Japanese bunching onion line with a high resistance to the stone leek leafminer, Liriomyza chinensis from the ‘Beicong’ population: evaluating the inheritance of resistance

The Japanese bunching onion, Allium fistulosum L., is an important vegetable in East Asia. However, the stone leek leafminer, Liriomyza chinensis (Kato), is a serious insect pest that invades the Allium species. As the feeding punctures on the leaf surface caused by the female adults as well as the...

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Published inEuphytica Vol. 217; no. 2
Main Authors Fujito, Satoshi, Urairi, Chihiro, Yamashita, Ken-ichiro, Wako, Tadayuki, Kawai, Akira, Takeda, Mitsuyoshi
Format Journal Article
LanguageEnglish
Published Dordrecht Springer Netherlands 01.02.2021
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Abstract The Japanese bunching onion, Allium fistulosum L., is an important vegetable in East Asia. However, the stone leek leafminer, Liriomyza chinensis (Kato), is a serious insect pest that invades the Allium species. As the feeding punctures on the leaf surface caused by the female adults as well as the larval mining inside the unifacial leaves reduce the commercial value of A. fistulosum , it is essential to control L. chinensis during its growth. The accession ‘Beicong’ has shown resistance to L. chinensis due to its egg-killing defense, but the degree of resistance varies within the ‘Beicong’ population. Therefore, in the present study, we selected highly resistant selfed lines from the ‘Beicong’ population by artificially inoculating L. chinensis eggs into the leaves to breed A. fistulosum with a resistance to L. chinensis . A highly resistant line was obtained by continuously self-pollinating the resistant ‘Beicong’ individual among the 191 individuals, which was inherited in the F 1 hybrid of the resistant line and the susceptible variety. However, the F 1 hybrid’s degree of resistance was an intermediate of the two parents’. It was also revealed that the resistance of ‘Beicong’ was due to both egg- and larval-killing defense mechanisms by artificially inoculating the eggs and larvae into the leaves. Hence, developing a highly resistant line could contribute to integrated pest management in A. fistulosum cultivation by decreasing the population of L. chinensis .
AbstractList The Japanese bunching onion, Allium fistulosum L., is an important vegetable in East Asia. However, the stone leek leafminer, Liriomyza chinensis (Kato), is a serious insect pest that invades the Allium species. As the feeding punctures on the leaf surface caused by the female adults as well as the larval mining inside the unifacial leaves reduce the commercial value of A. fistulosum, it is essential to control L. chinensis during its growth. The accession 'Beicong' has shown resistance to L. chinensis due to its egg-killing defense, but the degree of resistance varies within the 'Beicong' population. Therefore, in the present study, we selected highly resistant selfed lines from the 'Beicong' population by artificially inoculating L. chinensis eggs into the leaves to breed A. fistulosum with a resistance to L. chinensis. A highly resistant line was obtained by continuously self-pollinating the resistant 'Beicong' individual among the 191 individuals, which was inherited in the F.sub.1 hybrid of the resistant line and the susceptible variety. However, the F.sub.1 hybrid's degree of resistance was an intermediate of the two parents'. It was also revealed that the resistance of 'Beicong' was due to both egg- and larval-killing defense mechanisms by artificially inoculating the eggs and larvae into the leaves. Hence, developing a highly resistant line could contribute to integrated pest management in A. fistulosum cultivation by decreasing the population of L. chinensis.
The Japanese bunching onion, Allium fistulosum L., is an important vegetable in East Asia. However, the stone leek leafminer, Liriomyza chinensis (Kato), is a serious insect pest that invades the Allium species. As the feeding punctures on the leaf surface caused by the female adults as well as the larval mining inside the unifacial leaves reduce the commercial value of A. fistulosum, it is essential to control L. chinensis during its growth. The accession ‘Beicong’ has shown resistance to L. chinensis due to its egg-killing defense, but the degree of resistance varies within the ‘Beicong’ population. Therefore, in the present study, we selected highly resistant selfed lines from the ‘Beicong’ population by artificially inoculating L. chinensis eggs into the leaves to breed A. fistulosum with a resistance to L. chinensis. A highly resistant line was obtained by continuously self-pollinating the resistant ‘Beicong’ individual among the 191 individuals, which was inherited in the F1 hybrid of the resistant line and the susceptible variety. However, the F1 hybrid’s degree of resistance was an intermediate of the two parents’. It was also revealed that the resistance of ‘Beicong’ was due to both egg- and larval-killing defense mechanisms by artificially inoculating the eggs and larvae into the leaves. Hence, developing a highly resistant line could contribute to integrated pest management in A. fistulosum cultivation by decreasing the population of L. chinensis.
The Japanese bunching onion, Allium fistulosum L., is an important vegetable in East Asia. However, the stone leek leafminer, Liriomyza chinensis (Kato), is a serious insect pest that invades the Allium species. As the feeding punctures on the leaf surface caused by the female adults as well as the larval mining inside the unifacial leaves reduce the commercial value of A. fistulosum , it is essential to control L. chinensis during its growth. The accession ‘Beicong’ has shown resistance to L. chinensis due to its egg-killing defense, but the degree of resistance varies within the ‘Beicong’ population. Therefore, in the present study, we selected highly resistant selfed lines from the ‘Beicong’ population by artificially inoculating L. chinensis eggs into the leaves to breed A. fistulosum with a resistance to L. chinensis . A highly resistant line was obtained by continuously self-pollinating the resistant ‘Beicong’ individual among the 191 individuals, which was inherited in the F 1 hybrid of the resistant line and the susceptible variety. However, the F 1 hybrid’s degree of resistance was an intermediate of the two parents’. It was also revealed that the resistance of ‘Beicong’ was due to both egg- and larval-killing defense mechanisms by artificially inoculating the eggs and larvae into the leaves. Hence, developing a highly resistant line could contribute to integrated pest management in A. fistulosum cultivation by decreasing the population of L. chinensis .
ArticleNumber 31
Audience Academic
Author Urairi, Chihiro
Takeda, Mitsuyoshi
Yamashita, Ken-ichiro
Wako, Tadayuki
Kawai, Akira
Fujito, Satoshi
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CitedBy_id crossref_primary_10_1007_s13355_023_00852_7
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Copyright The Author(s), under exclusive licence to Springer Nature B.V. part of Springer Nature 2021
COPYRIGHT 2021 Springer
The Author(s), under exclusive licence to Springer Nature B.V. part of Springer Nature 2021.
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Issue 2
Keywords Beicong
Kato
Japanese bunching onion
L
Insect pest resistance
Stone leek leafminer
Language English
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Snippet The Japanese bunching onion, Allium fistulosum L., is an important vegetable in East Asia. However, the stone leek leafminer, Liriomyza chinensis (Kato), is a...
The Japanese bunching onion, Allium fistulosum L., is an important vegetable in East Asia. However, the stone leek leafminer, Liriomyza chinensis (Kato), is a...
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SubjectTerms Agricultural practices
Biomedical and Life Sciences
Biotechnology
Bunching
Cultivation
Eggs
Heredity
High resistance
Insects
Integrated pest management
Larvae
Leaves
Life Sciences
Liriomyza chinensis
Onions
Pest control
Pest resistance
Pests
Plant Genetics and Genomics
Plant Pathology
Plant Physiology
Plant Sciences
Population
Stone
Vegetables
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Title Japanese bunching onion line with a high resistance to the stone leek leafminer, Liriomyza chinensis from the ‘Beicong’ population: evaluating the inheritance of resistance
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