首页> 外文OA文献 >Nitrogen Source Affects the Composition of Metabolites in Pepper (Capsicum annuum L.) and Regulates the Synthesis of Capsaicinoids through the GOGAT–GS Pathway
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Nitrogen Source Affects the Composition of Metabolites in Pepper (Capsicum annuum L.) and Regulates the Synthesis of Capsaicinoids through the GOGAT–GS Pathway

机译:氮源影响辣椒(辣椒子NANUM L.)中代谢物的组成,并通过Gogat-GS途径调节辣椒素的合成

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摘要

Phytochemical analyses of pepper fruit metabolites have been reported; however, much less is known about the influence of different forms of nitrogen (N), which is critical for plant growth and fruit quality formation. The “Longjiao No. 5” variety (Capsicum annuum L.) grown in Northwestern China was profiled using liquid chromatography−mass spectrometry (LC−MS) coupled with multivariate data analysis to explore the composition of different metabolites in pericarp and placenta, and to investigate the effect of three ammonium (NH4+)-to-nitrate (NO3−) ratios (0:100, 25:75, and 50:50). A total of 215 metabolites were obtained by qualitative analysis, where 31 metabolites were the major differential metabolite components of pepper fruits between placenta and pericarp, and 25 among N treatments. The addition of ammonium up-regulated carbohydrates, such as α-lactose and sucrose, as well as phenylalanine lyase (PAL) of placenta tissue. The supply of 25% NH4+−N and 75% NO3−−N exhibited a relatively higher levels of ascorbic acid in pericarp and amino acids, capsaicin, and dihydrocapsaicin in placenta, and led to higher fruit weight among the ammonium-to-nitrate ratios. The expression and activities of glutamic acid synthetase (GOGAT) and glutamine synthetase (GS) that are involved in ammonium assimilation were affected by adjusting the ammonium−N proportion, and they were significantly positively correlated with capsaicin, dihydrocapsaicin contents, capsaicinoid synthetase (CS), as well as the relative expression levels of genes related to capsaicinoid biosynthesis, such as acyltransferase 3 (AT3) and acyl-ACP thioesterase (FatA).
机译:据报道,辣椒果代谢产物的植物化学分析;然而,关于不同形式的氮气(n)的影响,尚不少,这对于植物生长和果实质量形成至关重要。在中国西北部种植的“龙家子第5号”品种(Capsicum Annuum L)使用液相色谱 - 质谱(LC-MS)与多变量数据分析相结合,以探讨Pericarp和胎盘不同代谢物的组成,以及研究三个铵(NH4 +) - 硝酸盐(NO 3-)比率(0:100,25:75和50:50)的效果。通过定性分析获得了总共215个代谢物,其中31种代谢物是胎盘和果皮之间的辣椒果实的主要差异代谢物组分,25个治疗方法。添加铵上调碳水化合物,例如α-乳糖和蔗糖,以及胎盘组织的苯丙氨酸裂解酶(Pal)。 25%NH4 + -NN和75%NO 3 - N的供应在胎盘和氨基酸,辣椒蛋白和二氢淀粉中的抗坏血酸水平相对较高,并且在硝酸铵比中导致果实重量较高。谷氨酸合成酶(Gogat)和谷氨酰胺合成酶(GS)的表达和活性通过调节铵-N比例而影响,它们与辣椒素,二氢胶囊含量,胶囊素合成酶(CS)显着呈正相关以及与辣椒化合物生物合成相关的基因的相对表达水平,例如酰基转移酶3(AT3)和酰基-ACP硫酸酶(FATA)。

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