H. C. Price Data-verified
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Biography and Research Information
OverviewAI-generated summary
H. C. Price's research focuses on plant physiology, specifically investigating how beneficial microbes can enhance crop resilience. A recent publication in 2023 explored the role of *Azospirillum brasilense* in improving rice growth under salt stress. This study examined the regulation of key genes involved in salt stress response, abscisic acid signaling, and nutrient transport, indicating a mechanism by which the bacteria confer tolerance. Price has a total of 18 publications with 109 citations and an h-index of 6. Collaborations include work with Yasir Rahmatallah and Galina Glazko from the University of Arkansas for Medical Sciences, as well as Seth Dixon and Zachariah Degon from the University of Central Arkansas.
Metrics
- h-index: 6
- Publications: 18
- Citations: 113
Selected Publications
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Azospirillum brasilense improves rice growth under salt stress by regulating the expression of key genes involved in salt stress response, abscisic acid signaling, and nutrient transport, among others (2023)
Collaboration Network
Top Collaborators
- Azospirillum brasilense improves rice growth under salt stress by regulating the expression of key genes involved in salt stress response, abscisic acid signaling, and nutrient transport, among others
- Azospirillum brasilense improves rice growth under salt stress by regulating the expression of key genes involved in salt stress response, abscisic acid signaling, and nutrient transport, among others
- Azospirillum brasilense improves rice growth under salt stress by regulating the expression of key genes involved in salt stress response, abscisic acid signaling, and nutrient transport, among others
- Azospirillum brasilense improves rice growth under salt stress by regulating the expression of key genes involved in salt stress response, abscisic acid signaling, and nutrient transport, among others
- Azospirillum brasilense improves rice growth under salt stress by regulating the expression of key genes involved in salt stress response, abscisic acid signaling, and nutrient transport, among others
- Azospirillum brasilense improves rice growth under salt stress by regulating the expression of key genes involved in salt stress response, abscisic acid signaling, and nutrient transport, among others
- Azospirillum brasilense improves rice growth under salt stress by regulating the expression of key genes involved in salt stress response, abscisic acid signaling, and nutrient transport, among others
- Azospirillum brasilense improves rice growth under salt stress by regulating the expression of key genes involved in salt stress response, abscisic acid signaling, and nutrient transport, among others
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