Alves Frederico Rocha Rodrigues, Lira Bruno Silvestre, Pikart Filipe Christian, Monteiro Scarlet Santos, Furlan Cláudia Maria, Purgatto Eduardo, Pascoal Grazieli Benedetti, Andrade Sónia Cristina da Silva, Demarco Diego, Rossi Magdalena, Freschi Luciano
Departamento de Botânica, Universidade de São Paulo, São Paulo, SP, Brazil.
Departamento de Botânica, Universidade Federal de Goiás, Goiás, GO, Brazil.
Plant Biotechnol J. 2020 Oct;18(10):2027-2041. doi: 10.1111/pbi.13362. Epub 2020 Apr 1.
Photoreceptor engineering has recently emerged as a means for improving agronomically beneficial traits in crop species. Despite the central role played by the red/far-red photoreceptor phytochromes (PHYs) in controlling fruit physiology, the applicability of PHY engineering for increasing fleshy fruit nutritional content remains poorly exploited. In this study, we demonstrated that the fruit-specific overexpression of a constitutively active GAF domain Tyr -to-His PHYB2 mutant version (PHYB2 ) significantly enhances the accumulation of multiple health-promoting antioxidants in tomato fruits, without negative collateral consequences on vegetative development. Compared with the native PHYB2 overexpression, PHYB2 -overexpressing lines exhibited more extensive increments in transcript abundance of genes associated with fruit plastid development, chlorophyll biosynthesis and metabolic pathways responsible for the accumulation of antioxidant compounds. Accordingly, PHYB2 -overexpressing fruits developed more chloroplasts containing voluminous grana at the green stage and overaccumulated carotenoids, tocopherols, flavonoids and ascorbate in ripe fruits compared with both wild-type and PHYB2-overexpressing lines. The impacts of PHYB2 or PHYB2 overexpression on fruit primary metabolism were limited to a slight promotion in lipid biosynthesis and reduction in sugar accumulation. Altogether, these findings indicate that mutation-based adjustments in PHY properties represent a valuable photobiotechnological tool for tomato biofortification, highlighting the potential of photoreceptor engineering for improving quality traits in fleshy fruits.
光感受器工程最近已成为改善作物品种农艺有益性状的一种手段。尽管红/远红光感受器光敏色素(PHYs)在控制果实生理方面发挥着核心作用,但PHY工程在增加肉质果实营养成分方面的适用性仍未得到充分利用。在本研究中,我们证明了组成型活性GAF结构域酪氨酸到组氨酸的PHYB2突变体版本(PHYB2 )在果实中的特异性过表达显著增强了番茄果实中多种促进健康的抗氧化剂的积累,而对营养生长没有负面附带影响。与天然PHYB2过表达相比,过表达PHYB2的株系在与果实质体发育、叶绿素生物合成以及负责抗氧化化合物积累的代谢途径相关的基因转录丰度上表现出更广泛的增加。因此,与野生型和过表达PHYB2的株系相比,过表达PHYB2的果实在绿色阶段发育出更多含有大量基粒的叶绿体,并且在成熟果实中类胡萝卜素、生育酚、黄酮类化合物和抗坏血酸过度积累。PHYB2或PHYB2过表达对果实初级代谢的影响仅限于对脂质生物合成的轻微促进和糖积累的减少。总之,这些发现表明基于突变对PHY特性进行调整是番茄生物强化的一种有价值的光生物技术工具,突出了光感受器工程在改善肉质果实品质性状方面的潜力。