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首页> 外文期刊>BMC Plant Biology >Transcriptomic analysis of Citrus clementina mandarin fruits maturation reveals a MADS-box transcription factor that might be involved in the regulation of earliness
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Transcriptomic analysis of Citrus clementina mandarin fruits maturation reveals a MADS-box transcription factor that might be involved in the regulation of earliness

机译:柑橘克莱门德普通话的转录组分析结果成熟揭示了可能涉及eASHORY调节的疯狂箱转录因子

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摘要

Harvest time is a relevant economic trait in citrus, and selection of cultivars with different fruit maturity periods has a remarkable impact in the market share. Generation of early- and late-maturing cultivars is an important target for citrus breeders, therefore, generation of knowledge regarding the genetic mechanisms controlling the ripening process and causing the early and late phenotypes is crucial. In this work we analyze the evolution of the transcriptome during fruit ripening in 3 sport mutations derived from the Fina clementine (Citrus clementina) mandarin: Clemenules (CLE), Arrufatina (ARR) and Hernandina (HER) that differ in their harvesting periods. CLE is considered a mid-season cultivar while ARR and HER are early- and late-ripening mutants, respectively. We used RNA-Seq technology to carry out a time course analysis of the transcriptome of the 3 mutations along the ripening period. The results indicated that in these mutants, earliness and lateness during fruit ripening correlated with the advancement or delay in the expression of a set of genes that may be implicated in the maturation process. A detailed analysis of the transcription factors known to be involved in the regulation of fruit ripening identified a member of the MADS box family whose expression was lower in ARR, the early-ripening mutant, and higher in HER, the late-ripening mutant. The pattern of expression of this gene during the maturation period was basically contrary to those of the ethylene biosynthetic genes, SAM and ACC synthases and ACC oxidase. The gene was present in hemizygous dose in the early-ripening mutant. Our analysis provides new clues about the genetic control of fruit ripening in citrus and allowed the identification of a transcription factor that could be involved in the early phenotype.
机译:收获时间是柑橘中的相关经济特征,各种水果成熟时期的品种选择对市场份额具有显着影响。早期和晚期成熟的品种是柑橘育种者的重要目标,因此,关于控制成熟过程的遗传机制并导致早期和晚期表型的知识产生至关重要。在这项工作中,我们在源自芬兰克伦汀(柑橘素)普通话中的3种体育突变中的果实成熟过程中分析转录组的演变:Clemenules(CLE),Arrufatina(Arr)和Hernandina(她)在其收获时期不同。 CLE被认为是一个中期的品种,而Arr和她分别是早期和晚熟的突变体。我们使用RNA-SEQ技术在成熟时期进行3个突变的转录组的时间过程分析。结果表明,在这些突变体中,在果实成熟期间与果实熟化期间的延迟相关,这些突变与一组基因的表达的进步或延迟相关,这些基因可能涉及在成熟过程中。详细分析了已知参与果实成熟的调节的转录因子的分析鉴定了疯子箱子系列的成员,其表达在Arr,早期成熟的突变体和较高的中,晚熟突变体。在成熟时期在成熟时期的表达模式与乙烯生物合成基因,SAM和ACC合酶和ACC氧化酶的表达模式基本相反。在早期成熟的突变体中,基因以嗜血剂量存在。我们的分析为柑橘中成熟的果实遗传控制提供了新的线索,允许鉴定可参与早期表型的转录因子。

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