参考文献/References:
[1]杨如萍,宋雯雯,韦瑛,等. 甘肃省大豆品种生育期组的划分及地理分布研究[J]. 植物遗传资源学报,2021,22(2):349-360.
[2]LIN X Y, LIU B H, WELLER J L, et al. Molecular mechanisms for the photoperiodic regulation of flowering in soybean[J]. Journal of Integrative Plant Biology,2021,63(6):981-994.
[3]WU T T, LU S J, CAI Y P, et al. Molecular breeding for improvement of photothermal adaptability in soybean[J]. Molecular Breeding,2023,43(8):60.
[4]XIA Z J, WATANABE S, YAMADA T, et al. Positional cloning and characterization reveal the molecular basis for soybean maturity locus E1 that regulates photoperiodic flowering[J]. Proceedings of the National Academy of Sciences of the United States of America,2012,109(32):E2155-E2164.
[5]WATANABE S, HIDESHIMA R, XIA Z J, et al. Map-based cloning of the gene associated with the soybean maturity locus E3[J]. Genetics,2009,182(4):1251-1262.
[6]WATANABE S, XIA Z J, HIDESHIMA R, et al. A map-based cloning strategy employing a residual heterozygous line reveals that the GIGANTEA gene is involved in soybean maturity and flowering[J]. Genetics,2011,188(2):395-407.
[7]LIU B H, KANAZAWA A, MATSUMURA H, et al. Genetic redundancy in soybean photoresponses associated with duplication of the phytochrome A gene[J]. Genetics,2008,180(2):995-1007.
[8]DISSANAYAKA A, RODRIGUEZ T O, DI S K, et al. Quantitative trait locus mapping of soybean maturity gene E5[J]. Breeding Science,2016,66(3):407-415.
[9]NISSAN N, COBER E R, SADOWSKI M, et al. Identifying new variation at the J locus,previously identified as e6,in long juvenile ‘Paranagoiana’ soybean[J]. Theoretical and Applied Genetics,2021,134(4):1007-1014.
[10]COBER E R, VOLDENG H D. A new soybean maturity and photoperiod-sensitivity locus linked to E1 and T[J]. Crop Science,2001,41(3):698-701.
[11]COBER E R, MOLNAR S J, CHARETTE M, et al. A new locus for early maturity in soybean[J]. Crop Science,2010,50(2):524-527.
[12]KONG F J, NAN H Y, CAO D, et al. A new dominant gene E9 conditions early flowering and maturity in soybean[J]. Crop Science,2014,54(6):2529-2535.
[13]SAMANFAR B, MOLNAR S J, CHARETTE M, et al. Mapping and identification of a potential candidate gene for a novel maturity locus,E10,in soybean[J]. Theoretical and Applied Genetics,2017,130(2):377-390.
[14]WANG F F, NAN H Y, CHEN L Y, et al. A new dominant locus,E11,controls early flowering time and maturity in soybean[J]. Molecular Breeding,2019,39(5):70.
[15]LU S J, ZHAO X H, HU Y L, et al. Natural variation at the soybean J locus improves adaptation to the tropics and enhances yield[J]. Nature Genetics,2017,49:773-779.
[16]TANG Y, LU S J, FANG C, et al. Diverse flowering responses subjecting to ambient high temperature in soybean under short-day conditions[J]. Plant Biotechnology Journal,2023,21(4):782-791.
[17]WANG L S, LI H Y, HE M L, et al. GIGANTEA orthologs,E2 members,redundantly determine photoperiodic flowering and yield in soybean[J]. Journal of Integrative Plant Biology,2023,65(1):188-202.
[18]TSUBOKURA Y, WATANABE S, XIA Z J, et al. Natural variation in the genes responsible for maturity loci E1,E2,E3 and E4 in soybean[J]. Annals of Botany,2014,113(3):429-441.
[19]TSUBOKURA Y, MATSUMURA H, XU M L, et al. Genetic variation in soybean at the maturity locus E4 is involved in adaptation to long days at high latitudes[J]. Agronomy,2013,3(1):117-134.
[20]TARDIVEL A, SONAH H, BELZILE F, et al. Rapid identification of alleles at the soybean maturity gene E3 using genotyping by sequencing and a haplotype-based approach[J]. The Plant Genome,2014,7(2):1-9.
[21]ZHAI H, LYU S X, WANG Y Q, et al. Allelic variations at four major maturity E genes and transcriptional abundance of the E1 gene are associated with flowering time and maturity of soybean cultivars[J]. PLoS One,2014,9(5):e97636.
[22]LI J C, WANG X B, SONG W W, et al. Genetic variation of maturity groups and four E genes in the Chinese soybean mini core collection[J]. PLoS One,2017,12(2):e0172106.
[23]JIANG B J, NAN H Y, GAO Y F, et al. Allelic combinations of soybean maturity Loci E1,E2,E3 and E4 result in diversity of maturity and adaptation to different latitudes[J]. PLoS One,2014,9(8):e106042.
[24]KURASCH A K, HAHN V, LEISER W L, et al. Identification of mega-environments in Europe and effect of allelic variation at maturity E loci on adaptation of European soybean[J]. Plant,Cell & Environment,2017,40(5):765-778.
[25]ABUGALIEVA S, DIDORENKO S, ANUARBEK S, et al. Assessment of soybean flowering and seed maturation time in different latitude regions of Kazakhstan[J]. PLoS One,2016,11(12):e0166894.
[26]LANGEWISCH T, LENIS J, JIANG G L, et al. The development and use of a molecular model for soybean maturity groups[J]. BMC Plant Biology,2017,17(1):91.
