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首页> 外文期刊>Plant Molecular Biology Reporter >Differential Gene Expression Analysis of Yunnan Red Pear, Pyrus Pyrifolia, During Fruit Skin Coloration
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Differential Gene Expression Analysis of Yunnan Red Pear, Pyrus Pyrifolia, During Fruit Skin Coloration

机译:云南红梨,梨梨果实皮肤着色过程中的差异基因表达分析

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摘要

The color of fruit skin is an important quality parameter, and in many plants, it is the result of coordinative regulation of the anthocyanin pathway. To characterize the mechanism involved in fruit peel coloration of Yunnan red pear (Pyrus pyrifolia), we constructed a subtractive cDNA library using the suppression subtractive hybridization (SSH) technology. cDNA of red peel exposed to sunlight (for 2, 4, 6, and 8 days) was subtracted from that of white skin unexposed to sunlight. Over 100 differentially expressed ESTs were obtained, putatively involved in primary and secondary metabolism, stress, and defense response. Expression analysis using semiquantitative reverse transcription polymerase chain reaction (RT-PCR) for 13 genes was performed with two pear cultivars, light-skinned ‘Zaobaimi’ and red-skinned ‘Yunhong-1’, which had been bagged and then exposed to sunlight for 0, 1, 2, 3, 5, and 7 days before harvest. This analysis showed that genes encoding for a metallothionein-like protein and a NADP-malic acid enzyme were constitutively expressed, whereas other selected genes were either down- or up-regulated. Semiquantitative RT-PCR analysis for 7 anthocyanin biosynthetic pathway genes and 3 putative regulatory genes was also performed. Results showed that an R2R3 MYB transcription factor PyMYB10 was up-regulated in both the less-colored pear ‘Zaobaimi’ and well-colored red pear Yunhong-1 after the bag was removed, but that kinetics differed between cultivars. Other anthocyanin-related genes appeared to be coordinately regulated by the MYB–bHLH–WD40 complex. DFR and ANS genes seemed to be limiting factors for the peel coloration of less-colored pear ‘Zaobaimi’, while all biosynthetic steps are up-regulated by 7 days after bag removal in red fruit. This study suggests the regulation of red pear coloring is via differential effects of the MYB–bHLH–WD40 complex on the pear anthocyanin pathway genes.
机译:果皮的颜色是重要的质量参数,在许多植物中,它是花色苷途径协调调节的结果。为了表征云南红梨(Pyrus pyrifolia)的果皮着色所涉及的机制,我们使用抑制消减杂交(SSH)技术构建了一个消减cDNA文库。从未暴露于阳光下的白皮肤的cDNA中减去暴露在阳光下(2、4、6和8天)的红皮的cDNA。获得了100多个差异表达的EST,推测它们参与了初级和次级代谢,压力和防御反应。使用两个梨品种,分别装袋装然后暴露在阳光下进行光照处理,使用了两个梨品种,分别是浅皮'Zaobaimi'和红皮'Yunhong-1',使用半定量逆转录聚合酶链反应(RT-PCR)对13个基因进行了表达分析。收获前0、1、2、3、5和7天。该分析表明,组成金属表达编码金属硫蛋白样蛋白和NADP-苹果酸酶的基因,而其他选择的基因则被下调或上调。还对7个花色苷生物合成途径基因和3个假定的调控基因进行了半定量RT-PCR分析。结果表明,在取出袋子后,颜色较浅的梨“ Zaobaimi”和颜色较浅的红梨Yunhong-1中的R2R3 MYB转录因子PyMYB10均被上调,但两个品种之间的动力学差异很大。其他花色苷相关基因似乎受MYB–bHLH–WD40复合物的协调调控。 DFR和ANS基因似乎是颜色较浅的梨“ Zaobaimi”的果皮着色的限制因素,而在摘除红色水果后7天,所有生物合成步骤均被上调。这项研究表明,红梨色素的调节是通过MYB–bHLH–WD40复合物对梨花色苷途径基因的不同作用。

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