首页> 外文OA文献 >Suppression of 9-cis-Epoxycarotenoid Dioxygenase, Which Encodes a Key Enzyme in Abscisic Acid Biosynthesis, Alters Fruit Texture in Transgenic Tomato1[W][OA]
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Suppression of 9-cis-Epoxycarotenoid Dioxygenase, Which Encodes a Key Enzyme in Abscisic Acid Biosynthesis, Alters Fruit Texture in Transgenic Tomato1[W][OA]

机译:编码脱落酸生物合成关键酶的9-顺式-环氧类胡萝卜素双加氧酶的抑制改变了转基因番茄的果实质地[W] [OA]

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摘要

Cell wall catabolism during fruit ripening is under complex control and is key for fruit quality and shelf life. To examine the role of abscisic acid (ABA) in tomato (Solanum lycopersicum) fruit ripening, we suppressed SlNCED1, which encodes 9-cis-epoxycarotenoid dioxygenase (NCED), a key enzyme in the biosynthesis of ABA. To suppress SlNCED1 specifically in tomato fruits, and thus avoid the pleiotropic phenotypes associated with ABA deficiency, we used an RNA interference construct driven by the fruit-specific E8 promoter. ABA accumulation and SlNCED1 transcript levels in the transgenic fruit were down-regulated to between 20% and 50% of the levels measured in the control fruit. This significant reduction in NCED activity led to a down-regulation in the transcription of genes encoding major cell wall catabolic enzymes, specifically polygalacturonase (SlPG), pectin methyl esterase (SlPME), β-galactosidase precursor mRNA (SlTBG), xyloglucan endotransglycosylase (SlXET), endo-1,4-β-cellulose (SlCels), and expansin (SlExp). This resulted in an increased accumulation of pectin during ripening. In turn, this led to a significant extension of the shelf life to 15 to 29 d compared with a shelf life of only 7 d for the control fruit and an enhancement of fruit firmness at the mature stage by 30% to 45%. In conclusion, ABA affects cell wall catabolism during tomato fruit ripening via down-regulation of the expression of major catabolic genes (SlPG, SlPME, SlTBG, SlXET, SlCels, and SlExp).
机译:果实成熟期间的细胞壁分解代谢受复杂控制,对于果实品质和保质期至关重要。若要检查脱落酸(ABA)在番茄(Solanum lycopersicum)果实成熟中的作用,我们抑制了SlNCED1,它编码9-顺式-环氧类胡萝卜素双加氧酶(NCED),这是ABA生物合成中的关键酶。为了特异性抑制番茄果实中的SlNCED1,从而避免与ABA缺乏相关的多效性表型,我们使用了由果实特异性E8启动子驱动的RNA干扰构建体。转基因果实中的ABA积累和SlNCED1转录物水平被下调至对照果实中测量的水平的20%至50%之间。 NCED活性的这种显着降低导致编码主要细胞壁分解代谢酶的基因的转录下调,特别是聚半乳糖醛酸酶(SlPG),果胶甲基酯酶(SlPME),β-半乳糖苷酶前体mRNA(SlTBG),木葡聚糖内切糖基化酶(SlXET ),内1,4-β-纤维素(SlCels)和弹性蛋白(SlExp)。这导致成熟期间果胶的积累增加。反过来,与对照组相比,货架期显着延长至15至29天,而对照水果的货架期仅为7天,成熟期的果实硬度提高了30%至45%。总之,ABA通过下调主要分解代谢基因(SlPG,SlPME,SlTBG,SlXET,SlCels和SlExp)的表达来影响番茄果实成熟过程中的细胞壁分解代谢。

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