首页> 外文OA文献 >Resistance to Leptosphaeria maculans (phoma stem canker) in Brassica napus (oilseed rape) induced by Leptosphaeria biglobosa and chemical defence activators in field and controlled environments
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Resistance to Leptosphaeria maculans (phoma stem canker) in Brassica napus (oilseed rape) induced by Leptosphaeria biglobosa and chemical defence activators in field and controlled environments

机译:大黄夹竹草(Leptosphaeria biglobosa)诱导的甘蓝型油菜(油菜)中的Leptosphaeria maculans(phoma stem canker)和化学防御活化剂在田间和受控环境中的抗性

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摘要

Effects of pretreatment of Brassica napus leaves with ascospores of Leptosphaeria biglobosa or chemical defence activators [acibenzolar-S-methyl (ASM) or menadione sodium bisulphite (MSB)] on infection by ascospores of Leptosphaeria maculans (phoma stem canker) and development of disease were studied in controlled-environment (phoma leaf spot) and field (phoma leaf spot and stem canker) experiments. In controlled-environment experiments, pretreatment of oilseed rape leaves (cv. Madrigal) with L. biglobosa, ASM or MSB delayed the appearance of L. maculans phoma leaf spot lesions. These pretreatments also decreased the phoma leaf spot lesion area in both pretreated leaves (local effect) and untreated leaves (systemic effect). In winter oilseed rape field experiments in the 2002/03 and 2003/04 growing seasons, pretreatment with L. biglobosa or ASM in October/November decreased not only the number of phoma leaf spot lesions per leaf caused by L. maculans in autumn/winter, but also the severity of phoma stem canker in the subsequent spring/summer. Effects were greater in 2002/03 (when natural L. maculans ascospore release began in September 2002) than in 2003/04 (when ascospore release began in December following a period of dry weather in August/September 2003). These results suggest that pretreatment with biological or chemical defence activators can induce local and systemic resistance to L. maculans, with both short-term effects on the development of phoma leaf spotting and long-term effects on the development of stem canker 8 months later.
机译:用大球隐孢子虫的子囊孢子或化学防御激活剂[acibenzolar-S-甲基(ASM)或甲萘醌亚硫酸氢钠(MSB)]预处理甘蓝型油菜叶片对黄斑狼疮杆菌的孢子孢子感染(phoma stem canker)的影响在受控环境(植物叶片斑点)和田间(植物叶片斑点和茎溃疡病)实验中进行了研究。在可控环境实验中,用大叶艾美氏球菌,ASM或MSB预处理油菜油菜叶片(麦德里格(Cad。Madrigal))可延迟黄斑艾美氏菌phoma叶斑病的出现。这些预处理还减少了预处理叶片(局部效应)和未处理叶片(全身效应)中的phoma叶斑病变面积。在2002/03和2003/04生长季节的冬季油菜田试验中,在10月/ 11月用大叶劳森氏菌或ASM进行预处理不仅减少了秋/冬由黄斑狼疮引起的每片叶的生叶斑病病斑数量。 ,而且在随后的春季/夏季还会发生茎秆溃疡病的严重性。在2002/03年(当2002年9月开始天然黄斑狼疮子囊孢子释放时)的影响要大于2003/04年(当2003年8月/ 9月处于干燥天气后12月开始子囊孢子释放时)的影响。这些结果表明,用生物或化学防御激活剂进行的预处理可诱导对斑节对虾的局部和全身抗性,对生叶斑点的短期影响和对8月后茎溃疡病的长期影响。

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