首页> 外文期刊>Journal of Agricultural Biotechnology and Sustainable Development >Effectiveness of arbuscular mycorrhizal fungi in protection of maize (Zea mays L.) against witchweed (Striga hermonthica Del Benth) infestation
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Effectiveness of arbuscular mycorrhizal fungi in protection of maize (Zea mays L.) against witchweed (Striga hermonthica Del Benth) infestation

机译:丛枝菌根真菌对玉米(Zea mays L.)侵害菜草(Striga hermonthica Del Benth)侵染的有效性

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Striga hermonthica?is one of the most important obligate root hemiparasitic weeds of cereals such as maize and sorghum. This study investigated the impact of arbuscular mycorrhizal fungi (AMF) on theStriga-maize host interaction and its potential application in management of?Striga?infestation. Two maize varieties:?Striga-susceptible Nyamilambo and?Striga-tolerant KSTP94; three species of AMF;?Glomus etunicatum,?Scutellospora fulgida,?Gigaspora margarita?and?Striga hermonthica?seeds were used in a greenhouse experiment. Colonization of maize roots was fastest with?Glomus?spp. (51.98%) than other AMF species; however,?Striga?infestation reduced root colonization but conversely increased relative mycorrhizal dependency (Glomus?spp. = 6.12%) in both maize cultivars. Inoculation of Nyamilambo maize cultivars with AMF reduced?Striga?plant incidence (9.50) and biomass (5.40 g) to significantly lower (4.90 and 3.82 g) levels. Mycorrhizal Nyamilambo and KSTP94 had higher nitrogen (154.01 and 116.88 mg) and phosphorus (25.33 and 31.07 mg) content compared to non-mycorrhizal cultivars (63.37 mg N and 16.81 mg P) in absence and presence of?Striga?infestation. While mycorrhizal maize had increased height (100.50 to 135.20 cm) and biomass (75.70 to 87.54 cm), their?Striga?damage score (4.07) was significantly lower than with non-mycorrhizal maize (8.10).?Glomus?spp. had most significant positive effect compared to both?Gigaspora?and?Scutellospora?spp.?In conclusion,?AMF inhibits germination and reduces growth of?Striga hermonthica?while enhancing maize host growth and development.
机译:牛膝草(Striga hermonthica)是谷物如玉米和高粱的最重要的专性根半寄生杂草之一。本研究调查了丛枝菌根真菌(AMF)对Striga-玉米宿主相互作用的影响及其在管理Striga-侵染中的潜在应用。两种玉米变种:对Striga敏感的Nyamilambo和对Striga耐受的KSTP94;在温室试验中,使用了三种AMF种子:G香、,黄S,玛格丽塔酒和玛格丽塔氏菌种子。用?Glomus?spp对玉米根的定植最快。 (51.98%)比其他AMF种类高;然而,在两个玉米品种中,Striga?侵染减少了根部定植,但反而增加了相对菌根依赖性(Glomus?spp。= 6.12%)。 Nyamilambo玉米品种的AMF接种降低了杂类植物的发病率(9.50)和生物量(5.40 g),大大降低了(4.90和3.82 g)水平。在没有和没有Striga?侵染的情况下,与非菌根品种(63.37 mg N和16.81 mg P)相比,菌根Nyamilambo和KSTP94具有更高的氮(154.01和116.88 mg)和磷(25.33和31.07 mg)含量。菌根玉米的高度增加了(100.50至135.20 cm),生物量增加了(75.70至87.54 cm),但其菌丝断裂损伤评分(4.07)显着低于非菌根玉米(8.10)。与Gigaspora和Scutellospora spp相比,它们具有最显着的积极作用。总之,AMF抑制发芽并降低了Striga hermonthica的生长,同时增强了玉米寄主的生长发育。

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