Compound fungicide for enhancing wheat salt resistance and preparation method of compound fungicide
A technology of wheat salt tolerance and compound microbial inoculants, applied in the field of microorganisms, can solve the problems of affecting crop nutrient absorption, affecting other ion absorption, difficulty in crop water absorption, etc., saving transportation costs, solving waste of land resources, and good popularization and application. Foreground effect
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Embodiment 1
[0022] A compound microbial agent for enhancing salt tolerance of wheat of the present invention comprises the following strains in parts by mass: 50 parts of Azospirillum, 70 parts of Pseudomonas, 20 parts of Bacillus, 15 parts of Streptomyces, and 35 parts of yeast .
[0023] The azospirillum is composed of Azospirillum brasiliensis, the bacillus is composed of Bacillus thuringiensis, the streptomycete is composed of Streptomyces griseignis, and the yeast is composed of Candida.
[0024] Compared with the experimental results of the control group, after applying the compound microbial bacterial agent in this example, after the wheat was sown for 170 days, the grain weight of each wheat plant increased by 3.4 times compared with the control group, and the tiller number of each wheat plant increased compared with the control group The number of seeds per wheat plant increased by 1.8 times compared with the control group by 4.1 times.
Embodiment 2
[0026] A compound microbial bacterial agent for enhancing the salt tolerance of wheat of the present invention comprises the following bacterial species in parts by mass: 80 parts of Azospirillum, 45 parts of Pseudomonas, 40 parts of Bacillus, 30 parts of Streptomyces, and 20 parts of yeast .
[0027] The Azospirillum consists of Azospirillum adipogenes, the Bacillus consists of Bacillus licheniformis, the Streptomyces consists of Streptomyces nigerogenes, and the yeast consists of Candida.
[0028] Compared with the experimental results of the control group, after applying the compound microbial bacterial agent in this example, after the wheat was sown for 170 days, the grain weight of each wheat plant increased by 3.3 times compared with the control group, and the tiller number of each wheat plant increased compared with the control group The number of seeds per wheat plant increased by 1.9 times compared with the control group by 3.9 times.
Embodiment 3
[0030] A compound microbial agent for enhancing the salt tolerance of wheat of the present invention, the microbial compound bacteria comprises the following bacterial species in parts by mass: 60 parts of Azospirillum, 50 parts of Pseudomonas, 38 parts of Bacillus, actinomycetes 18 parts, yeast 33 parts.
[0031] The azospirillum consists of Azospirillum brasiliensis, the bacillus consists of Bacillus subtilis, the streptomyces consists of avermectin streptomyces, and the yeast Kluyveromyces fragilis consists.
[0032] Compared with the experimental results of the control group, after applying the compound microbial bacterial agent in this example, after the wheat was sown for 170 days, the grain weight of each wheat plant increased by 4.1 times compared with the control group, and the tiller number of each wheat plant increased compared with the control group The number of seeds per wheat plant increased by 2.3 times compared with the control group by 4.1 times.
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