[27]YERZHEBAYEVA R, DIDORENKO S, AMANGELDIYEVA A, et al. Marker-assisted selection for early maturing E loci in soybean yielded prospective breeding lines for high latitudes of northern Kazakhstan[J]. Biomolecules,2023,13(7):1146.
[28]刘月,齐广勋,桑永生,等. 山东省3个野生大豆居群生育期基因遗传多样性分析[J]. 植物遗传资源学报,2020,21(3):560-567.
相似文献/References:
[1]刘朝茂,李成云.玉米与大豆间作对玉米叶片衰老的影响[J].江苏农业学报,2017,(02):322.[doi:doi:10.3969/j.issn.1000-4440.2017.02.013]
LIU Chao-mao,LI Cheng-yun.Effects of maize/soybean intercropping on maize leaf senescence[J].,2017,(11):322.[doi:doi:10.3969/j.issn.1000-4440.2017.02.013]
[2]张令瑄,谢婷婷,王瑾,等.大田条件下UV-B 辐射增强对大豆根际土壤相关指标的影响[J].江苏农业学报,2016,(01):118.[doi:10.3969/j.issn.1000-4440.2016.01.018]
ZHANG Ling-xuan,XIE Ting-ting,WANG Jin,et al.Soybean rhizosphere soil parameters in response to enhanced UV-B radiation under field condition[J].,2016,(11):118.[doi:10.3969/j.issn.1000-4440.2016.01.018]
[3]宁丽华,何晓兰,张大勇.大豆耐盐相关基因GmNcl1功能标记的开发及验证[J].江苏农业学报,2017,(06):1227.[doi:doi:10.3969/j.issn.1000-4440.2017.06.005]
NING Li-hua,HE Xiao-lan,ZHANG Da-yong.Development and validation of the function marker of soybean salt tolerance gene GmNcl1[J].,2017,(11):1227.[doi:doi:10.3969/j.issn.1000-4440.2017.06.005]
[4]杨艳丽,杨勇,李大红,等.转桃PpCuZnSOD基因大豆的耐旱性[J].江苏农业学报,2018,(05):978.[doi:doi:10.3969/j.issn.1000-4440.2018.05.003]
YANG Yan-li,YANG Yong,LI Da-hong,et al.Drought tolerance of transgenic soybean with PpCuZnSOD gene[J].,2018,(11):978.[doi:doi:10.3969/j.issn.1000-4440.2018.05.003]
[5]闫会,张允刚,刘亚菊,等.生育期对徐紫薯8号品质及结薯性的影响[J].江苏农业学报,2019,(01):9.[doi:doi:10.3969/j.issn.1000-4440.2019.01.002]
YAN Hui,ZHANG Yun-gang,LIU Ya-ju,et al.Effects of growth stage on quality and tuber traits of new sweet potato cultivar Xuzishu8[J].,2019,(11):9.[doi:doi:10.3969/j.issn.1000-4440.2019.01.002]
[6]孙彦坤,陈睿,李静,等.不同降雨年型下反枝苋和大豆光合特征的比较[J].江苏农业学报,2019,(03):554.[doi:doi:10.3969/j.issn.1000-4440.2019.03.008]
SUN Yan-kun,CHEN Rui,LI Jing,et al.Comparison of photosynthetic characteristics between Amaranthus retroexus and Glycine max under different annual rainfall pattern[J].,2019,(11):554.[doi:doi:10.3969/j.issn.1000-4440.2019.03.008]
[7]曹媛媛,陈春,郭婷婷,等.亲和性促生菌DW12-L的定殖及其对大豆生长的影响[J].江苏农业学报,2019,(04):776.[doi:doi:10.3969/j.issn.1000-4440.2019.04.004]
CAO Yuan yuan,CHEN Chun,GUO Ting ting,et al.Colonization of soybean affinity rhizobacteria strain DW12-L and its effects on soybean growth[J].,2019,(11):776.[doi:doi:10.3969/j.issn.1000-4440.2019.04.004]
[8]丁俊男,于少鹏,李鑫,等.生物炭对大豆生理指标和农艺性状的影响[J].江苏农业学报,2019,(04):784.[doi:doi:10.3969/j.issn.1000-4440.2019.04.005]
DING Jun nan,YU Shao peng,LI Xin,et al.Effects of biochar application on soybean physiological indices and agronomic traits[J].,2019,(11):784.[doi:doi:10.3969/j.issn.1000-4440.2019.04.005]
[9]单捷,孙玲,王志明,等.GF-1影像遥感监测指标与冬小麦长势参数的关系[J].江苏农业学报,2019,(06):1323.[doi:doi:10.3969/j.issn.1000-4440.2019.06.008]
SHAN Jie,SUN Ling,WANG Zhi-ming,et al.Relationship between remote sensing monitoring indices and growth parameters in winter wheat based on GF-1 images[J].,2019,(11):1323.[doi:doi:10.3969/j.issn.1000-4440.2019.06.008]
[10]曹帅,杜仲阳,刘鹏,等.碱胁迫对大豆光合特性及内源激素含量的影响[J].江苏农业学报,2020,(02):284.[doi:doi:10.3969/j.issn.1000-4440.2020.02.005]
CAO Shuai,DU Zhong-yang,LIU Peng,et al.Effects of alkaline stress on photosynthetic characteristics and endogenous hormone contents of soybean[J].,2020,(11):284.[doi:doi:10.3969/j.issn.1000-4440.2020.02.005]