[1] |
Haixia LIU, Yinhui ZHANG, Lei ZHUANG, Mengjiao GUO, Li ZHAO, Meijuan WU, Jian HOU, Tian LI, Hongxia LIU, Xueyong ZHANG, Chenyang HAO.
Discovering of Candidate Genes for Wheat SDS-Sedimentation Value Using Association Study and Development of KASP Marker
[J]. Journal of Agricultural Science and Technology, 2024, 26(12): 18-29.
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[2] |
Nali XU, Huixia YU, Mingming YAO, Yanqing WANG, Qingfeng LI, Caixia LIU, Gang SUN, Jiajing CHEN, Jiaohui LONG, Zhangjun WANG.
Analysis of Genetic Diversity Based on SSR and SRAP Markers and Agronomic Traits of Wheat Resources
[J]. Journal of Agricultural Science and Technology, 2023, 25(3): 30-46.
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[3] |
Ruixia WANG, Xiaoling ZHAI, Yugang LI, Qiuhuan MU, Yingying SUN, Xianyin SUN, Yong MI, Guangde LYU, Hongmei GE, Zhaoguo QIAN.
Genetic Composition of Taishan 22 Using High-density 90K SNP Array
[J]. Journal of Agricultural Science and Technology, 2022, 24(4): 21-29.
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[4] |
Jun XU, Ting LI, Minjun HU, Yugen JIANG, Huili YAN, Wenxiu XU, Yijun YU, Zhenyan HE.
Development and Utilization of KASP Marker LCd-38 for Cadmium Accumulation in Rice Grain
[J]. Journal of Agricultural Science and Technology, 2022, 24(3): 40-47.
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[5] |
Yifan SUN, Zhilei HUANG, Baochun LI, Lirong YAO, Juncheng WANG, Erjing SI, Ke YANG, Yaxiong MENG, Xiaole MA, Huajun WANG.
Evaluation of Resistance to Spot Blotch in Core Germplasm Resources
[J]. Journal of Agricultural Science and Technology, 2022, 24(11): 43-54.
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[6] |
Xiaoqian MA, Tao YANG, Quan ZHANG, Hongliang ZHANG.
Development Status and Prospect of Rice New Breeding Technology
[J]. Journal of Agricultural Science and Technology, 2022, 24(1): 24-30.
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[7] |
DUAN Min1, XIE Liujie1, ZHU Yajun2, HUANG Shanjun1, PAN Xiaobiao1*, XU Jianlong2,3*.
salt tolerance; survival rate; SSR molecular marker; quantitative trait locus; genetic linkage mapQTL Mapping of Seedling Survival Rate Under Salt Stress in Rice (Oryza sativa L.)
[J]. Journal of Agricultural Science and Technology, 2019, 21(9): 25-35.
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[8] |
ZHAO Yue1,2, ZHANG Shi-lai2, HU Jian3, HUANG Li-yu4, ZHANG Jing2, .
Insect-resistant Rice Cultivar Breeding by Marker-assisted Selection
[J]. Journal of Agricultural Science and Technology, 2016, 18(3): 25-31.
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[9] |
CHEN Xiu-hua, YU Li-juan, LUO Li-ming, CHEN Hong-mei, LIU Li*.
Research Progress on Maize Molecular Marker-assisted Breeding and Marker Development
[J]. Journal of Agricultural Science and Technology, 2016, 18(1): 26-31.
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[10] |
QU Meng-nan1,2§, JIANG Bing-jun2§, LIU Wei2, MA Li-ming2, LIN Kang-xue2, HAN T F.
New Approaches to Molecular Breeding of Soybean
[J]. , 2014, 16(3): 8-13.
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[11] |
KANG Le1, WANG Hai\|yang2*.
Status and Prospect of Agrobiotechnology\|based Breeding in China
[J]. , 2014, 16(1): 16-23.
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[12] |
GUO Hong1, LV Yang2, CHEN Jian\|xing2,3, LI Guang\|peng2*.
Receat Progress and Trend of Molecular Breeding in Beef Cattle
[J]. , 2014, 16(1): 24-31.
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[13] |
DING Guang-da1,2, YANG Mei1,2, LI Xing-mei3, SHI Lei1,2, XU Fang-sen1,2.
Segregation Distortion Analysis of Molecular Markers in RIL Population of Brassica napus
[J]. , 2012, 14(2): 56-61.
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[14] |
HUA Wei, WANG Han-zhong.
Application Prospect of SNP Array in Rapeseed Molecular Breeding
[J]. , 2011, 13(5): 9-12.
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[15] |
HOU Si-yu, ZHANG Rui, ZHANG Xiao, GUO San-dui.
Research Progress on Cytoplasmic Male Sterility and Fertility Restoration in Gossypium hirsutum L.
[J]. , 2010, 12(1): 1-7.
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