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Transcriptome and Biochemical Analyses Revealed a Detailed Proanthocyanidin Biosynthesis Pathway in Brown Cotton Fiber

机译:转录组和生化分析揭示了详细的原花青素生物合成途径在棕色棉纤维中。

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摘要

Brown cotton fiber is the major raw material for colored cotton industry. Previous studies have showed that the brown pigments in cotton fiber belong to proanthocyanidins (PAs). To clarify the details of PA biosynthesis pathway in brown cotton fiber, gene expression profiles in developing brown and white fibers were compared via digital gene expression profiling and qRT-PCR. Compared to white cotton fiber, all steps from phenylalanine to PA monomers (flavan-3-ols) were significantly up-regulated in brown fiber. Liquid chromatography mass spectrometry analyses showed that most of free flavan-3-ols in brown fiber were in 2, 3-trans form (gallocatechin and catechin), and the main units of polymeric PAs were trihydroxylated on B ring. Consistent with monomeric composition, the transcript levels of flavonoid 3′, 5′-hydroxylase and leucoanthocyanidin reductase in cotton fiber were much higher than their competing enzymes acting on the same substrates (dihydroflavonol 4-reductase and anthocyanidin synthase, respectively). Taken together, our data revealed a detailed PA biosynthesis pathway wholly activated in brown cotton fiber, and demonstrated that flavonoid 3′, 5′-hydroxylase and leucoanthocyanidin reductase represented the primary flow of PA biosynthesis in cotton fiber.
机译:棕色棉纤维是有色棉行业的主要原料。先前的研究表明,棉纤维中的棕色颜料属于原花青素(PAs)。为了阐明棕色棉纤维中PA生物合成途径的细节,通过数字基因表达谱分析和qRT-PCR比较了发育中的棕色和白色纤维中的基因表达谱。与白色棉纤维相比,棕色纤维中从苯丙氨酸到PA单体(flavan-3-ols)的所有步骤均显着上调。液相色谱质谱分析表明,棕色纤维中的大多数游离黄烷-3-醇呈2-3反式形式(没食子儿茶素和儿茶素),而聚合PA的主要单元在B环上被三羟基化。与单体组成一致,棉纤维中黄酮类化合物3',5'-羟化酶和隐花青素还原酶的转录水平远高于它们在相同底物上的竞争酶(分别为二氢黄酮醇4-还原酶和花色素苷合酶)。综上所述,我们的数据揭示了一条详细的PA生物合成途径在棕色棉纤维中完全激活,并表明类黄酮3',5'-羟化酶和白花青素还原酶是棉纤维中PA生物合成的主要流程。

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