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Tiller Number1 encodes an ankyrin repeat protein that controls tillering in bread wheat.

Chunhao DongLichao ZhangQiang ZhangYuxin YangDanping LiZhencheng XieGuoqing CuiYaoyu ChenLifen WuZhan LiGuoxiang LiuXueying ZhangCuimei LiuJinfang ChuGuangyao ZhaoChuan XiaJizeng JiaJiaqiang SunXiuying KongXu Liu
Published in: Nature communications (2023)
Wheat (Triticum aestivum L.) is a major staple food for more than one-third of the world's population. Tiller number is an important agronomic trait in wheat, but only few related genes have been cloned. Here, we isolate a wheat mutant, tiller number1 (tn1), with much fewer tillers. We clone the TN1 gene via map-based cloning: TN1 encodes an ankyrin repeat protein with a transmembrane domain (ANK-TM). We show that a single amino acid substitution in the third conserved ankyrin repeat domain causes the decreased tiller number of tn1 mutant plants. Resequencing and haplotype analysis indicate that TN1 is conserved in wheat landraces and modern cultivars. Further, we reveal that the expression level of the abscisic acid (ABA) biosynthetic gene TaNCED3 and ABA content are significantly increased in the shoot base and tiller bud of the tn1 mutants; TN1 but not tn1 could inhibit the binding of TaPYL to TaPP2C via direct interaction with TaPYL. Taken together, we clone a key wheat tiller number regulatory gene TN1, which promotes tiller bud outgrowth probably through inhibiting ABA biosynthesis and signaling.
Keyphrases
  • transcription factor
  • genome wide
  • amino acid
  • genome wide identification
  • binding protein
  • poor prognosis
  • gene expression
  • small molecule
  • dna binding
  • arabidopsis thaliana
  • single cell
  • protein protein