1山西省农业科学院旱地农业研究中心/黄土高原东部旱作节水技术国家地方联合工程实验室/有机旱作山西省重点实验室,太原 030031;2农业部黄土高原作物基因资源和种质创制重点实验室,太原030031;3山西省农业科学院高粱研究所,晋中 030600
本研究由山西省农业科学院优势课题组自选项目(YYS1705);有机旱作山西省重点实验室(201805D111015);山西省重点研发计划重点项目(201703D211010);山西省农业科学院特色农业技术攻关项目(YGG17016)
1Dryland Agriculture Research Center, Shanxi Academy of Agricultural Sciences/National local joint engineering laboratory of water-saving techniques for dry farming in the eastern Loess Plateau/ Organic dry farming of Shanxi Province key laboratory, Taiyuan 030031;2Key Laboratory of Crop Gene Resources and Germplasm Enhancement on Loess Plateau, Ministry of Agriculture, Taiyuan 030031;3Sorghum Institute of Shanxi Academy of Agricultural Sciences, Jinzhong 030600
Foundation project:the Optional Project of Advantage Research Group of Shanxi Academy of Agricultural Sciences (YYS1705);Organic dry farming of Shanxi Province key laboratory(201805D111015);the Key Program of KeySResearch and Development Projects of Shanxi province(201703D211010);Characteristic Agricultural Science and Technique Foundation of Shanxi Academy of Agricultural Sciences(YGG17016)
常建忠,董春林,张正,等. SbSBP5基因参与高粱对干旱胁迫的响应[J].植物遗传资源学报,2019,20(5):1301-1308.
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