数字农科院2.0

Natural Variations in Key Maturity Genes Underpin Soybean Cultivars Adaptation Beyond 50° N in Northeast China

文献类型: 外文期刊

作者: Hongchang Jia;Baiquan Sun;Bingjun Jiang;Peiguo Wang;Mahmoud Naser;Shuqing Qian;Liwei Wang;Lixin Zhang;Mikhail Sinegovskii;Shi Sun;Wencheng Lu;Valentina Sinegovskaya;Jiangping Bai;Tianfu Han

作者机构:

关键词: adaptability;haplotype;high-latitude cultivation;maturity group;photothermal adaptation;soybean

期刊名称: International Journal of Molecular Sciences

ISSN: 1661-6596

年卷期: 2025 年 26 卷 7 期

页码:

收录情况: SCIE(2025版)

摘要: Expanding soybean planting is vital for food security both in China and globally. The 50° N latitude serves as the northern boundary of major soybean regions. However, enhancing the adaptability of soybean to photothermal conditions enables the potential to extend cultivation to higher latitudes and altitudes. Understanding the genetic basis of super-early maturity of soybean is crucial to achieving this goal. In this study, 438 soybean germplasms collected from high-latitude regions were evaluated in Heihe (HH) (50°15′ N, 127°28′ E, 154 m), Beijicun (BJC) (53°28′ N, 122°21′ E, 295 m) and Labudalin (LBDL) (50°15′ N, 120°19′ E, 577 m). Using resequencing data, we analyzed natural variation and haplotypes in 35 key genes associated with flowering time and maturity. The results showed that the relative maturity groups (RMGs) for BJC, HH, and LBDL were −1.0, 0.0, and −1.2, respectively. Among the 35 genes analyzed, 23 had identical allelic variations, while 12 genes exhibited 19 SNPs and four InDels. Functional mutations were identified in E1, E2, E3, and E4. Notably, all cultivars carried the e1-as allele of E1, which is likely critical for high-latitude adaptation. Additional mutations included a single-base substitution in E2 (16142 A > T) and E3 (5203 C > T), causing premature codon termination, along with frameshift mutations in E4 (3726 and 4099) and E3 (2649). Haplotype analysis revealed significant differences in growth stages among nine gene haplotypes. The higher frequency of early-maturing haplotypes in BJC and LBDL highlights the role of gene accumulation in soybean adaptation. These findings offer valuable insights for improving soybean maturity and expanding its cultivation in high-latitude regions of China.

分类号:

  • 相关文献

[1]Stability of growth periods traits for soybean cultivars across multiple locations. WANG Xiao-bo,LIU Zhang-xiong,YANG Chun-yan,XU ran,LU Wei-guo,ZHANG Li-feng, WANG Qian,WEI Su-hong,YANG Chun-ming,WANG Hui-cai,WANG Rui-zhen,ZHOU Rong,CHEN Huai-zhu,CHANG Ru-zhen,QIU Li-juan. 2016

[2]CONSTANS Polymorphism Modulates Flowering Time and Maturity in Soybean. Mohammad Abdul Awal Khan,Shouwei Zhang,Reza Mohammad Emon,Fulu Chen,Wenwen Song,Tingting Wu,Shan Yuan,Cunxiang Wu,Wensheng Hou,Shi Sun,Yongfu Fu,Bingjun Jiang,Tianfu Han. 2022

[3]Precise classification and regional delineation of maturity groups in soybean cultivars across China. Wenwen Song,Luping Liu,Shi Sun,Tingting Wu,Haiyan Zeng,Shiyan Tian,Bincheng Sun,Wenbin Li,Lijun Liu,Shuming Wang,Han Xing,Xin'an Zhou,Hai Nian,Wencheng Lu,Xiaozeng Han,Shouyi Wang,Weiyuan Chen,Tai Guo,Xiqing Song,Zhongyan Tian,Yanxi Cheng,Shuhong Song,Lianshun Fu,Huicai Wang,Ruiping Luo,Xueyi Liu,Qi Liu,Guohong Zhang,Sihui Lu,Ran Xu,Suzhen Li,Weiguo Lu,Qi Zhang,Zongbiao Wang,Chengong Jiang,Weiliang Shen,Mingrong Zhang,Danhua Zhu,Ruizhen Wang,Yuan Chen,Tiejun Wang,Xingtao Zhu,Yong Zhan,Bingjun Jiang,Cailong Xu,Shan Yuan,Wensheng Hou,Junyi Gai,Cunxiang Wu,Tianfu Han. 2023

[4]Molecular breeding for improvement of photothermal adaptability in soybean. Tingting Wu,Sijia Lu,Yupeng Cai,Xin Xu,Lixin Zhang,Fulu Chen,Bingjun Jiang,Honglei Zhang,Shi Sun,Hong Zhai,Lin Zhao,Zhengjun Xia,Wensheng Hou,Fanjiang Kong,Tianfu Han. 2023

