Distefano Gaetano, Las Casas Giuseppina, Caruso Marco, Todaro Aldo, Rapisarda Paolo, La Malfa Stefano, Gentile Alessandra, Tribulato Eugenio
Dipartimento di OrtoFloroArboricoltura e Tecnologie Agroalimentari, University of Catania, 95123 Catania, Italy.
J Agric Food Chem. 2009 Sep 9;57(17):7974-82. doi: 10.1021/jf900710v.
Peel color is one of the main features affecting citrus quality. Clementine is a widespread citrus species with several mutants showing a delay in pigmentation and harvesting. This work characterizes the fruit development and ripening of two clementine clones, 'Comune', a widespread variety, and one of its natural mutations, 'Tardivo', which differ by a delayed color-break and extended harvest period. Morphological, chemical, and molecular analyses were carried out on fruits of both genotypes during the whole maturation process. Analysis showed that mutation did not affect ripening characteristics such as juice acidity and TSS. However, biochemical and molecular analysis revealed marked differences in the flavedo regarding carotenogenesis and chlorophyllase gene expression. Carotenoid showed quantitative differences at biochemical and molecular levels. Results demonstrated that the mutation in 'Tardivo' influenced the transcriptional activation of PSY, a key step in carotenoid biosynthesis. The differential PSY expression led to a significant quantitative difference in phytoene accumulation between the two genotypes. Also, 'Tardivo' showed delayed accumulation of carotenes, lutein, and beta,beta-xanthophylls. The differential expression of genes involved in ethylene biosynthesis and perception suggested differing responses to ethylene signaling between the two genotypes. Moreover, exogenous application of ethylene revealed a different sensitivity of the two varieties to this hormone. The analysis added new information to better understand the complex process of ripening in citrus.
果皮颜色是影响柑橘品质的主要特征之一。克莱门氏小柑橘是一种广泛种植的柑橘品种,有几个突变体表现出色素沉着和收获延迟。这项工作对两个克莱门氏小柑橘克隆品种的果实发育和成熟过程进行了表征,一个是广泛种植的“Comune”品种,另一个是它的自然突变体“Tardivo”,它们的区别在于颜色转变延迟和收获期延长。在整个成熟过程中,对这两个基因型的果实进行了形态学、化学和分子分析。分析表明,突变并不影响果汁酸度和可溶性固形物等成熟特征。然而,生化和分子分析显示,在类胡萝卜素生成和叶绿素酶基因表达方面,外果皮存在显著差异。类胡萝卜素在生化和分子水平上表现出数量差异。结果表明,“Tardivo”中的突变影响了类胡萝卜素生物合成关键步骤中八氢番茄红素合成酶(PSY)的转录激活。PSY的差异表达导致两个基因型之间的八氢番茄红素积累存在显著的数量差异。此外,“Tardivo”还表现出胡萝卜素、叶黄素和β,β-叶黄素的积累延迟。参与乙烯生物合成和感知的基因的差异表达表明,这两个基因型对乙烯信号的反应不同。此外,外源施加乙烯揭示了这两个品种对这种激素的不同敏感性。该分析为更好地理解柑橘成熟的复杂过程增添了新信息。