多功能微生物在玉米作物中的应用

Pub Date : 2023-06-01 DOI:10.1590/1983-21252023v36n212rc
D. R. C. Cruz, M. A. Silva, A. Nascente, M. D. de Filippi, E. P. B. Ferreira
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引用次数: 2

摘要

在土壤微生物组的组成中,有许多能够促进植物生长的微生物,即植物促生长微生物。本研究旨在确定多功能微生物单独或联合施用对玉米植株茎部、根系和总生物量、气体交换、宏量营养素含量、产量成分和籽粒产量的影响。实验在温室中进行,采用完全随机设计,重复4次。26个处理包括分离或联合微生物化玉米种子的根杆菌芽孢杆菌sp. (BRM 32109, BRM 32110和BRM 63573),产癌勃氏菌(BRM 32111),假单胞菌sp. (BRM 32112),沙雷氏菌BRM 32113,沙雷氏菌(BRM 32114),巴西偶氮螺旋菌(Ab-V5),偶氮螺旋菌sp. (BRM 63574),分离真菌克林根木霉(BRM 53736),和一个对照处理(不施用微生物)。在第7天和第21天,分别在土壤和植物中进行两次相同处理。单独或组合施用微生物可使玉米生物量增加49%,气体交换量增加30%,宏量营养素含量增加36%,籽粒产量增加33%。分离物BRM 32114、Ab-V5、BRM 32110和BRM 32112以及BRM 32114 + BRM 53736、BRM 63573 + Ab-V5和BRM 32114 + BRM 32110组合对玉米的效益更好,由此可以推断有益微生物的使用显著影响玉米植株的发育。
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Use of multifunctional microorganisms in corn crop
ABSTRACT In the composition of the soil microbiome, there are numerous microorganisms capable of promoting plant growth, better known as plant growth-promoting microorganisms. The study aimed to determine the effects of multifunctional microorganisms, alone or in combination, on shoot, root, and total biomass production, gas exchange, macronutrient content, yield components, and grain yield of corn plants. The experiment was carried out in a greenhouse in a completely randomized design, with four replications. Twenty-six treatments consisted of isolated or combined microbiolization of corn seeds with the rhizobacteria Bacillus sp. (BRM 32109, BRM 32110, and BRM 63573), Burkholderia cepacea (BRM 32111), Pseudomonas sp. (BRM 32112), Serratia marcenses BRM 32113, Serratia sp. (BRM 32114), Azospirillum brasilense (Ab-V5), and Azospirillum sp. (BRM 63574), an isolated of fungus Trichoderma koningiopsis (BRM 53736), and a control treatment (without the application of microorganisms). At seven and 21 days, two more applications of the same treatments were carried out in the soil and the plants, respectively. The microorganisms applied alone or in combination promoted significant increases of 49% in corn plant biomass, 30% in gas exchange, 36% in macronutrient content, and 33% in grain yield. Isolates BRM 32114, Ab-V5, BRM 32110, and BRM 32112 and the combinations BRM 32114 + BRM 53736, BRM 63573 + Ab-V5, and BRM 32114 + BRM 32110 promoted better benefits to corn, allowing us to infer that the use of beneficial microorganisms significantly affects the development of corn plants.
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