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首页> 外文期刊>Journal of Experimental Botany >Roles and regulation of cytokinins in tomato fruit development
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Roles and regulation of cytokinins in tomato fruit development

机译:细胞分裂素在番茄果实发育中的作用与调控

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摘要

Cytokinins (CKs) are thought to play important roles in fruit development, especially cell division. However, the mechanisms and regulation of CK activity have not been well investigated. This study analysed CK concentrations and expression of genes involved in CK metabolism in developing tomato (Solanum lycopersicum) ovaries. The concentrations of CK ribosides and isopentenyladenine and the transcript levels of the CK biosynthetic genes SlIPT3, SlIPT4, SlLOG6, and SlLOG8 were high at anthesis and decreased immediately afterward. In contrast, trans-zeatin concentration and the transcript levels of the CK biosynthetic genes SlIPT1, SlIPT2, SlCYP735A1, SlCYP735A2, and SlLOG2 increased after anthesis. The expression of type-A response regulator genes was high in tomato ovaries from pre-anthesis to early post-anthesis stages. These results suggest that the CK signal transduction pathway is active in the cell division phase of fruit development. This study also investigated the effect of CK application on fruit set and development. Application of a synthetic CK, N-(2-chloro-pyridin-4-yl)-N’-phenylurea (CPPU), to unpollinated tomato ovaries induced parthenocarpic fruit development. The CPPU-induced parthenocarpic fruits were smaller than pollinated fruits, because of reduction of pericarp cell size rather than reduced cell number. Thus, CPPU-induced parthenocarpy was attributable to the promotion of cell division, not cell expansion. Overall, the results provide evidence that CKs are involved in cell division during development of tomato fruit.
机译:细胞分裂素(CKs)被认为在果实发育,特别是细胞分裂中起重要作用。但是,CK活性的机制和调控尚未得到很好的研究。这项研究分析了番茄(Solanum lycopersicum)卵巢中的CK浓度和参与CK代谢的基因表达。在开花期,CK核糖和异戊烯腺嘌呤的浓度以及CK生物合成基因SlIPT3,SlIPT4,SlLOG6和SlLOG8的转录水平较高,此后立即降低。相反,花后CK生物合成基因SlIPT1,SlIPT2,SlCYP735A1,SlCYP735A2和SlLOG2的玉米蛋白浓度和转录水平增加。从开花前到开花后的早期阶段,A型应答调节基因在番茄卵巢中的表达较高。这些结果表明,CK信号转导途径在果实发育的细胞分裂阶段中是活跃的。这项研究还调查了CK施用对坐果和发育的影响。合成的CK,N-(2-氯吡啶-4-基)-N’-苯基脲(CPPU)在未授粉的番茄卵巢中诱导单性结实的果实发育。 CPPU诱导的单性结实果实小于授粉果实,因为果皮细胞大小减少而不是细胞数目减少。因此,CPPU诱导的单性结实归因于细胞分裂的促进,而不是细胞的扩张。总体而言,结果提供了证据,表明番茄果实发育过程中CKs参与了细胞分裂。

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