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首页> 外文期刊>Molecules >Proteomic Analysis of the Early Development of the Phalaenopsis amabilis Flower Bud under Low Temperature Induction Using the iTRAQ/MRM Approach
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Proteomic Analysis of the Early Development of the Phalaenopsis amabilis Flower Bud under Low Temperature Induction Using the iTRAQ/MRM Approach

机译:使用iTRAQ / MRM方法在低温诱​​导下蝴蝶兰花芽早期发育的蛋白质组学分析

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Phalaenopsis amabilis, one of the most important plants in the international flower market due to its graceful shape and colorful flowers, is an orchid that undergoes vernalization and requires low-temperature treatment for flowering. There have been few reports on the proteomics of the development of flower buds. In this study, isobaric tags for relative and absolute quantification (iTRAQ) were used to identify 5064 differentially expressed proteins in P. amabilis under low-temperature treatment; of these, 42 were associated with early floral induction, and 18 were verified by mass spectrometry multi-reaction monitoring (MRM). The data are available via ProteomeXchange under identifier PXD013908. Among the proteins associated with the vernalization pathway, PEQU_11434 (glycine-rich RNA-binding protein GRP1A-like) and PEQU_19304 (FT, VRN3 homolog) were verified by MRM, and some other important proteins related to vernalization and photoperiod pathway that were detected by iTRAQ but not successfully verified by MRM, such as PEQU_11045 (UDP-N-acetylglucosamine diphosphorylase), phytochromes A (PEQU_13449, PEQU_35378), B (PEQU_09249), and C (PEQU_41401). Our data revealed a regulation network of the early development of flower buds in P. amabilis under low temperature induction.
机译:蝴蝶兰由于其优美的形状和鲜艳的花朵而成为国际花卉市场上最重要的植物之一,是一种经过春化处理并需要低温处理才能开花的兰花。关于花芽发育的蛋白质组学的报道很少。在这项研究中,使用等压和相对定量标签(iTRAQ)在低温处理下鉴定了美洲假单胞菌中5064个差异表达的蛋白质。其中有42个与早期花诱导有关,有18个已通过质谱多反应监测(MRM)进行了验证。数据可通过ProteomeXchange在标识符PXD013908下获得。在与春化途径相关的蛋白质中,通过MRM验证了PEQU_11434(富含甘氨酸的RNA结合蛋白GRP1A-like)和PEQU_19304(FT,VRN3同源物),以及与春化和光周期途径相关的其他重要蛋白质iTRAQ,但未成功通过MRM验证,例如PEQU_11045(UDP-N-乙酰氨基葡萄糖二磷酸化酶),植物色素A(PEQU_13449,PEQU_35378),B(PEQU_09249)和C(PEQU_41401)。我们的数据揭示了在低温诱导下阿马比利斯花蕾早期发育的调控网络。

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