TRENDING NEWS: No. 1 Overall Prospect Aaliyah Chavez Commits to Oklahoma Sooners
In a monumental development for the Oklahoma Sooners, the No. 1 overall prospect in the 2025 recruiting class, Aaliyah Chavez, has officially committed to play for Oklahoma. The highly sought-after five-star recruit, who has dominated in both high school and club softball, made the announcement earlier today, sending waves of excitement through the Sooners’ softball community.
Chavez, a versatile player known for her explosive bat and elite fielding skills, had been courted by several top programs across the country, including Florida, UCLA, and Alabama. However, after months of careful consideration, she chose Oklahoma, citing the Sooners’ winning tradition, outstanding coaching staff, and the opportunity to be part of a championship-caliber team as key factors in her decision.
“After visiting Oklahoma and getting to know Coach Gasso and the team, I knew it was the perfect fit for me,” said Chavez in her commitment statement. “I’m looking forward to contributing to the success of the program and growing as a player under Coach Gasso’s leadership. I’m excited to be a part of the Sooners’ family.”
Oklahoma head coach Patty Gasso, who has led the Sooners to multiple national championships, expressed her enthusiasm about landing the nation’s top prospect. “Aaliyah is a special talent, and we are thrilled to have her join our program. She embodies everything we value in a player — drive, skill, and a commitment to excellence. We’re excited to help her reach her full potential and continue to build upon the legacy of Oklahoma softball.”
Chavez’s commitment is a massive coup for the Sooners, who are already a powerhouse in NCAA softball. Her addition to the team is expected to further elevate Oklahoma’s chances of securing another national title in the near future.
With Chavez now in the fold, the Sooners’ 2025 recruiting class is shaping up to be one of the most formidable in recent memory, and fans can’t wait to see the future starin action.