Hybrid Vigor and Heritability Estimates in Tomato Crosses Involving Solanum lycopersicum × S. pimpinellifolium under Cool Tropical Monsoon Climate

Author:

Ene Chikezie Onuora12ORCID,Abtew Wosene Gebreselassie1ORCID,Oselebe Happiness Ogba3ORCID,Ozi Friday Ugadu3ORCID,Ogah Onwuchekwa4ORCID,Okechukwu Emeka Chibuzor56ORCID,Chukwudi Uchechukwu Paschal6ORCID

Affiliation:

1. Department of Horticulture and Plant Sciences, Jimma University, Jimma, Ethiopia

2. Department of Agriculture, Alex Ekwueme Federal University Ndufu-Alike, Abakaliki, Nigeria

3. Department of Crop Production and Landscape Management, Ebonyi State University, Abakaliki, Nigeria

4. Department of Applied Biology, Ebonyi State University, Abakaliki, Nigeria

5. University of Worcester, School of Science and the Environment, Henwick Grove, Worcester WR26AJ, UK

6. Department of Crop Science, University of Nigeria, Nsukka, Enugu State, Nigeria

Abstract

High humidity is a major constraint to increased tomato fruit production in a cool tropical monsoon climate. However, the genetic variation observed in Solanum pimpinellifolium makes it a good gene donor for breeding tomato cultivars capable of thriving under high humidity. The objective of this study was to estimate heterosis, heritability for higher yield, and to assess the adaptability of the genotypes to humid conditions. Genotypes were raised from five morphologically divergent parents, viz., wild parent (W)–“LA2093,” “CLN2498D” (D), “CLN2417H” (H), “Tima” (T), and “UC Dan INDIA” (U). The F1s were generated by biparental mating design using “LA2093” as a common pollen donor that was selfed to produce F2s and backcrossed to both parents to obtain BC1s and BC2s. The trial was laid out in a randomized complete block design with three replicates. Data were collected on selected yield-influencing traits and analyzed. “D × W” and “U × W” hybrids showed significant positive better parent heterosis for fruit weight per plant (30.4% and 35.5%) and total fruit yield (48.6% and 26.9%), respectively. The additive variance was higher than dominance variance for all the traits, including total fruit yield in all hybrids viz., “H × W,” “D × W,” “T × W,” and “U × W.” High narrow sense heritability estimate of ≥60% was observed in “D × W” and “U × W” hybrids for the majority of the floral and fruit traits including total fruit yield. This makes the improvement of “D × W” and “U × W” hybrids by direct selection advantageous. Hence, the adoption of selection for the affected traits in subsequent tomato breeding programs would enhance fruit yield and adaptability to humid environments.

Funder

European Commission

Publisher

Hindawi Limited

Subject

Agronomy and Crop Science

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