Literature DB >> 32382812

Genetic engineering of eggplant accumulating β-carotene in fruit.

Kei-Ichiro Mishiba1, Kae Nishida1, Naoto Inoue1, Tomoya Fujiwara1, Shunji Teranishi1, Yuji Iwata1, Satomi Takeda2, Nozomu Koizumi3.   

Abstract

KEY MESSAGE: Genetic engineering of eggplant using fruit-specific EEF48 promoter-driven bacterial PSY gene, crtB, confers β-carotene accumulation in fruit. Eggplant (Solanum melongena L.) is globally cultivated especially in Asia and is an important source of nutrients in the diets of low-income consumers in developing countries. Since fruits of eggplant have low provitamin A carotenoid content, it is expected to develop eggplant with high carotenoid content for combatting vitamin A deficiency. To achieve this, the present study implemented a metabolic engineering strategy to modify the carotenoid biosynthetic pathway in eggplant. Expression analysis of carotenogenic genes in eggplant tissues showed that the expression of the endogenous phytoene synthase (PSY) was low in fruit and callus. Orange-colored calluses were generated from ectopic expression of crtB gene, which encodes bacterial PSY, in eggplant cells. The orange calluses accumulated > 20 μg g-1 FW of β-carotene, which was approximately 150-fold higher than that of the untransformed calluses. These observations suggest that the PSY expression is the rate-limiting step for β-carotene production in callus and fruit. Since the orange calluses did not regenerate plants, we chose eggplant EEF48 gene, which is presumably expressed in fruit. We amplified its promoter region by TAIL-PCR and showed that the EEF48 promoter is indeed active in eggplant fruit. Subsequently, transgenic eggplant lines having EEF48 promoter-driven crtB were produced. Among the transgenic lines produced, one line set fruit containing 1.50 μg g-1 FW of β-carotene, which was 30-fold higher than that of the untransformed fruits (0.05 μg g-1 FW). The self-pollinated progenies showed a 3:1 segregation ratio for the presence and absence of the transgene, which was linked to the β-carotene accumulation in fruit. These results provide a strategy for improvement of carotenoid content in eggplant fruit.

Entities:  

Keywords:  Agrobacterium; Carotenoid; Eggplant; Genetic engineering

Mesh:

Substances:

Year:  2020        PMID: 32382812     DOI: 10.1007/s00299-020-02546-8

Source DB:  PubMed          Journal:  Plant Cell Rep        ISSN: 0721-7714            Impact factor:   4.570


  4 in total

Review 1.  Phytoene Synthase: The Key Rate-Limiting Enzyme of Carotenoid Biosynthesis in Plants.

Authors:  Xuesong Zhou; Sombir Rao; Emalee Wrightstone; Tianhu Sun; Andy Cheuk Woon Lui; Ralf Welsch; Li Li
Journal:  Front Plant Sci       Date:  2022-04-12       Impact factor: 6.627

Review 2.  Does Plant Breeding for Antioxidant-Rich Foods Have an Impact on Human Health?

Authors:  Laura Bassolino; Katia Petroni; Angela Polito; Alessandra Marinelli; Elena Azzini; Marika Ferrari; Donatella B M Ficco; Elisabetta Mazzucotelli; Alessandro Tondelli; Agostino Fricano; Roberta Paris; Inmaculada García-Robles; Carolina Rausell; María Dolores Real; Carlo Massimo Pozzi; Giuseppe Mandolino; Ephrem Habyarimana; Luigi Cattivelli
Journal:  Antioxidants (Basel)       Date:  2022-04-18

3.  Genome-Wide Identification and Functional Characterization of Auxin Response Factor (ARF) Genes in Eggplant.

Authors:  Jing Chen; Shijie Wang; Fengling Wu; Min Wei; Jing Li; Fengjuan Yang
Journal:  Int J Mol Sci       Date:  2022-06-01       Impact factor: 6.208

4.  Smart Glass Film Reduced Ascorbic Acid in Red and Orange Capsicum Fruit Cultivars without Impacting Shelf Life.

Authors:  Xin He; Sachin G Chavan; Ziad Hamoui; Chelsea Maier; Oula Ghannoum; Zhong-Hua Chen; David T Tissue; Christopher I Cazzonelli
Journal:  Plants (Basel)       Date:  2022-04-04
  4 in total

北京卡尤迪生物科技股份有限公司 © 2022-2023.