Natural variation in the Tn1a promoter regulates tillering in rice

Author:

Yang Tao1,Ma Xiaoqian12,Zhang Quan1,Li Lin1,Zhu Rui1,Zeng An13,Liu Wanying1,Liu Haixia1,Wang Yulong1,Han Shichen1,Khan Najeeb Ullah1,Li Jinjie13ORCID,Li Zichao13ORCID,Zhang Zhanying13ORCID,Zhang Hongliang134ORCID

Affiliation:

1. Frontiers Science Center for Molecular Design Breeding, Key Laboratory of Crop Heterosis and Utilization (MOE), Beijing Key Laboratory of Crop Genetic Improvement College of Agronomy and Biotechnology, China Agricultural University Beijing China

2. College of Agriculture, Henan University of Science and Technology Luoyang China

3. Sanya Institute of China Agricultural University Sanya China

4. Sanya Nanfan Research Institute of Hainan University Sanya China

Abstract

SummaryRice tillering is an important agronomic trait that influences plant architecture and ultimately affects yield. This can be genetically improved by mining favourable variations in genes associated with tillering. Based on a previous study on dynamic tiller number, we cloned the gene Tiller number 1a (Tn1a), which encodes a membrane‐localised protein containing the C2 domain that negatively regulates tillering in rice. A 272 bp insertion/deletion at 387 bp upstream of the start codon in the Tn1a promoter confers a differential transcriptional response and results in a change in tiller number. Moreover, the TCP family transcription factors Tb2 and TCP21 repress the Tn1a promoter activity by binding to the TCP recognition site within the 272 bp indel. In addition, we identified that Tn1a may affect the intracellular K+ content by interacting with a cation‐chloride cotransporter (OsCCC1), thereby affecting the expression of downstream tillering‐related genes. The Tn1a+272 bp allele, associated with high tillering, might have been preferably preserved in rice varieties in potassium‐poor regions during domestication. The discovery of Tn1a is of great significance for further elucidating the genetic basis of tillering characteristics in rice and provides a new and favourable allele for promoting the geographic adaptation of rice to soil potassium.

Funder

National Natural Science Foundation of China

Ministry of Science and Technology of the People's Republic of China

Publisher

Wiley

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