Acta Agron Sin ›› 2009, Vol. 35 ›› Issue (4): 711-717.doi: 10.3724/SP.J.1006.2009.00711
• TILLAGE & CULTIVATION · PHYSIOLOGY & BIOCHEMISTRY • Previous Articles Next Articles
ZHANG Da-Yong,LI Wen-Bin
| [1] Walz E. Isoflavone and saponin-glucoside in soja hispida. Ann Chem, 1931, 489: 118–155 [2] Kosslak R M, Bookland R, Barkei T. Induction of Bradyrhizobium japonicum common nod genes by isoflavones isblated from Glycine max. Proc Natl Acad Sci USA, 1987, 84: 7428–7432 [3] Graham T L, Kim J E, Graham M Y. Role of constitutive isoflavone conjugates in the accumulation of glyceollin in soybean infected with Phytophthora megasperma. Mol Plant Microbe Interact, 1990, 3: 157–166 [4] Kenis B. The preparation of isoflavones specimen and the clinical utilization of cancer resistance. Soybean Digest, 1993, (9): 26–29 [5] Carrao-Panizzi M C, Kitamura K. Isoflavone content in Brazilian soybean cultivars. Breed Sci, 1995, 45: 295–300 [6] Sun J-M(孙军明), Ding A-L(丁安林), Chang R-Z(常汝镇), Dong H-R(东惠茹). Primary analyse of isoflavones contents in Chinese soybean cultivars. J Chin Cereals Oils Assoc (中国粮油学报), 1995, 10(4): 51–54 (in Chinese with English abstract) [7] Eldridge A, Kwolek W. Soybean isoflavones: Effect of the environment and variety on composition. Agric Food Chem, 1983, 31: 394–396 [8] Wang H J, Murphy P A. Isoflavone composition of American and Japanese soybean in Iowa: Effects of variety, crop year, and location. Agric Food Chem, 1994, 42: 1674–1677 [9] Hoeck J A, Fehr W R, Murphy P A, Welke G A. Influence of genotype and environment on isoflavone contents of soybean. Crop Sci, 2000, 40: 48–51 [10] Sun J-M(孙君明), Ding A-L(丁安林), Shen L-M(沈黎明). Effects of geographical conditions on the accumulation of isoflavones in soybean seeds. Soybean Sci (大豆科学), 1997, 16(2): 298–303 (in Chinese with English abstract) [11] Tsukamoto C, Shimada S, Igita K. Factors isoflavone content in soybean seeds: Changes in isoflavones, saponins, and composition of fatty acids at different temperatures during seed development. J Agric Food Chem, 1996, 43: 1184–1192 [12] Kitamura K, Igita K, Kikuchi A. Low isoflavone content in some early maturing cultivars so-called “Summer type soybean” [Giycine max (L.) Merrill]. Jpn J Breed, 1991, 41: 651–654 [13] Li W-D(李卫东), Liang H-Z(梁慧珍), Lu W-G(卢为国), Wang S-F(王树峰), Yang Q-C(杨青春), Yang C-Y(杨彩云), Liu Y F(刘亚非). Effects of eco-physiological factors on isoflavone contents in soybean seeds. Sci Agric Sin (中国农业科学), 2004, 37(10): 1458–1463 (in Chinese with English abstract) [14] Zhang X-B(张晓波), Wu Y(吴岩), Lin H(林红). Study on method of hydrolyze isoflavone in soybean by HPLC. Cereals Oils (粮食与油脂), 2006, (4): 19–21 (in Chinese with English abstract) [15] Ju X-R(鞠兴荣), Yuan J(袁建), Wang H-F(汪海峰). Determination of isoflavone in extract of soybean by HPLC. J Chin Cereals Oils Assoc (中国粮油学报), 2000, 15(4): 26–29 (in Chinese with English abstract) [16] Sun J-M(孙君明), Ding A-L(丁安林), Chang R-Z(常汝镇). Qualitative-quantitative analysis for inheritance of isoflavone content in soybean seed. Soybean Sci (大豆科学), 1998, 17(4): 305–310(in Chinese with English abstract) [17] Liang H-Z(梁慧珍), Li W-D(李卫东), Cao Y-N(曹颖妮), Wang H(王辉). Genetic effects analysis of isoflavone content in soybean seed. Acta Agron Sin (作物学报), 2006, 32(6): 856–860 (in Chinese with English abstract) [18] Sun J-M(孙君明), Ding A-L(丁安林), Chang R-Z(常汝镇). Genetie analysis on isoflavone content in soybean seeds. Sci Agric Sin (中国农业科学), 2002, 35(1): 16–21 (in Chinese with English abstract) |
| [1] | Zhang Ning-Ning, Teng Yu-Fei, Ren Na-Na, Wei Xing-Zhuo, Yan Shu-Hao, Fan Ke-Xin, Wang Yong-Hong, Chen Wen-Kang, Zhang Xing-Hua, Zhu Wan-Chao, Xu Shu-Tu, Xue Ji-Quan. Phenotypic evaluation and plasticity analysis of drought resistance in 201 maize inbred lines [J]. Acta Agronomica Sinica, 2026, 52(5): 1309-1325. |
