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首页> 外文期刊>Journal of Plant Nutrition >EFFECTS OF BIOFERTILIZERS ON MN AND ZN ACQUISITION AND GROWTH OF HIGHER PLANTS: A RHIZOBOX EXPERIMENT
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EFFECTS OF BIOFERTILIZERS ON MN AND ZN ACQUISITION AND GROWTH OF HIGHER PLANTS: A RHIZOBOX EXPERIMENT

机译:生物肥料对高等植物MN,ZN获取和生长的影响:根瘤菌试验

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摘要

Plant disease resistance and susceptibility are greatly influenced by the availability of micronutrients, particularly manganese (Mn) and zinc (Zn). Take-all disease of wheat, caused by a strong Mn oxidizing fungus (Gaeumannomyces graminis var tritici, Ggt), results in a lack of availability of Mn to plants and increases disease severity in wheat. Three commercial Trichoderma harzianum (Vitalin T-50, BioHealth (R)-WSG, and BioHealth (R)-G) and one Bacillus subtilis (Vitalin SP-11) were investigated individually and in combination (Vitalin T-50 and Vitalin SP-11) for growth promotion and Mn/Zn uptake of take-all infected wheat in a rhizobox experiment under greenhouse conditions. Inoculation with Trichoderma and Bacillus biofertilizers did not increase the shoot dry weight and shoot to root ratio, whilst shoot length was significantly increased with Vitalin T-50 and Biohealth-G treatments in the final harvest. Biofertilizers inoculation that significantly (P 0.05) enhanced root surface area and root dry weight were Vitalin T-50, BioHelath-G and combination of Vitalin (T-50 + SP-11). The bulk soil pH was not influenced by biofertilizer inoculation, whereas rhizosphere and rhizoplane soil pH were significantly reduced (0.3 - 0.4 pH scale) in Vitalin (T-50 + SP-11) and BioHealth-G treatments and to a lesser extent by Vitalin T-50 inoculation. Manganese uptake in shoots of wheat exhibited no significant differences among the biofertilizer treatments. On the contrary, Zn uptake was significantly higher in Vitalin T-50, Vitalin (T-50 + SP-11), BioHealth-G, and BioHealth-WSG (47, 64, 44, and 45%, respectively) inoculated plants. Therefore, Vitalin T-50 and Biohealth-G showed better performance in improving plant growth and Zn uptake.
机译:微量元素特别是锰(Mn)和锌(Zn)的可利用性极大地影响了植物的抗病性和敏感性。由强锰氧化性真菌(Gaeumannomyces graminis var tritici,Ggt)引起的小麦全食病,导致植物缺乏锰,增加了小麦的病害严重程度。分别和结合使用了三种哈茨木霉(Vitalin T-50,BioHealth(R)-WSG和BioHealth(R)-G)和一种枯草芽孢杆菌(Vitalin SP-11)。 11)在温室条件下的根际试验中促进所有受感染小麦的生长和Mn / Zn吸收。用木霉菌和芽孢杆菌生物肥料接种不会增加枝干重量和枝根比,而在最终收获期中,用维他命T-50和Biohealth-G处理可以显着增加枝长。显着(P <0.05)增加根表面积和根干重的生物肥料接种是Vitalin T-50,BioHelath-G和Vitalin(T-50 + SP-11)的组合。在Vitalin(T-50 + SP-11)和BioHealth-G处理中,大块土壤的pH值不受生物肥料接种的影响,而根际和根际土壤的pH值显着降低(0.3-0.4 pH范围),而Vitalin则降低了程度T-50接种。小麦芽中锰的吸收在生物肥料处理之间没有显着差异。相反,在接种了Vitalin T-50,Vitalin(T-50 + SP-11),BioHealth-G和BioHealth-WSG(分别为47%,64%,44%和45%)的植物中,锌的吸收显着更高。因此,Vitalin T-50和Biohealth-G在改善植物生长和吸收锌方面表现出更好的性能。

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