Introgression of a dominant phototropin1 mutant enhances carotenoids and boosts flavour‐related volatiles in genome‐edited tomato RIN mutants

Author:

Nizampatnam Narasimha Rao1ORCID,Sharma Kapil1ORCID,Gupta Prateek12ORCID,Pamei Injangbuanang1ORCID,Sarma Supriya1ORCID,Sreelakshmi Yellamaraju1ORCID,Sharma Rameshwar1ORCID

Affiliation:

1. Repository of Tomato Genomics Resources, Department of Plant Sciences University of Hyderabad Hyderabad 500046 India

2. Department of Biological Sciences SRM University‐AP Neerukonda Andhra Pradesh 522240 India

Abstract

Summary The tomato (Solanum lycopersicum) ripening inhibitor (rin) mutation is known to completely repress fruit ripening. The heterozygous (RIN/rin) fruits have extended shelf life, ripen normally, but have inferior taste/flavour. To address this, we used genome editing to generate newer alleles of RIN (rinCR) by targeting the K‐domain. Unlike previously reported CRISPR alleles, the rinCR alleles displayed delayed onset of ripening, suggesting that the mutated K‐domain represses the onset of ripening. The rinCR fruits had extended shelf life and accumulated carotenoids at an intermediate level between rin and progenitor line. Besides, the metabolites and hormonal levels in rinCR fruits were more akin to rin. To overcome the negative attributes of rin, we crossed the rinCR alleles with Nps1, a dominant‐negative phototropin1 mutant, which enhances carotenoid levels in tomato fruits. The resulting Nps1/rinCR hybrids had extended shelf life and 4.4–7.1‐fold higher carotenoid levels than the wild‐type parent. The metabolome of Nps1/rinCR fruits revealed higher sucrose, malate, and volatiles associated with tomato taste and flavour. Notably, the boosted volatiles in Nps1/rinCR were only observed in fruits bearing the homozygous Nps1 mutation. The Nps1 introgression into tomato provides a promising strategy for developing cultivars with extended shelf life, improved taste, and flavour.

Funder

Department of Biotechnology, Government of West Bengal

Publisher

Wiley

Subject

Plant Science,Physiology

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