Comparative Transcriptome Analysis Reveals the Molecular Basis of IBrassica napus/I in Response to Aphid Stress

Rapeseed is a globally important economic crop that can be severely impacted by aphids. However, our understanding of rapeseed resistance to aphid stress is very limited. In this study, we analyzed the resistance characteristics of the low aphid-susceptible variety APL01 and the highly aphid-suscept...

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Published inPlants (Basel) Vol. 12; no. 15
Main Authors Li, Yuanhong, Cai, Lei, Ding, Ting, Tian, Entang, Yan, Xiaohong, Wang, Xiaodong, Zhang, Jiefu, Yu, Kunjiang, Chen, Zhuo
Format Journal Article
LanguageEnglish
Published MDPI AG 01.08.2023
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Abstract Rapeseed is a globally important economic crop that can be severely impacted by aphids. However, our understanding of rapeseed resistance to aphid stress is very limited. In this study, we analyzed the resistance characteristics of the low aphid-susceptible variety APL01 and the highly aphid-susceptible variety Holly in response to aphid stress. APL01 had a more significant inhibitory effect on aphid proliferation compared with Holly during the early stage of inoculation, whereas Holly showed stronger tolerance to aphid stress compared with APL01 during the later stage of inoculation. Through transcriptome, physiological, and gene expression analyses, it was revealed that chitinase activity, catalase activity, calcium signal transduction, and activation of systemic acquired resistance might be involved in aphid resistance in B. napus. The degree of inhibition of photosynthesis in plants under aphid stress directly determines the tolerance of B. napus to aphid stress. Furthermore, four promising candidate genes were screened from eight genes related to rapeseed response to biotic stress through RT-qPCR analysis of gene expression levels. These research findings represent an important step forward in understanding the resistance of rapeseed to aphid stress and provide a solid foundation for the cloning of genes responsible for this resistance.
AbstractList Rapeseed is a globally important economic crop that can be severely impacted by aphids. However, our understanding of rapeseed resistance to aphid stress is very limited. In this study, we analyzed the resistance characteristics of the low aphid-susceptible variety APL01 and the highly aphid-susceptible variety Holly in response to aphid stress. APL01 had a more significant inhibitory effect on aphid proliferation compared with Holly during the early stage of inoculation, whereas Holly showed stronger tolerance to aphid stress compared with APL01 during the later stage of inoculation. Through transcriptome, physiological, and gene expression analyses, it was revealed that chitinase activity, catalase activity, calcium signal transduction, and activation of systemic acquired resistance might be involved in aphid resistance in B. napus. The degree of inhibition of photosynthesis in plants under aphid stress directly determines the tolerance of B. napus to aphid stress. Furthermore, four promising candidate genes were screened from eight genes related to rapeseed response to biotic stress through RT-qPCR analysis of gene expression levels. These research findings represent an important step forward in understanding the resistance of rapeseed to aphid stress and provide a solid foundation for the cloning of genes responsible for this resistance.
Audience Academic
Author Yan, Xiaohong
Cai, Lei
Li, Yuanhong
Tian, Entang
Yu, Kunjiang
Ding, Ting
Chen, Zhuo
Zhang, Jiefu
Wang, Xiaodong
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  fullname: Chen, Zhuo
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Snippet Rapeseed is a globally important economic crop that can be severely impacted by aphids. However, our understanding of rapeseed resistance to aphid stress is...
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SubjectTerms Aphididae
Botanical research
Cellular signal transduction
Control
Diseases and pests
Gene expression
Genetic aspects
Insect resistance
Physiological aspects
Plants
Rape (Plant)
Title Comparative Transcriptome Analysis Reveals the Molecular Basis of IBrassica napus/I in Response to Aphid Stress
Volume 12
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