外源色氨酸对油菜幼苗色氨酸下游代谢网络及生长发育的影响
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黑龙江省自然科学基金(C2017031)


Effect of Exogenous Tryptophan on the Downstream Metabolic Network of Tryptophan and Growth in Rapa Seedlings
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    摘要:

    色氨酸是合成蛋白质的重要氨基酸,也是植物生长激素IAA和某些次生代谢产物的前体物质,对植物生长发育及病虫害防御有重要作用。为了探究色氨酸对白菜型油菜(Brassica rapa L)生长发育及防御物质累积的影响及其可能的机制,该研究采用外源色氨酸对油菜幼苗进行叶面喷施,分析了色氨酸对油菜幼苗生长发育及生长素IAA和次生代谢产物芥子油苷合成的影响。结果表明:(1)低浓度色氨酸(100 mg/L)处理可有效地促进油菜叶片与根系的发育,但随着浓度增高,促进作用逐渐减弱。(2)荧光定量PCR分析表明,外源色氨酸处理后,油菜幼苗叶片中生长素IAA的3条合成途径都被激活,IPA途径的BrTAA1和BrYUCCA8、IAM途径的BrAMI1及IAOx途径的BrCYP71A13和BrNIT2等关键酶基因的表达均受到强烈的诱导,因而导致IAA的含量显著提高。(3)外源色氨酸处理还激活了下游的吲哚族芥子油苷的合成途径调控因子基因BrMYB34、BrMYB51和BrMYB122以及合成酶基因BrCYP79B2、BrCYP79B3、BrCYP83B1、BrSUR1的表达,同时抑制了其降解酶基因BrTGG1、BrPEN2的表达,从而引起吲哚族芥子油苷的累积。研究发现,外源色氨酸处理可通过调控生长素IAA合成途径和吲哚族芥子油苷的合成途径相关基因表达,有效地促进油菜生长调节物质和生物防御物质的累积,从而增加生物量和提高潜在抗病能力。

    Abstract:

    Tryptophan is an important amino acid for protein synthesis. It is also the precursor of plant growth hormone IAA and some secondary metabolites, and plays an important role in plant growth and development as well as insect and disease prevention. In order to explore the effect of tryptophan on the growth and development and defense substance accumulation of Chinese cabbage type rapa (Brassica rapa L) and its possible mechanism. In this study, exogenous tryptophan was used to spray the leaves of rapa seedlings, and the effects of tryptophan on the growth and development of rapa seedlings and the synthesis of auxin IAA and secondary metabolites, glucosinolates, were analyzed. The results showed that: (1) the treatment with low concentration of tryptophan (100 mg/L) could effectively promote the development of leaves and roots of rapa, but with the increase of concentration, the promotion effect was gradually weakened. (2) Fluorescence quantitative PCR analysis showed that, after exogenous tryptophan treatment, the three synthesis pathways of auxin IAA in rape seedling leaves were activated, the key enzyme genes BrTAA1 and BrYUCCA8 in the IPA pathway, BrAMI1 in IAM pathway and BrCYP71A13 and BrNIT2 in IAOx pathway, were strongly induced and upregulated. Thus, the content of IAA was significantly increased. (3) Exogenous tryptophan treatment also activated the expression of the downstream such as BrTGG1 and BrPEN2. The altered expression of these genes resulted in the accumulation of indole glucosinolates. The study found, the exogenous tryptophan treatment can effectively promote the accumulation of growthregulating substances and biodefense substances in rapa by regulating the synthesis pathway of IAA and the expression of genes related to the synthesis pathway of indole glucosinolates, thus increasing biomass and improving potential disease resistance.

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蒋 佳,朱星宇,李 晶.外源色氨酸对油菜幼苗色氨酸下游代谢网络及生长发育的影响[J].西北植物学报,2020,40(9):1549-1557

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  • 在线发布日期: 2020-10-10
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