[1] DANIEL M J,JONATHAN G,LYTTON J M.Parasitic Orobanchaceae:Parasitic Mechanisms and Control Strategies[M].London:Springer-Verlag Berlin Heidelberg,2013. [2] 石必显,张键,顾元国,等.ISSR标记揭示我国向日葵列当群体的遗传多样性[J].中国油料作物学报,2019,41(4):629-637. [3] 马永清,董淑琦,任祥祥,等.列当杂草及其防除措施展望[J].中国生物防治学报,2012,28(1):133-138. [4] 张治家,白全江,曹丽霞,等.优质向日葵种质资源抗山西不同区域向日葵列当研究[J].山西农业科学,2012,40(2):153-155. [5] 吴海荣,强胜.检疫杂草列当(Orobanche L.)[J].杂草科学,2006(2):58-60. [6] 白全江,云晓鹏,杜磊,等.抗除草剂新品种防除向日葵列当用药技术研究[J].北方农业学报,2018,46(4):77-81. [7] 崔超,王靖,王海伟,等.不同类型向日葵品种产量及其相关性状差异性研究[J].北方农业学报,2019,47(1):1-6. [8] 陈滔. 巴彦淖尔市主要经济作物比较优势研究[D].呼和浩特:内蒙古农业大学,2017. [9] 王学全,高前兆,卢琦.内蒙古河套灌区水资源高效利用与盐渍化调控[J].干旱区资源与环境,2005(6):120-125. [10] 白全江,云晓鹏,高占明,等.内蒙古向日葵列当发生危害及其防治技术措施[J].内蒙古农业科技,2013(1):75-76. [11] MORAL J,LOZANO-BAENA M D,RUBIALES D.Temperature and water stress during conditioning and incubation phase affecting Orobanche crenata seed germination and radicle growth[J].Frontiers in Plant Science,2015,6:408. [12] GIBOT-LECLERC S,CORBINEAU F,SALLÉ G,et al.Responsiveness of Orobanche ramosa L. seeds to GR24 as related to temperature,oxygen availability and water potential during preconditioning and subsequent germination[J].Plant Growth Regular,2004,43:63-71. [13] 石必显,徐东升,吴元柱,等.土壤条件对向日葵列当寄生的影响[J].西北植物学报,2018,38(9):1717-1721. [14] 宋文坚,金宗来,曹栋栋,等.寄生植物种子萌发特异性及其与寄主的识别机制[J].应用生态学报,2006(2):335-339. [15] HARRO J B,RADOSLAVA M,SUN Z K,et al.Secondary metabolite signalling in host-parasitic plant interactions[J].Current Opinion in Plant Biology,2003,6(4):358-364. [16] 冯丹,陈贵林.独脚金内酯调控侧枝发育的研究进展[J].生态学杂志,2011,30(2):349-356. [17] BERGMANN C,WEGMANN K,FRISCHMUTH K,et al.Stimulation of Orobanche crenata seed germination by (+)-strigol and structural analogues dependence on constitution and configuration of the germination stimulants[J].Journal of Plant Physiology,1993,142(3):338-342. [18] PARKER C,RICHES C R.Parasitic weeds of the world:biology and control[J].New Phytologist,1994,128(4):809. [19] 黄长权. 向日葵列当寄生机理的研究[D].哈尔滨:东北农业大学,2012. |