首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >The tomato B-type cyclin gene, SlCycB2, plays key roles in reproductive organ development, trichome initiation, terpenoids biosynthesis and Prodenia litura defense
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The tomato B-type cyclin gene, SlCycB2, plays key roles in reproductive organ development, trichome initiation, terpenoids biosynthesis and Prodenia litura defense

机译:番茄B型细胞周期蛋白基因,Slcycb2,在生殖器官发育中,培养的培养物生物合成,萜类生物合成,萜烯类生物合成和饲料Litura防御中起着关键作用

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摘要

Cyclins exist extensively in various plant species. Among them, B-type cyclins play important roles in the transition of G2-to-M. However, few B-type cyclins have been reported to participate in reproductive organ development and trichome formation. In this study, transgene analysis showed that SlCycB2 overexpression caused abnormal flower with the unclosed stamen, shortened style and aberrant pollen. In addition, nearly all non-glandular trichomes, as well as the glandular ones were disappeared. On the contrary, suppression of SlCycB2 could promote type III and type V trichomes formation. Detection of secondary metabolites indicated that the production of monoterpene and sesquiterpene were significantly decreased in SICycB2-OE plants, which thus resulted in the reduction of the defense against Prodenia litura. Transcriptome profile demonstrated that the differentially expressed genes mainly participate in the biosynthesis of terpenes, cutin, suberine and wax. Furthermore, we identified several homologs of SlCycB2, SlCycB3, NtCycB2, AtCycB2, which have similar regulatory functions in trichome formation. These results indicate that SlCycB2 plays a critical role in reproductive organ development, multicellular trichome initiation, secondary metabolite biosynthesis and Prodenia litura defense in tomato. The similar roles of its homologs in multicellular trichome formation suggest that Solanaceous species may share common regulatory pathway.
机译:细胞周期在各种植物物种中都存在。其中,B型微型蛋白在G2-〜M的转变中起重要作用。然而,据报道,很少有B型细胞周期蛋白参与生殖器官发育和毛状体形成。在这项研究中,转基因分析表明,SLCYCB2过表达与未缩减的雄蕊,缩短的风格和异常花粉引起异常的花朵。此外,几乎所有的非腺体毛状体,以及腺体都消失了。相反,Slcycb2的抑制可以促进III型和型型粒子形成。次级代谢产物的检测表明,在Sicycb2-OE植物中,单萜和筛氏萜烯的产生显着降低,从而导致对Prodenia Litura的防御减少。转录组型谱证明了差异表达的基因主要参与萜烯,Cutin,Suberine和蜡的生物合成。此外,我们确定了Slcycb2,Slcycb3,NTCYCB2,ATCYCB2的几种同源物,其在毛状体形成中具有类似的调节作用。这些结果表明,SLCYCB2在番茄生殖器官发育中发挥着关键作用,多细胞培养体启动,二次代谢产物生物合成和番茄饲料Litura防御。其同源物在多细胞培养体形成中的同等作用表明,溶于溶于溶的索族物种可共同调节途径。

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