Studies on the rhizosphere microflora of onion plants in relation to temperature changes
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Summary
Contrary to expectation the greatest rhizosphere effect did not occur at the optimum temperature for growth of the onions, and the ammonifying bacteria were greatly increased in the Rhizosphere of plants grown at 25°C.
- Type
- article
- Published
- 1973-05-01
- Cited by
- 5
- References
- 10
- OpenAlex
- https://openalex.org/W2094369051
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:86687360
Keywords
Rhizosphere, Bacteria, Biology, Botany, Bulk soil
References
- Onions and their allies : botany, cultivation, and utilization
- The Isolation of S-Methylcysteine-sulphoxide and S-n-Propylcysteine-sulfoxide from Onion (Allium cepa) and the Antibiotic Activity of Crushed Onion.
- Interactions between plant roots and soil microorganisms.
- THE INTERACTION OF HIGHER PLANTS AND SOIL MICRO-ORGANISMS: I. MICROBIAL POPULATION OF RHIZOSPHERE OF SEEDLINGS OF CERTAIN CULTIVATED PLANTS
- The aerobic heterotrophic bacteria of two New Zealand soils
- USE OF ACID, ROSE BENGAL, AND STREPTOMYCIN IN THE PLATE METHOD FOR ESTIMATING SOIL FUNGI
- MICROBIOLOGICAL STUDIES OF SOME SUBANTARCTIC SOILS
- STUDIES ON THE INCIDENCE OF CERTAIN PHYSIOLOGICAL GROUPS OF BACTERIA IN THE RHIZOSPHERE
- MICROORGANISMS IN THE ROOT ZONE IN RELATION TO TEMPERATURE
- Soil and Plant Analysis
- Soil and Plant Analysis
Cited by
- The effect of elevated CO2 concentration and soil pH on the relationship between plant growth and rhizosphere denitrification potential
- Elevated atmospheric CO2 effects on seedling growth, nutrient uptake, and rhizosphere bacterial populations ofLiriodendron tulipifera L.
- The effect of elevated CO 2 concentration and soil pH on the relationship between plant growth and rhizosphere denitrification potential
- Responses of soil biota to elevated atmospheric carbon dioxide
- Bioprospecting of microbial agents and their metabolites as potential inhibitors of Phytophthora cinnamomi, the causal agent of avocado root rot
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