The starter effect of non-symbiotic microbial bioproducts on wheat.

R. Vidican, V. Stoian, I. Rotar, F. Păcurar
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Abstract

Microbial groups developed in the rhizosphere ensure the stability and dynamics of nutrient transfer processes to plants. Additional soil inoculation with rhizospheric bacteria acts to expand the ecological niche, supplements the activity, the number of individuals and promote plant growth. In today’s agriculture, there is a need for the usage of rhizosphere microflora and integrative approaches to stimulate plant growth. The aim of the study is to evaluate the use of biofertilizers as starter stimulators in autumn wheat. Different concentrations of Bactofil, containing rhizospheric bacteria, were applied in small rhizothrones. Evaluation of relationships between bacterial inoculum and plant reveals the degree of applicability and adaptation to the soil conditions of exogenous microflora. Doses of 15.6 x 108 and 20.8 x 108 cells/m2 stimulates the root elongation and higher level of mycorrhization. Bioproducts can be viable solutions to stimulate the initial development of wheat plants.
非共生微生物制品对小麦的发酵剂效应。
根际微生物群的发育保证了养分向植物转移过程的稳定性和动态性。在土壤中额外接种根际细菌,可以扩大生态位,补充活性和个体数量,促进植物生长。在当今的农业中,需要利用根际微生物区系和综合方法来刺激植物生长。本研究的目的是评价生物肥料在秋小麦上作为发酵剂的应用。不同浓度的含有根际细菌的Bactofil在小根茎上施用。细菌接种量与植物之间关系的评价揭示了外源菌群对土壤条件的适用性和适应程度。15.6 × 108和20.8 × 108细胞/m2的剂量刺激根伸长和更高水平的菌根化。生物制品可能是刺激小麦植株初期发育的可行解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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