Overview
This source page is a mechanical bulk-ingest record for a PDF in the methylmercury infant-formula research pull. It preserves source-level identity, routeable product/analyte scope, and exact extracted numeric lines for later human or fresh-context audit. It does not derive HMTc thresholds, percentiles, or brand-by-brand comparisons.
Key numbers
The worker extracted the full PDF text with layout preservation twice and compared extraction hashes before commit. The following lines are copied from numeric/table-bearing regions of the PDF and retain the source units and wording where legible:
- of action (TAHIRI et al. 2022). Also, microbial inoculants are easy and
- al.2022). The benefits of co-inoculating phosphate-solubilizing PGPR and/or
- (KUMAR et al. 2017). Based on the previous literatures, our study was
- Due to the corona virus in 2020, the research goals had to be changed and
- (2020+2021) at the Soroksár experimental research farm, located at the
- yield (kg/m2), starch content in potato tubers (%), Total phosphorus content
- in potato tubers (mgP kg-1). Also, it observed the symbiosis and the
- o Total phosphorus content (mgP kg-1).
-
- MATERIAL AND METHODS
- 2.1.1. Origin, Growing of the Experimental Seedlings
- Growing (47.28° N, 19. 04° E). At the beginning of March 2019, two sweet potato
- kind of pathogens. The sprouting was waited until they reached the length of 30-
- 40 cm. This stage was reached in the 21th of May 2019, so the seedlings were
- ready to be transplanted. The seedlings were grown in a plastic pot (1.5 L, 11.5
- was used as a growing medium from Latagro Basic Substrat KB2 type (white peat
- 100% (0–10 mm) with specification: pH value (H2O) 6.4; soluble nutrients
- available to the plants: Nitrogen<7 mg/L; Phosphate <7.8 mg/L; Potassium
- 2.1.2. Roots Sampling and Staining
- The roots were sampled on the 8th week after transplanting (end of July
- 2019). After that, the roots were washed by tap water to remove the substrate by
- 2.2. Organic Potato Experiment
- 2020 and 2021. Organic farming methods have been practiced at the trial site for
- area was open field with 1316.25 m2 area divided into 64 experimental plots. A
- size of the experimental plot was 864 m2 plot with inter spacing 22.5 m2. A total
- of 32 experimental plots were created, in which the irrigated area was 432 m2.
- 2.2.2. Applied Treatments of Microbial Inoculates
- treatment had four replicates with a total of 64 plots. Each plot was planted with
- 12 potato tubers. The plots were separated and surrounded by at least two rows of
- were used as shown in Table 1. The treatments were conducted under both
- (https://dcm.green/en/minigran-technology, last accessed on 2024.02.17).
- Table 1. Treatments and types of microorganisms of inoculum mixtures used in
- Pseudomonasbrassicacearu 7.20 2.00E+08 1.60E+10 0.75
- Trichoderma asperelloides A 0.86 1.50E+06 1.00E+09 0.75
- MUCL41833+ Pseudomonas 7.20 2.00E+08 1,60E+10
- brassicacearum 3Re2-7
- 2.2.3. Total Phosphorus Content in the Potato Tubers
- Sciences, Godollo. Potato samples were cut into small pieces, placed in 1-1 Petri
- the MSZ 21470-50:2006 standard (Enviromental testing of soils- Determination
- standards institution, Budapest-Hungary) (HEGEDUS et al. 2017)
- 2.3. Statistical Analysis
- Data analysis was performed with IBM SPSS 25 software version 25.0.
- The normality of the residuals was tested using the ShapiroWilk method (K (74)
Methods (brief)
- The roots were sampled on the 8th week after transplanting (end of July
- seedlings for both varieties were measured by electronic balance. The samples
- Sciences, Godollo. Potato samples were cut into small pieces, placed in 1-1 Petri
- Hungary). After drying, the samples were ground, homogenized and filled into
- phosphorus content in the non-irrigated samples compared to the irrigated ones.
Implications
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