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http://krishi.icar.gov.in/jspui/handle/123456789/81736
Title: | Understanding the genetics of important quality traits in maize (Zea mays) using diverse germplasm by generation mean analysis |
Other Titles: | Understanding the genetics of important quality traits in maize (Zea mays) using diverse germplasm by generation mean analysis |
Authors: | Sharma P, Singh N, Kamboj MC and Kumar R |
ICAR Data Use Licennce: | http://krishi.icar.gov.in/PDF/ICAR_Data_Use_Licence.pdf |
Author's Affiliated institute: | Indian Institute of Maize Research |
Published/ Complete Date: | 2023-11-22 |
Project Code: | Not Available |
Keywords: | Additive × additive, dominant, epistasis, gene effects, grain yield, quality protein maize |
Publisher: | Agriculture Association of Textile Chemical and Critical Reviews Journal |
Citation: | Not Available |
Series/Report no.: | Not Available; |
Abstract/Description: | The information about gene actions and interactions would most likely to direct and reinforce the crop breeding programs. With this objective, the present investigation was undertaken by using six generations P , P , F , F , BC , and BC derived from six different 1 2 1 2 1 2 crosses in maize, evaluated at CCS Haryana Agricultural University, Regional Research Station Karnal from Kharif 2015 to 2016. The study underscores the signiicance of additive–dominance model, gene action involved in the inheritance of grain yield and quality traits. Both the scaling test and the joint scaling test detected nonallelic interactions affecting the traits, showing the inadequacy of the additive–dominance model alone in describing the manifestation of complex traits like yield and quality traits except for oil content in cross HKI 325-17AN × HKI 1128. Both additive genetic effects and dominance effects were found signiicant with positive and negative magnitude in all the crosses. On the note, different types of interallelic interactions (i, j, l) contributed to the inheritance of traits in the given crosses. And among them, the dominance × dominance component (l) gene effect also played a major role in the inheritance of the studied traits. Duplicate epistasis was prevalent in all the crosses for grain yield and also for protein, tryptophan, oil, and starch content in some crosses whereas a omplementary type of interaction was reported for protein content in cross HKI 325-17AN x HKI 1128 and oil content in cross HKI 209 x HKI 163. In view of the diverse gene actions, i.e. additive, dominant, and epistasis, playing important roles in the manifestation of complex traits like yield and quality traits, we advocate the implementation of population improvement techniques in particular reciprocal recurrent selection to improve productivity gains in maize in terms of both yield and quality. It is concluded that crosses, where dominant gene action was found predominant, should be effectively utilized in hybrid maize programs for improved grain yield and quality traits. |
Description: | Not Available |
ISSN: | Not Available |
Type(s) of content: | Research Paper |
Sponsors: | Not Available |
Language: | English |
Name of Journal: | Agriculture Association of Textile Chemical and Critical Reviews Journal |
Journal Type: | NAAS Journal |
NAAS Rating: | 6.0 |
Volume No.: | 11 |
Page Number: | 1-7 |
Name of the Division/Regional Station: | Not Available |
Source, DOI or any other URL: | DOI: https://doi.org/10.58321/AATCCReview.2023.11.04.01 |
URI: | http://krishi.icar.gov.in/jspui/handle/123456789/81736 |
Appears in Collections: | CS-IIMR-Publication |
Files in This Item:
File | Description | Size | Format | |
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Understanding-the-genetics-of-important-quality-traits-in-maize-Zea-mays-L.-using-diverse-germplasm-by-generation-mean-analysis.pdf | 5.63 MB | Adobe PDF | View/Open |
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