Literature DB >> 33458938

FT5a interferes with the Dt1-AP1 feedback loop to control flowering time and shoot determinacy in soybean.

Lin Yue1, Xiaoming Li2, Chao Fang1, Liyu Chen1, Hui Yang1, Jie Yang2, Zhonghui Chen2,3, Haiyang Nan1, Linnan Chen1, Yuhang Zhang1, Haiyang Li1,4, Xingliang Hou5, Zhicheng Dong1, James L Weller5, Jun Abe6, Baohui Liu1,7, Fanjiang Kong1,7.   

Abstract

Flowering time and stem growth habit determine inflorescence architecture in soybean, which in turn influences seed yield. Dt1, a homolog of Arabidopsis TERMINAL FLOWER 1 (TFL1), is a major controller of stem growth habit, but its underlying molecular mechanisms remain unclear. Here, we demonstrate that Dt1 affects node number and plant height, as well as flowering time, in soybean under long-day conditions. The bZIP transcription factor FDc1 physically interacts with Dt1, and the FDc1-Dt1 complex directly represses the expression of APETALA1 (AP1). We propose that FT5a inhibits Dt1 activity via a competitive interaction with FDc1 and directly upregulates AP1. Moreover, AP1 represses Dt1 expression by directly binding to the Dt1 promoter, suggesting that AP1 and Dt1 form a suppressive regulatory feedback loop to determine the fate of the shoot apical meristem. These findings provide novel insights into the roles of Dt1 and FT5a in controlling the stem growth habit and flowering time in soybean, which determine the adaptability and grain yield of this important crop.
© 2021 Institute of Botany, Chinese Academy of Sciences.

Entities:  

Keywords:  AP1; Dt1; FDc1; FT5a; flowering; soybean; stem growth habit

Year:  2021        PMID: 33458938     DOI: 10.1111/jipb.13070

Source DB:  PubMed          Journal:  J Integr Plant Biol        ISSN: 1672-9072            Impact factor:   7.061


  7 in total

1.  Utilization of Plant Architecture Genes in Soybean to Positively Impact Adaptation to High Yield Environments.

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2.  Detecting QTL and Candidate Genes for Plant Height in Soybean via Linkage Analysis and GWAS.

Authors:  Jiajing Wang; Bo Hu; Yuliang Jing; Xiping Hu; Yue Guo; Jiankun Chen; Yuxi Liu; Jianhui Hao; Wen-Xia Li; Hailong Ning
Journal:  Front Plant Sci       Date:  2022-01-21       Impact factor: 5.753

3.  Genetic Diversity and Selection Footprints in the Genome of Brazilian Soybean Cultivars.

Authors:  Heitor Calux Mendonça; Luiz Filipe Protasio Pereira; João Vitor Maldonado Dos Santos; Anderson Rotter Meda; Gustavo César Sant' Ana
Journal:  Front Plant Sci       Date:  2022-03-30       Impact factor: 5.753

4.  Construction of prediction models for growth traits of soybean cultivars based on phenotyping in diverse genotype and environment combinations.

Authors:  Andi Madihah Manggabarani; Takuyu Hashiguchi; Masatsugu Hashiguchi; Atsushi Hayashi; Masataka Kikuchi; Yusdar Mustamin; Masaru Bamba; Kunihiro Kodama; Takanari Tanabata; Sachiko Isobe; Hidenori Tanaka; Ryo Akashi; Akihiro Nakaya; Shusei Sato
Journal:  DNA Res       Date:  2022-06-25       Impact factor: 4.477

5.  Shoot-to-root translocated GmNN1/FT2a triggers nodulation and regulates soybean nitrogen nutrition.

Authors:  Xinxin Li; Huiwen Zhou; Ling Cheng; Niannian Ma; Baofeng Cui; Wenfei Wang; Yongjia Zhong; Hong Liao
Journal:  PLoS Biol       Date:  2022-08-15       Impact factor: 9.593

Review 6.  The Organ Size and Morphological Change During the Domestication Process of Soybean.

Authors:  Xuan Zhou; Dongfa Wang; Yawen Mao; Yueqiong Zhou; Limei Zhao; Chunbao Zhang; Yu Liu; Jianghua Chen
Journal:  Front Plant Sci       Date:  2022-06-09       Impact factor: 6.627

7.  Genomic analyses of rice bean landraces reveal adaptation and yield related loci to accelerate breeding.

Authors:  Jiantao Guan; Jintao Zhang; Dan Gong; Zhengquan Zhang; Yang Yu; Gaoling Luo; Prakit Somta; Zheng Hu; Suhua Wang; Xingxing Yuan; Yaowen Zhang; Yanlan Wang; Yanhua Chen; Kularb Laosatit; Xin Chen; Honglin Chen; Aihua Sha; Xuzhen Cheng; Hua Xie; Lixia Wang
Journal:  Nat Commun       Date:  2022-09-29       Impact factor: 17.694

  7 in total

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