A promising breeding strategy for tomato resistance to Cucumber Mosaic Virus based on genetic analysis

Infection of CMV can reduce tomato yield. One of the controlling methods to solve the problem by using a resistant variety. However, the existence of resistant variety was still not available yet. Therefore, we needed the breeding program for resistance tomato to CMV to obtain a new variety. Informa...

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Main Authors: Gaswanto Redy, Gunaeni Neni
Format: Article
Language:English
Published: EDP Sciences 2021-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/82/e3sconf_icadai21_01030.pdf
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spelling doaj-c0166611c49d4798a886c09d736d653b2021-10-05T13:13:49ZengEDP SciencesE3S Web of Conferences2267-12422021-01-013060103010.1051/e3sconf/202130601030e3sconf_icadai21_01030A promising breeding strategy for tomato resistance to Cucumber Mosaic Virus based on genetic analysisGaswanto RedyGunaeni NeniInfection of CMV can reduce tomato yield. One of the controlling methods to solve the problem by using a resistant variety. However, the existence of resistant variety was still not available yet. Therefore, we needed the breeding program for resistance tomato to CMV to obtain a new variety. Information of previous genetic analysis results can be used to determine a promising strategy. Two tomato genotypes namely R8 51-12 as resistant and RG-57 as susceptible accession were crossed reciprocally to obtain F1, F1R, BC1.1, BC1.2, F2. Then, all of the breeding materials were inoculated by strain CMV-2 and observed on symptom disease and virus concentration. Genetic analysis results showed that there was no maternal effect and the resistance controlled by two major genes as recessive, but there was the epistatic effect on disease symptom as a selection parameter. Based on these information, the tomato’s breeding strategy were to use a susceptible genotype as female parent, while a resistant genotype as male parent. Phenotypically disease symptom selection can be conducted in the middle or late generation. However, the selection should be supported by serologically using the Elisa test. The breeding program could be addressed as a F1 hybrid variety.https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/82/e3sconf_icadai21_01030.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Gaswanto Redy
Gunaeni Neni
spellingShingle Gaswanto Redy
Gunaeni Neni
A promising breeding strategy for tomato resistance to Cucumber Mosaic Virus based on genetic analysis
E3S Web of Conferences
author_facet Gaswanto Redy
Gunaeni Neni
author_sort Gaswanto Redy
title A promising breeding strategy for tomato resistance to Cucumber Mosaic Virus based on genetic analysis
title_short A promising breeding strategy for tomato resistance to Cucumber Mosaic Virus based on genetic analysis
title_full A promising breeding strategy for tomato resistance to Cucumber Mosaic Virus based on genetic analysis
title_fullStr A promising breeding strategy for tomato resistance to Cucumber Mosaic Virus based on genetic analysis
title_full_unstemmed A promising breeding strategy for tomato resistance to Cucumber Mosaic Virus based on genetic analysis
title_sort promising breeding strategy for tomato resistance to cucumber mosaic virus based on genetic analysis
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2021-01-01
description Infection of CMV can reduce tomato yield. One of the controlling methods to solve the problem by using a resistant variety. However, the existence of resistant variety was still not available yet. Therefore, we needed the breeding program for resistance tomato to CMV to obtain a new variety. Information of previous genetic analysis results can be used to determine a promising strategy. Two tomato genotypes namely R8 51-12 as resistant and RG-57 as susceptible accession were crossed reciprocally to obtain F1, F1R, BC1.1, BC1.2, F2. Then, all of the breeding materials were inoculated by strain CMV-2 and observed on symptom disease and virus concentration. Genetic analysis results showed that there was no maternal effect and the resistance controlled by two major genes as recessive, but there was the epistatic effect on disease symptom as a selection parameter. Based on these information, the tomato’s breeding strategy were to use a susceptible genotype as female parent, while a resistant genotype as male parent. Phenotypically disease symptom selection can be conducted in the middle or late generation. However, the selection should be supported by serologically using the Elisa test. The breeding program could be addressed as a F1 hybrid variety.
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/82/e3sconf_icadai21_01030.pdf
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