Genetic study for yield and yield components in crosses between trypsin inhibitor free and expressing soybean [Glycine max (L.) Merrill.] genotypes

In the present investigation, gene action was investigated for six yield contributing traits in Soybean. Six crosses were made between three Kunitz trypsin inhibitor expressing and two Kunitz trypsin inhibitor-free soybean parents during summer 2017. Dominant gene action was found predominant in the...

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Main Author: S. T. Pawale, T. J. Bhor, G. C. Shinde, M. P. Deshmukh, C. A. Nimbalkar, V. P. Chimote
Format: Article
Language:English
Published: Indian Society of Plant Breeders 2020-03-01
Series:Electronic Journal of Plant Breeding
Subjects:
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spelling doaj-0da9168f90cc40aa94ec2e29273ec1a12021-01-06T07:00:14ZengIndian Society of Plant BreedersElectronic Journal of Plant Breeding0975-928X2020-03-01111252910.37992/2020.1101.005Genetic study for yield and yield components in crosses between trypsin inhibitor free and expressing soybean [Glycine max (L.) Merrill.] genotypesS. T. Pawale, T. J. Bhor, G. C. Shinde, M. P. Deshmukh, C. A. Nimbalkar, V. P. ChimoteIn the present investigation, gene action was investigated for six yield contributing traits in Soybean. Six crosses were made between three Kunitz trypsin inhibitor expressing and two Kunitz trypsin inhibitor-free soybean parents during summer 2017. Dominant gene action was found predominant in the inheritance of yield and yield contributing characters like yield per plant and 100 seed weight in cross P. Sangam × NRC 101 and P. Sangam × NRC 102. Both additive and dominance gene effects were significantly involved in the expression of yield per plant in crosses P. Kimya × NRC 101 and P. Kimya × NRC 102 with duplicate epitasis. Biparental mating design is suggested to improve these characters. Complementary epistasis was observed in cross P. Agrani × NRC 101 for days to 50% flowering, plant height and yield per plant and in cross P. Kimya × NRC 101 for plant height, 100 seed weight and pods per plant thereby suggesting that, the selection can be practiced in F3 generation onwards for the improvement of these characters. Trypsin inhibitor-free genotype showed additive gene action. trypsin inhibitor-freesoybean gene actionselection. dominanceepistasisadditive gene effects
collection DOAJ
language English
format Article
sources DOAJ
author S. T. Pawale, T. J. Bhor, G. C. Shinde, M. P. Deshmukh, C. A. Nimbalkar, V. P. Chimote
spellingShingle S. T. Pawale, T. J. Bhor, G. C. Shinde, M. P. Deshmukh, C. A. Nimbalkar, V. P. Chimote
Genetic study for yield and yield components in crosses between trypsin inhibitor free and expressing soybean [Glycine max (L.) Merrill.] genotypes
Electronic Journal of Plant Breeding
trypsin inhibitor-free
soybean gene action
selection. dominance
epistasis
additive gene effects
author_facet S. T. Pawale, T. J. Bhor, G. C. Shinde, M. P. Deshmukh, C. A. Nimbalkar, V. P. Chimote
author_sort S. T. Pawale, T. J. Bhor, G. C. Shinde, M. P. Deshmukh, C. A. Nimbalkar, V. P. Chimote
title Genetic study for yield and yield components in crosses between trypsin inhibitor free and expressing soybean [Glycine max (L.) Merrill.] genotypes
title_short Genetic study for yield and yield components in crosses between trypsin inhibitor free and expressing soybean [Glycine max (L.) Merrill.] genotypes
title_full Genetic study for yield and yield components in crosses between trypsin inhibitor free and expressing soybean [Glycine max (L.) Merrill.] genotypes
title_fullStr Genetic study for yield and yield components in crosses between trypsin inhibitor free and expressing soybean [Glycine max (L.) Merrill.] genotypes
title_full_unstemmed Genetic study for yield and yield components in crosses between trypsin inhibitor free and expressing soybean [Glycine max (L.) Merrill.] genotypes
title_sort genetic study for yield and yield components in crosses between trypsin inhibitor free and expressing soybean [glycine max (l.) merrill.] genotypes
publisher Indian Society of Plant Breeders
series Electronic Journal of Plant Breeding
issn 0975-928X
publishDate 2020-03-01
description In the present investigation, gene action was investigated for six yield contributing traits in Soybean. Six crosses were made between three Kunitz trypsin inhibitor expressing and two Kunitz trypsin inhibitor-free soybean parents during summer 2017. Dominant gene action was found predominant in the inheritance of yield and yield contributing characters like yield per plant and 100 seed weight in cross P. Sangam × NRC 101 and P. Sangam × NRC 102. Both additive and dominance gene effects were significantly involved in the expression of yield per plant in crosses P. Kimya × NRC 101 and P. Kimya × NRC 102 with duplicate epitasis. Biparental mating design is suggested to improve these characters. Complementary epistasis was observed in cross P. Agrani × NRC 101 for days to 50% flowering, plant height and yield per plant and in cross P. Kimya × NRC 101 for plant height, 100 seed weight and pods per plant thereby suggesting that, the selection can be practiced in F3 generation onwards for the improvement of these characters. Trypsin inhibitor-free genotype showed additive gene action.
topic trypsin inhibitor-free
soybean gene action
selection. dominance
epistasis
additive gene effects
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