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Natural allelic variation of TMS6 regulates branching and is associated with latitudinal adaptation in soybean.

Created on 29 Jul 2026

Authors

Dan Gu, Doudou Chen, Qianjin Liang, Min Zhang, Liyu Chen, Lingbin Ni, Huihui Qin, Zhenyang Wu, Lihong Wang, Yin Hua Jin, Peng Liu, Peiyong Xin, Jinfang Chu, Fanjiang Kong, Zhixi Tian, Jing Bo Jin

Published in

Cell reports. Volume 45. Issue 8. Pages 117757. Jul 27, 2026. Epub Jul 27, 2026.

Abstract

Increase in branching boosts soybean yield but often causes delayed flowering, thereby limiting its application in high-latitude regions with short frost-free periods. Here, through positional cloning, we identify a branching-regulating gene on chromosome 6 (TOO MANY SHOOT BRANCHING 6, TMS6), which represses branching but does not affect the flowering time and maturity in soybean. Functional analysis reveals that TMS6 associates with and activates the promoters of cytokinin oxidases, consequently reducing cytokinin levels in axillary buds and resulting in fewer branches. Geographic distribution analysis reveals that the frequency of the low-branching TMS6 allele decreases from higher latitudes to lower latitudes, consistent with the branch number change pattern. TMS6 mutations boost individual plant grain yield. Introgression of tms6 alleles into an elite cultivar originating from a high-latitude region increases plot yield in field trials. This study provides a soybean branching-regulating gene as a potential target to improve yield in high-latitude regions.

PMID:
42519833
Bibliographic data and abstract were imported from PubMed on 29 Jul 2026.

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