[5]Molecular and geographic evolutionary support for the essential role of GIGANTEAa in soybean domestication of flowering time. Wang, Yan,Gu, Yongzhe,Gao, Huihui,He, Chaoying,Gu, Yongzhe,Gao, Huihui,Qiu, Lijuan,Chang, Ruzhen,Chen, Shouyi. 2016

[6]Genomic Dissection and Diurnal Expression Analysis Reveal the Essential Roles of the PRR Gene Family in Geographical Adaptation of Soybean. Peiguo Wang,Liwei Wang,Lixin Zhang,Tingting Wu,Baiquan Sun,Junquan Zhang,Enoch Sapey,Shan Yuan,Bingjun Jiang,Fulu Chen,Cunxiang Wu,Wensheng Hou,Shi Sun,Jiangping Bai,Tianfu Han. 2022

[7]17份紫花苜蓿品种产量比较试验(英文). 杨青川,郭文山,康俊梅. 2004

[8]Isoflavone Content of Soybean Cultivars from Maturity Group 0 to VI Grown in Northern and Southern China. Zhang, Jingying,Ge, Yinan,Han, Fenxia,Li, Bin,Yan, Shurong,Sun, Junming,Wang, Lianzheng. 2014

[9]Analysis of Relationship between Soybean Relative Maturity Group, Crop Heat Units and ≥10◦ C Active Accumulated Temperature. Huiwen Wen,Tingting Wu,Hongchang Jia,Wenwen Song,Cailong Xu,Tianfu Han,Shi Sun,Cunxiang Wu. 2022

[10]Modeling the interplay of cultivars, irrigation regimes, and planting dates for optimizing cotton productivity in core and non-core cotton areas of Pakistan. Osman, Raheel,Iqbal, Muhammad Shahid,Sarfraz, Zareen,Mahmood, Abid,Shahid, Muhammad Rafiq,Feike, Til,Wang, Lin,Fu, Shenglei,Ata-Ul-Karim, Syed Tahir. 2025

[11]Evaluation of productivity and stability of elite summer soybean cultivars in multi-environment trials. Qin, Jun,Yang, Chunyan,Zhang, Mengchen,Xu, Ran,Zhang, Lifeng,Li, Haichao,Lu, Weiguo,Liu, Duan,Liu, Zhangxiong,Qiu, Lijuan,Frett, Terrence,Chen, Pengyin.

[12]N, P Contribution and soil adaptability of four arbuscular mycorrhizal fungi. Wenke, Liu.

[13]Field evaluation of an Amaranthus genetic resource collection in China. Wu, HX,Sun, M,Yue, SX,Sun, HL,Cai, Y,Huang, RH,Brenner, D,Corke, H. 2000

[14]Evaluation of the livelihood vulnerability of pastoral households in Northern China to natural disasters and climate change. Ding, Wenqiang,Ren, Weibo,Li, Ping,Hou, Xiangyang,Li, Xiliang,Xie, Jihong,Ding, Yong,Sun, Xiaolong.

[15]Biochemical and Morphological Mechanisms Underlying the Performance and Preference of Fall Armyworm (Spodoptera frugiperda) on Wheat and Faba Bean Plants. Huan Liu,Yumeng Cheng,Xiaoqing Wang,Frédéric Francis,Qian Wang,Xiaobei Liu,Yong Zhang,Julian Chen. 2022

[16]Impact of temperature on survival rate, fecundity, and feeding behavior of two aphids, aphis gossypii and acyrthosiphon gossypii, when reared on cotton. Jinping Liu,Chen Wang,Nicolas Desneux,Yanhui Lu. 2021

[17]Evaluation of 41 Cowpea Lines Sown on Different Dates in Southern China. Dan Gong,Long Jia,Gaoling Luo,Yanhua Chen,Suhua Wang,Lixia Wang. 2023

[18]Evaluation of the Production Potential of Mung Bean Cultivar “Zhonglv 5”. Lixia Wang,Suhua Wang,Gaoling Luo,Jintao Zhang,Yanhua Chen,Honglin Chen,Xuzhen Cheng. 2022

[19]Genetic diversity and population structure of Tibetan sheep breeds determined by whole genome resequencing. Lei-Lei Li,Shi-Ke Ma,Wei Peng,You-Gui Fang,Hai-Rui Duo,Hong-Yun Fu,Gong-Xue Jia. 2021

[20]Performance of Different Varieties of Spring Field Pea (Pisum sativum L.) under Irrigated and Rainfed Environments in North China. Xiaoming Yang,Jingyi Yang,Yuhua He,Xuxiao Zong,Gengmei Min,Rongfang Lian,Zhenxing Liu,Chao Xiang,Ling Li,Baolong Xing,Lijuan Zhang,Zhiwen Gou. 2022

作者其他论文 更多>>