Prabodh Kumar Bajpai Data-verified
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Postdoc
postdoc
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Biography and Research Information
OverviewAI-generated summary
Prabodh Kumar Bajpai's research focuses on plant population genomics and the analysis of genetic datasets, including dominant marker data, microsatellite data, whole-genome sequencing, and Pool-seq data. His work involves field sampling in diverse climatic conditions, from cold deserts to hot deserts. Bajpai has investigated the adaptive evolution of *Eruca sativa* (arugula) by correlating phenotypic and genetic data, and has identified genetic loci responsible for adaptation to Mediterranean and desert climates using whole-genome pool-seq data. He has also studied the comparative adaptation of wild radish species in the Mediterranean region using GBS data.
His previous postdoctoral work included studying the genetic variation and adaptive footprints in plant populations. Bajpai's scholarship metrics include an h-index of 10, 21 total publications, and 388 total citations. He has collaborated with Xuan Zhuang on shared publications.
Metrics
- h-index: 10
- Publications: 21
- Citations: 419
Selected Publications
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Genomic differentiation and SNP variation reveal local adaptations to eastern Mediterranean environmental conditions in wild radishes (2025)
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An amino acid polymorphism in the membrane progesterone receptor alpha protein is tied to female sexual maturity in the large yellow croaker (Larimichthys crocea) (2025)
Collaboration Network
Top Collaborators
- Relict olive trees at runoff agriculture remains in Wadi Zetan, Negev Desert, Israel
- Phenotypic differentiation and diversifying selection in populations of Eruca sativa along an aridity gradient
- Whole genome sequencing reveals footprints of adaptive genetic variation in populations of Eruca sativa
- Additional file 2 of Phenotypic differentiation and diversifying selection in populations of Eruca sativa along an aridity gradient
- Genomic differentiation and SNP variation reveal local adaptations to eastern Mediterranean environmental conditions in wild radishes
- Phenotypic differentiation and diversifying selection in populations of Eruca sativa along an aridity gradient
- Additional file 2 of Phenotypic differentiation and diversifying selection in populations of Eruca sativa along an aridity gradient
- Phenotypic differentiation and diversifying selection in populations of Eruca sativa along an aridity gradient
- Additional file 2 of Phenotypic differentiation and diversifying selection in populations of Eruca sativa along an aridity gradient
- Phenotypic differentiation and diversifying selection in populations of Eruca sativa along an aridity gradient
- Additional file 2 of Phenotypic differentiation and diversifying selection in populations of Eruca sativa along an aridity gradient
- Phenotypic differentiation and diversifying selection in populations of Eruca sativa along an aridity gradient
- Additional file 2 of Phenotypic differentiation and diversifying selection in populations of Eruca sativa along an aridity gradient
- Whole genome sequencing reveals footprints of adaptive genetic variation in populations of Eruca sativa
- Genomic differentiation and SNP variation reveal local adaptations to eastern Mediterranean environmental conditions in wild radishes
- <scp>GTR1</scp> and <scp>GTR2</scp> transporters differentially regulate tissue‐specific glucosinolate contents and defence responses in the oilseed crop <scp><i>Brassica juncea</i></scp>
- <scp>GTR1</scp> and <scp>GTR2</scp> transporters differentially regulate tissue‐specific glucosinolate contents and defence responses in the oilseed crop <scp><i>Brassica juncea</i></scp>
- <scp>GTR1</scp> and <scp>GTR2</scp> transporters differentially regulate tissue‐specific glucosinolate contents and defence responses in the oilseed crop <scp><i>Brassica juncea</i></scp>
- <scp>GTR1</scp> and <scp>GTR2</scp> transporters differentially regulate tissue‐specific glucosinolate contents and defence responses in the oilseed crop <scp><i>Brassica juncea</i></scp>
- <scp>GTR1</scp> and <scp>GTR2</scp> transporters differentially regulate tissue‐specific glucosinolate contents and defence responses in the oilseed crop <scp><i>Brassica juncea</i></scp>
- Relict olive trees at runoff agriculture remains in Wadi Zetan, Negev Desert, Israel
- Relict olive trees at runoff agriculture remains in Wadi Zetan, Negev Desert, Israel
- Relict olive trees at runoff agriculture remains in Wadi Zetan, Negev Desert, Israel
- Relict olive trees at runoff agriculture remains in Wadi Zetan, Negev Desert, Israel
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