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Detection of candidate genes and development of KASP markers for Verticillium wilt resistance by combining genome-wide association study, QTL-seq and transcriptome sequencing in cotton

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  1. Article

    Open Access

    A bZIP transcription factor GhVIP1 increased drought tolerance in upland cotton

    Cotton is extremely affected by severe natural stresses. Drought is one of the most serious abiotic stress that adversely influences cotton growth, productivity, and fiber quality. Previous studies indicate th...

    Pei Zhao, Yuewei Xu, Wei Chen, **aohui Sang, Yunlei Zhao in Journal of Cotton Research (2023)

  2. Article

    Open Access

    Isolation and characterization of the GbVIP1 gene and response to Verticillium wilt in cotton and tobacco

    Verticillium wilt is a serious soil-borne vascular disease that causes major losses to upland cotton (Gossypium hirutum L.) worldwidely every year. The protein VIP1 (VirE2 interaction protein 1), a bZIP transcrip...

    Kai ZHANG, Pei ZHAO, Hongmei WANG, Yunlei ZHAO, Wei CHEN in Journal of Cotton Research (2019)

  3. Article

    Open Access

    Regional association analysis-based fine map** of three clustered QTL for verticillium wilt resistance in cotton (G. hirsutum. L)

    Verticillium wilt is one of the most destructive diseases affecting global cotton production. The most effective way to control wilt disease has been the development of new cotton varieties that are resistant ...

    Yunlei Zhao, Hongmei Wang, Wei Chen, Pei Zhao, Haiyan Gong, **aohui Sang in BMC Genomics (2017)