplusia ni), eight neonate cabbage looper larvae were placed onto each of three plants per JA treatments (0, 100, 200, 400 µM) three days after treatment. After five days of feeding, weight of larvae and their survival rate was found to decrease with increasing JA concentrations in both broccoli cultivars. JA-inducible GSs were measured by high performance liquid chromatography. Neoglucobrassicin in Green Magic and glucobrassicin in VI-158 leaves were increased in a dose-dependent manner. One or both of these glucosinolates and/or their hydrolysis products showed significant inverse correlations with larval weight and survival (five days after treatment) while being positively correlated with the number of days to pupation. This implies that these two JA-inducible glucosinolates can influence the growth and survival of cabbage looper larvae. Transcriptome profiling supported the observed changes in glucosinolate and their hydrolysis product concentrations following JA treatments. Several genes related to GS metabolism differentiate the two broccoli cultivars in their pattern of transcriptional response to JA treatments. Indicative of the corresponding change in indole GS concentrations, transcripts of the transcription factor MYB122, core structure biosynthesis genes (CYP79B2, UGT74B1, SUR1, SOT16, SOT17, and SOT18), an indole glucosinolate side chain modification gene (IGMT1), and several glucosinolate hydrolysis genes (TGG1, TGG2, and ESM1) were significantly increased in Green Magic (statistically significant in most cases at 400 µM) while UGT74B1 and MYB122 were significantly increased in VI-158. Therefore, these metabolite and transcript biomarker results indicate that transcriptome profiling can identify genes associated with the formation of two different indole GS and their hydrolysis products. Therefore, these metabolite and transcript biomarkers could be useful in an effective marker-assisted breeding strategy for resistance to generalist lepidopteran pests in broccoli and potentially other Brassica vegetables.

摘要

鳞翅目幼虫的生长受寄主植物硫代葡萄糖苷(GS)浓度的影响,而硫代葡萄糖苷浓度又受植物激素茉莉酸(JA)的影响。为了阐明对鳞翅目害虫的抗虫生物标志物,对两个西兰花品种“绿魔法”和VI - 158进行了茉莉酸处理后的转录组和代谢组分析,这两个品种分别差异诱导吲哚硫代葡萄糖苷、新葡萄糖芥苷和葡萄糖芥苷的合成。为了测试这两种可诱导的硫代葡萄糖苷对小菜蛾(Trichoplusia ni)生长的影响,在处理三天后,将八只初孵小菜蛾幼虫放置在每种茉莉酸处理(0、100、200、400 μM)的三株植物上。取食五天后,发现两个西兰花品种中,随着茉莉酸浓度的增加,幼虫体重及其存活率均下降。通过高效液相色谱法测定茉莉酸诱导的硫代葡萄糖苷。“绿魔法”中的新葡萄糖芥苷和VI - 158叶片中的葡萄糖芥苷均呈剂量依赖性增加。这些硫代葡萄糖苷中的一种或两种和/或它们的水解产物与幼虫体重和存活率(处理五天后)呈显著负相关,而与化蛹天数呈正相关。这表明这两种茉莉酸诱导的硫代葡萄糖苷可以影响小菜蛾幼虫的生长和存活。转录组分析支持了茉莉酸处理后硫代葡萄糖苷及其水解产物浓度的变化。几个与硫代葡萄糖苷代谢相关的基因在两个西兰花品种对茉莉酸处理的转录反应模式上存在差异。转录因子MYB122、核心结构生物合成基因(CYP79B2、UGT74B1、SUR1、SOT16、SOT17和SOT18)、一个吲哚硫代葡萄糖苷侧链修饰基因(IGMT1)以及几个硫代葡萄糖苷水解基因(TGG1、TGG2和ESM1)的转录本在“绿魔法”中显著增加(在大多数情况下,400 μM时具有统计学意义),而UGT74B1和MYB122在VI - 158中显著增加。因此,这些代谢物和转录生物标志物结果表明,转录组分析可以鉴定与两种不同吲哚硫代葡萄糖苷及其水解产物形成相关的基因。因此,这些代谢物和转录生物标志物可用于西兰花以及潜在的其他十字花科蔬菜对多食性鳞翅目害虫抗性的有效标记辅助育种策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8071/4964508/ba279f6fe7c9/ijms-17-01135-g001.jpg

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