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March 5, 2026Current Microbiology0 citationsOpen Access

Synergism Between Controlled-Release Fertilization and Microbial Bioinputs Modulates the Morphophysiological Quality of Prunus Rootstock Genotypes

JPJoão Antônio ParaginskiMMMariana Poll MoraesNMNewton Alex Mayer

Key Points

  • The aim is to understand how controlled-release fertilizers and microbial bioinputs affect the quality of Prunus rootstock genotypes.
  • Evaluated four peach rootstock genotypes under differing fertilizer doses
  • Inoculated with Trichoderma asperellum and a microbial consortium
  • Conducted longitudinal analysis over 120 days
  • Analyzed effects on morphophysiological traits like leaf area and height
  • Stronger nutrient availability led to better growth and biomass conversion
  • Bacillus-Trichoderma consortium improved growth compared to single inoculation
  • New genotypes showed high phenotypic plasticity under adequate fertilization
  • Inoculation promoted chlorophyll stability until the end of the growth cycle

Abstract

The production of high-quality Prunus seedling rootstocks in soilless systems requires optimizing the interaction between genetics, nutrient availability, and rhizosphere microbiology. This study evaluated the morphophysiological response of four peach rootstock genotypes ('Capdeboscq', "Okinawa Roxo", "NR0060408", and "NR0160305") to inoculation with Trichoderma asperellum and a microbial consortium (Bacillus amyloliquefaciens + Trichoderma harzianum), under contrasting doses of controlled-release fertilizer (0 and 4 g dm- 3 of CRF). Longitudinal analysis (0-120 days) demonstrated that nutrient availability is the primary limiting factor; microbial bioinputs did not compensate for the absence of fertilization due to the metabolic cost of symbiosis. However, under nutrient sufficiency (4 g dm- 3), strong synergism was observed. The new selections ("NR0060408" and "NR0160305") exhibited high phenotypic plasticity, maximizing the conversion of biostimulation into shoot biomass and outperforming the "Okinawa Roxo" genotype, which displayed a conservative growth strategy. The Bacillus-Trichoderma consortium was superior to single inoculation in responsive genotypes, potentiating seedling leaf area and height. Furthermore, inoculation promoted the "stay-green" effect, maintaining chlorophyll index stability until the end of the cycle. It is concluded that the use of bioinputs, especially in a consortium, acts as a metabolic catalyst in responsive genotypes, but their efficacy depends on adequate basal nutritional management.

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Cite This Study

Paraginski et al. (2026) studied this question.

synapsesocial.com/papers/69a91d9bd6127c7a504c08achttps://doi.org/10.1007/s00284-026-04793-6
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