Litcius/Paper detail

<i>TAC4</i> controls tiller angle by regulating the endogenous auxin content and distribution in rice

Hua Li, Hongying Sun, Jiahuang Jiang, Xianyou Sun, Lubin Tan, Chuanqing Sun

2020Plant Biotechnology Journal88 citationsDOIOpen Access PDF

Abstract

Tiller angle, an important component of plant architecture, greatly influences the grain yield of rice (Oryza sativa L.). Here, we identified Tiller Angle Control 4 (TAC4) as a novel regulator of rice tiller angle. TAC4 encodes a plant-specific, highly conserved nuclear protein. The loss of TAC4 function leads to a significant increase in the tiller angle. TAC4 can regulate rice shoot gravitropism by increasing the indole acetic acid content and affecting the auxin distribution. A sequence analysis revealed that TAC4 has undergone a bottleneck and become fixed in indica cultivars during domestication and improvement. Our findings facilitate an increased understanding of the regulatory mechanisms of tiller angle and also provide a potential gene resource for the improvement of rice plant architecture.

Topics & Concepts

Tiller (botany)AuxinBiologyOryza sativaCultivarGravitropismLimitingAgronomyBotanyGeneGeneticsArabidopsisMutantMechanical engineeringEngineeringGenetic Mapping and Diversity in Plants and AnimalsPlant Molecular Biology ResearchRice Cultivation and Yield Improvement
<i>TAC4</i> controls tiller angle by regulating the endogenous auxin content and distribution in rice | Litcius