| [2] | Zhang Chao, Guo Huan, Li Zhong-Ling, Yue Shu-Ning, Zhao Na. Mapping genes associated with anthocyanin in maize kernels using BSA-seq technology [J]. Acta Agronomica Sinica, 2026, 52(3): 780-789. |
| [3] | JIN Gao-Rui, WU Xiao-Li, DENG Li, CHEN Yu-Ning, YU Bo-Lun, GUO Jian-Bin, DING Ying-Bin, LIU Nian, LUO Huai-Yong, CHEN Wei-Gang, HUANG Li, ZHOU Xiao-Jing, HUAI Dong-Xin, TAN Jia-Zhuang, JIANG Hui-Fang, REN Li, LEI Yong, LIAO Bo-Shou. Development and characterization of novel peanut genetic stocks with high oleic acid and enhanced resistance both to Aspergillus flavus infection and aflatoxin production [J]. Acta Agronomica Sinica, 2025, 51(3): 687-895. |
| [4] | HU Liang-Liang, ZHOU Hong-Mei, WANG Xiao-Lei, WANG Su-Hua, LI Cai-Ju, WEI Yun-Shan, WANG Li-Xia, CHENG Xu-Zhen, CHEN Hong-Lin. Analysis of genotype × environment interaction and stability of yield-related traits in adzuki bean (Vigna angularis) [J]. Acta Agronomica Sinica, 2025, 51(10): 2581-2594. |
| [5] | YUE Hai-Wang, WEI Jian-Wei, LIU Peng-Cheng, CHEN Shu-Ping, BU Jun-Zhou. Comprehensive evaluation of maize hybrids in the mega-environments of Huanghuaihai plain based on GYT biplot analysis [J]. Acta Agronomica Sinica, 2024, 50(4): 836-856. |
| [6] | YUE Hai-Wang, HAN Xuan, WEI Jian-Wei, ZHENG Shu-Hong, XIE Jun-Liang, CHEN Shu-Ping, PENG Hai-Cheng, BU Jun-Zhou. Comprehensive evaluation of maize hybrids tested in Huang-Huai-Hai summer maize regional trial based on GYT biplot analysis [J]. Acta Agronomica Sinica, 2023, 49(5): 1231-1248. |
| [7] | XU Nai-Yin, WANG Yang, WANG Dan-Tao, NING He-Jia, YANG Xiao-Ni, QIAO Yin-Tao. Construction of cotton fiber quality index and weighted genotype by trait (WGT) biplot analysis [J]. Acta Agronomica Sinica, 2023, 49(5): 1262-1271. |
| [8] | YAN Weikai. A critical review on the principles and procedures for cultivar development and evaluation [J]. Acta Agronomica Sinica, 2022, 48(9): 2137-2154. |
| [9] | WU Bing-Hui, WANG Gui-Ping, WANG Yu-Bin, LI Zhao-Hu, ZHANG Ming-Cai. Regulation of ACC treatment on nitrogen supply response of maize seedlings with different genotypes [J]. Acta Agronomica Sinica, 2021, 47(5): 799-806. |
| [10] | XU Nai-Yin, ZHAO Su-Qin, ZHANG Fang, FU Xiao-Qiong, YANG Xiao-Ni, QIAO Yin-Tao, SUN Shi-Xian. Retrospective evaluation of cotton varieties nationally registered for the Northwest Inland cotton growing regions based on GYT biplot analysis [J]. Acta Agronomica Sinica, 2021, 47(4): 660-671. |
| [11] | LI Wei-Tao,XU Zhi-Jun,CAI Yan,GUO Jian-Bin,YU Bo-Lun,HUANG Li,CHEN Yu-Ning,ZHOU Xiao-Jing,LUO Huai-Yong,LIU Nian,CHEN Wei-Gang,REN Xiao-Ping,JIANG Hui-Fang. Development of novel peanut genotypes with resistance to bacterial wilt disease, large pod, and high shelling percentage [J]. Acta Agronomica Sinica, 2020, 46(4): 484-490. |
| [12] | JIN Xin-Xin,YAO Yan-Rong,JIA Xiu-Ling,YAO Hai-Po,SHEN Hai-Ping,CUI Yong-Zeng,LI Qian. Effects of genotype and environment on wheat yield, quality, and nitrogen use efficiency [J]. Acta Agronomica Sinica, 2019, 45(4): 635-644. |
| [13] | ZHONG Si-Rong,CHEN Ren-Xiao,TAO Yao,GONG Si-Yu,HE Kuan-Xin,ZHANG Qi-Ming,ZHANG Shi-Chuan,LIU Qi-Yuan. Screening of Tobacco Genotypes with Tolerance to Low-Nitrogen and Analysis of Their Nitrogen Efficiency [J]. Acta Agron Sin, 2017, 43(07): 993-1002. |
| [14] | XIE Hui,DANG Xiao-Jing,LIU Er-Bao,ZENG Si-Yuan,HONG De-Lin. Identifying SSR Marker Locus Genotypes with Elite Combining Ability for Yield Traits in Backbone Parents of Japonica Hybrid Rice (Oryza sativa L.) in Jianghuai Area [J]. Acta Agron Sin, 2016, 42(03): 330-343. |
| [15] | XIAO Yong-Gui, LI Si-Min, LI Fa-Ji, ZHANG Hong-Yan, CHEN Xin-Min, WANG De-Sen, XIA Xian-Chun, HE Zhong-Hu. Genetic Analysis of Yield and Physiological Traits in Elite Parent Jing 411 and Its Derivatives under Two Fertilization Environments [J]. Acta Agron Sin, 2015, 41(09): 1333-1342. |
|
||