数字农科院2.0

Stability of growth periods traits for soybean cultivars across multiple locations

文献类型: 外文期刊

作者: 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

作者机构:

关键词: soybean;growth periods;maturity group;environmental stability

期刊名称: Journal of Integrative Agriculture

ISSN: 2095-3119

年卷期: 2016 年 15 卷 5 期

页码:

收录情况: JCR(2021版) ; CSCD(2020-2021年度) ; 农林核心(2020版) ; 科技核心(2020版)

摘要: The growth periods (GPs, from planting/emergence to reproductive stage 8 (R8) of soybean cultivars vary in different ecological regions, especially in China with a very complex soybean cropping system. In this study, a 3-yr experimental study was undertaken in three geographical locations of China from 2008 to 2010, including the Northeast (40.66-45.85 degrees N), Huang-Huai (34.75-38.04 degrees N) and southern (22.82-30.60 degrees N) eco-regions with about 250 accessions in each region to clarify the classification of maturity group (MG) and identify the cultivars with stable GP to increase the knowledge about the GP distribution of soybean cultivars in China. GPs of soybean cultivars in different eco-regions were significant different with a gradual decrease from 115-125 d in the Northeast part to the 85-100 d in the southern part of China. The geographical location was the major factor for GP of cultivars from the Northeast, while the year of planting was the major factor affecting the stability of GPs in Huang-Huai summer and southern summer soybean. AMMI2 (additive main effects and multiplicative interaction)-Biplot analysis showed that the GPs of soybean cultivars from the Northeast eco-region have a comparatively satisfactory environmental stability. Moreover, soybean cultivars with moderate GP/MG and stable environment adaptability in different eco-regions were identified based on the linear regression and AMMI analysis, which was important for the accurate classification of soybean MGs in future. Taken together, our results reflected the genetic diversity, geographical distribution and environmental stability of the Chinese soybean GP trait. Soybean cultivars with stable GP for various Chinese eco-regions would be beneficial for Chinese soybean genetic improvement, varietal introduction, exchange, and soybean breeding program for wide adaptability.

分类号:

  • 相关文献

[1]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

[2]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

[3]Natural Variations in Key Maturity Genes Underpin Soybean Cultivars Adaptation Beyond 50° N in Northeast China. 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. 2025

[4]Faba Bean (Vicia faba L.) Yield Estimation Based on Dual-Sensor Data. Cui, Yuxing,Ji, Yishan,Liu, Rong,Li, Weiyu,Liu, Yujiao,Liu, Zehao,Zong, Xuxiao,Yang, Tao. 2023

[5]Stage-specific metabolic allocation: nutrient investment strategies during Lysiphlebia japonica Ashmead development. Tingting Zhou,Ningbo Huangfu,Li Wang,Junyu Luo,Jinjie Cui,Xiangzhen Zhu,Sumei Wan,Xueke Gao. 2025

[6]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

[7]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

[8]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

[9]Genome-Wide Characterization And Expression Analysis O.f Soybean Tga Transcription F actors Identified A Novel Tga Gene Involved In Drought And Salt Tolerance. Liu, Ying,Ma, You-Zhi,Li, Bo,Li, Bo,Zhou, Yong-Bin,Xu, Zhao-Shi,Min, Dong-Hong,Zheng, Wei-Jun,Cui, Xi-Yan,Chen, Ming,Zhou, Yong-Bin,Lan, Jin-Hao,Jin, Long-Guo,Fu, Jin-Dong. 2019

[10]Chemical Mutagenesis And Soybean Mutants P.otential For Identification Of N ovel Genes Conferring Resistance To Soybean Cyst Nematode. Peng De-liang,Huang Wen-kun,Liu Shi-ming,Liu Shi-ming,Zhang Liu-ping,Ge Feng-yong,Zheng Na. 2018

[11]Improvement Of Soybean Agrobacterium-Mediated Transformation E.fficiency By Adding Glutamine A nd Asparagine Into The Culture Media. Yao, Weiwei,Yao, Weiwei,Jiang, Bingjun,Sun, Shi,Cai, Yupeng,Cai, Yupeng,Wu, Cunxiang,Guo, Chen,Chen, Li,Chen, Li,Hou, Wensheng,Hou, Wensheng,Liu, Xiujie,Liu, Xiujie,Han, Tianfu,Guo, Chen. 2018

[12]Natural Variations Of Ft Family G.enes In Soybean Varieties C overing A Wide Range Of Maturity Groups. Abdul, Mohammad,Song, Wenwen,Zhang, Chengsheng,Han, Tianfu,Khan, Awal,Wu, Cunxiang,Jiang, Bingjun,Sun, Shi,Wu, Tingting,Zhang, Shouwei. 2019

[13]Mutagenesis Of Gmft2A And Gmft5A M.ediated By Crispr/Cas9 Contributes F or Expanding The Regional Adaptability Of Soybean. Jiang, Bingjun,Liu, Luping,Hou, Wensheng,Han, Tianfu,Chen, Li,Wu, Tingting,Yao, Weiwei,Wu, Cunxiang,Sun, Shi,Wang, Liwei,Yao, Weiwei,Cai, Yupeng,Hou, Wensheng,Cai, Yupeng,Chen, Li,Yuan, Shan. 2019

[14]Identification of quantitative trait loci underlying resistance to southern root-knot and reniform nematodes in soybean accession PI 567516C. Jiao, Yongqing,Vuong, Tri D.,Liu, Yang,Li, Zenglu,Noe, Jim,Robbins, Robert T.,Joshi, Trupti,Xu, Dong,Shannon, J. Grover,Nguyen, Henry T.. 2015

[15]Development of an HRM-based, safe and high-throughput genotyping system for two low phytic acid mutations in soybean. Tan, Yuan-Yuan,Shu, Qing-Yao,Shi, Chun-Hai,Yu, Xiao-min,Yuan, Feng-Jie,Zhang, Hua-Li,Wang, Shou-Gen.

[16]Synthesis and Degradation of the Major Allergens in Developing and Germinating Soybean Seed. Wu, Yong-Mei,Guan, Rong-Xia,Liu, Zhang-Xiong,Chang, Ru-Zhen,Qiu, Li-Juan,Wu, Yong-Mei,Li, Run-Zhi. 2012

[17]MiR1511 co-regulates with miR1511*to cleave the GmRPL4a gene in soybean. Luo ZhongQin,Jin LongGuo,Qiu LiJuan. 2012

[18]Conserved CO-FT regulons contribute to the photoperiod flowering control in soybean. Fan, Chengming,Zhang, Xiaomei,Wang, Xu,Zhang, Wenjing,Zhang, Qingzhe,Ma, Jinhua,Fu, Yong-Fu,Fan, Chengming,Hu, Ruibo. 2014

[19]Phenotypic characterization and genetic dissection of nine agronomic traits in Tokachi nagaha and its derived cultivars in soybean (Glycine max (L.) Merr.). Liu, Zhangxiong,Li, Huihui,Li, Yinghui,Guan, Rongxia,Guo, Yong,Chang, Ruzhen,Qiu, Li-Juan,Fan, Xuhong,Wang, Shuming,Huang, Wen,Yang, Jiyu,Wen, Zixiang,Wang, Dechun,Chen, Pengyin.

[20]Detection of Hirsutella spp. and Pasteuria sp parasitizing second-stage juveniles of Heterodera glycines in soybean fields in China. Ma, R,Liu, XZ,Jian, H,Li, SD. 2005

作者其他论文 更多>>