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Effects of soil pasteurization on root rot, seedling survival and plant dry weight of subterranean clover inoculated with six fungal root pathogens

机译:土壤巴氏消毒对接种六种真菌根系病原菌的地下三叶草根腐病,幼苗存活和植物干重的影响

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Subterranean clover was exposed to two levels of inoculum of millet seed colonized by Fusarium avenaceum, Fusarium oxysporum, Phoma medicaginis, Phytophthora clandestina, Pythium irregulare, or Rhizoctonia solani within pasteurized and unpasteurized field soil from sites with (root rot site) and without (virgin site) a history of subterranean clover root rot at Augusta, W.A., with the aim of establishing their pathogenicity in the presence of other soil organisms including resident pathogens. Introduction of F. avenaceum (2.5% w/w), P. clandestina (0.5 and 2.5%), P. irregulare (0.5 and 2.5%), or R. solani (0.2 and 1.0%) increased damage to tap and lateral roots of subterranean clover in pasteurized and unpasteurized root rot and virgin soils. All fungi tested, with the exception of P. medicaginis (2.0 and 10.0%) or P. medicaginis (2.0 and 10.0%) and F. oxysporum (0.5 and 2.50%), caused reduction of seedling survival in pasteurized root rot and virgin soils respectively. When the soil was unpasteurized, all fungi except F. oxysporum (2.5%) and P. medicaginis (2.0 and 10*0%) in virgin soil, but only P. irregulare (2.5%) or R. solani (0.2 and 1.0%) in root rot soil, reduced seedling survival. In unpasteurized soils plant dry weight was reduced by P. clandestina (2.5%), P. irregulare (0.5 and 2.5%), or R. solani (0.2 and 1.0%) in root rot and virgin soils, but F. oxysporum (0.5%) reduced plant size only in the root rot soil. Within pasteurized soil all fungi, with the exception of P. medicaginis (2.0 and 10.0%) in virgin soil and F. avenaceum (2.5%), P. irregulare (0.5 and 2.5%), or R. solani (0.2%) in root rot soil, caused reduction in plant size. P. clandestina, P. irregulare or R. solani, in particular, and to a lesser extent, P. avenaceum, are capable of causing serious damage to subterranean clover in natural soil.
机译:地下三叶草暴露于两种水平的小米种子接种物,这些接种物由(Farrotgin和站点)在华盛顿州奥古斯塔的地下三叶草根腐病的历史,目的是在存在其他土壤生物(包括病原体)的情况下确定其致病性。引入金黄色葡萄球菌(2.5%w / w),隐孢子虫(P. clandestina)(0.5和2.5%),不规则鳞茎(0.5。2.5%)或茄形假单胞菌(R. solani)(0.2和1.0%)会增加对自来水和侧根的伤害巴氏消毒和未巴氏消毒的根腐病和原始土壤中的三叶草除P. medicaginis(2.0和10.0%)或P. medicaginis(2.0和10.0%)和F. oxysporum(0.5和2.50%)外,所有测试的真菌均导致巴氏灭菌的根腐病和原始土壤中的幼苗存活率降低分别。当土壤未经巴氏杀菌处理时,原始土壤中除尖孢镰刀菌(2.5%)和药用假单胞菌(2.0和10 * 0%)之外的所有真菌,但不规则假单胞菌(2.5%)或茄形假单胞菌(0.2%和1.0%) )在根腐土壤中,减少了幼苗的存活。在未经巴氏消毒的土壤中,根腐病和原生土壤中的桔梗假单胞菌(2.5%),不规则假单胞菌(0.5%和2.5%)或茄形假单胞菌(0.2%和1.0%)降低了植物的干重,而尖孢镰刀菌减少了0.5%。 %)仅在根腐土壤中减少植物大小。在巴氏消毒的土壤中,所有真菌,原始土壤中的药用假单胞菌(2.0%和10.0%)和文氏假单胞菌(2.5%),不规则假单胞菌(0.5%和2.5%)或茄形假单胞菌(0.2%)除外。根腐烂的土壤,导致植株缩小。特别地,P.clandestina,P.normale或R.solani,以及在较小程度上,P。avenaceum,能够严重破坏天然土壤中的地下三叶草。

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    《Crop and Pasture Science》 |1987年第2期|p.317-327|共11页
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  • 入库时间 2022-08-17 23:29:09

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