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NbTLP1 stabilizes NbPR1 to enhance resistance against Phytophthora capsici via salicylic acid signalling pathway in Nicotiana benthamiana
by
Qiao, Gang
, Cai, Lin
, Zhang, Ge
, Luo, Xingyi
, Sun, Xianchao
, Liu, Changyun
, Wang, Shanzhi
, Liu, Weina
, Sun, Hulian
, Tian, Shaorui
in
Brief Communication
/ Immune response
/ Infections
/ Leaves
/ Localization
/ NbPR1
/ NbTLP1
/ Pathogenesis
/ Pathogens
/ Phytophthora capsici
/ Plant resistance
/ Proteins
/ Salicylic acid
/ Signal transduction
/ Statistical analysis
/ Transgenic plants
2025
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NbTLP1 stabilizes NbPR1 to enhance resistance against Phytophthora capsici via salicylic acid signalling pathway in Nicotiana benthamiana
by
Qiao, Gang
, Cai, Lin
, Zhang, Ge
, Luo, Xingyi
, Sun, Xianchao
, Liu, Changyun
, Wang, Shanzhi
, Liu, Weina
, Sun, Hulian
, Tian, Shaorui
in
Brief Communication
/ Immune response
/ Infections
/ Leaves
/ Localization
/ NbPR1
/ NbTLP1
/ Pathogenesis
/ Pathogens
/ Phytophthora capsici
/ Plant resistance
/ Proteins
/ Salicylic acid
/ Signal transduction
/ Statistical analysis
/ Transgenic plants
2025
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NbTLP1 stabilizes NbPR1 to enhance resistance against Phytophthora capsici via salicylic acid signalling pathway in Nicotiana benthamiana
by
Qiao, Gang
, Cai, Lin
, Zhang, Ge
, Luo, Xingyi
, Sun, Xianchao
, Liu, Changyun
, Wang, Shanzhi
, Liu, Weina
, Sun, Hulian
, Tian, Shaorui
in
Brief Communication
/ Immune response
/ Infections
/ Leaves
/ Localization
/ NbPR1
/ NbTLP1
/ Pathogenesis
/ Pathogens
/ Phytophthora capsici
/ Plant resistance
/ Proteins
/ Salicylic acid
/ Signal transduction
/ Statistical analysis
/ Transgenic plants
2025
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NbTLP1 stabilizes NbPR1 to enhance resistance against Phytophthora capsici via salicylic acid signalling pathway in Nicotiana benthamiana
Journal Article
NbTLP1 stabilizes NbPR1 to enhance resistance against Phytophthora capsici via salicylic acid signalling pathway in Nicotiana benthamiana
2025
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Overview
In summary, our study establishes that NbTLP1 plays a crucial role in mediating the SA signalling pathway, thereby contributing to the suppression of P. capsici infection through its interaction with NbPR1 to form a heterodimer. These findings provide a fundamental basis for the genetic enhancement of P. capsici‐resistant crops through targeted breeding strategies.
Publisher
John Wiley & Sons, Inc,John Wiley and Sons Inc
Subject
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