Molecular Mechanisms behind the Regulation of Rice Tiller Angle: An Update
Rao Saad Rehman, Asad Nadeem Pasha, Syed Ali Zafar, Mujahid Ali, Hassan Bashir, Muhammad Usama Saeed, Naveed Ali Ashraf, Abdullah Javed
Asian Journal of Biology · pp. 37–50 · Published 9 May 2022
10.9734/ajob/2022/v14i430225Abstract
Crop plant architecture is an important agronomic trait that contributes greatly to crop yield. Tiller angle is one of the most critical components that determine crop plant architecture, which in turn substantially affects grain yield mainly owing to its large influence on plant density. Gravity is a fundamental physical force that acts on all organisms on earth. Plant organs sense gravity to control their growth orientation, including tiller angle in rice (Oryza sativa). This review summarizes recent research advances made using rice tiller angle as a research model, providing insights into domestication of rice tiller angle, genetic regulation of rice tiller angle, and shoot gravitropism. Finally, we propose that current discoveries in rice can shed light on shoot gravitropism and improvement of plant tiller angle in other species, thereby contributing to agricultural production in the future.
Cited by 4
Humera Ashraf, Muhammad Zahid Ashraf, Sawaira Ashraf · Food and Energy Security · 2026
Rao Saad Rehman, H. Bashir, S. A. Zafar · Biotechnology Journal International · 2022
Rao Saad Rehman, Mubashar Hussain, Mujahid Ali · International Journal of Pathogen Research · 2022
Rao Saad Rehman, Mujahid Ali, S. A. Zafar · Asian Journal of Biochemistry Genetics and Molecular Biology · 2022
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