Culture profile
Lacticaseibacillus chiayiensis
cellular organisms; Bacteria; Bacillati; Bacillota; Bacilli; Lactobacillales; Lactobacillaceae; Lacticaseibacillus
Built 7 Oct 2026 · 4 days ago
At a glance
MRS agar/broth · Brain heart infusion (BHI) · Luria-Bertani (LB)
28 °C
0-48 h
No evidence retrieved
Gram-positive
16S rRNA gene sequencing · Whole-genome sequencing / ANI · Starch hydrolysis +9 more
Evidence base by publication year
How current the underlying literature is. Recent work is weighted more heavily, but classical descriptions still count — that is often where the phenotype was characterised properly.
- Median 2025
- Newest 2026
- Oldest 2022
- Last 5 years 26
Latest literature
The newest publications that fed this profile.
- 2026
- 2026
- 2026
- 2026
- 2026
- 2026
1 Media used
low-
MRS agar/broth
Evidence (6)
LAB were routinely grown in the study in MRS broth at 37 °C for 24 h and reinoculated in fresh MRS broth at 37 °C.
Genomic and in-vitro characteristics of a novel strain Lacticaseibacillus chiayiensis AACE3 isolated from fermented blueberry — PubMed Central (open access), 2023Briefly, L. chiayiensis AACE3 was inoculated in MRS broth and cultured at 37 °C for 24 h.
Genomic and in-vitro characteristics of a novel strain Lacticaseibacillus chiayiensis AACE3 isolated from fermented blueberry — PubMed Central (open access), 2023For the individual colonies used for routine use, the strain was grown and passaged in lactic acid bacteria selective medium (MRS) broth at 37 °C for 24 h.
Effects of Dietary Supplementation of Lacticaseibacillus Chiayiensis AACE3 on Hepatic Antioxidant Capacity, Immune Factors and Gut Microbiology in Nandan Yao Chicks — PubMed Central (open access), 2023For the isolation of lactic acid bacterial strains, the serially diluted milk samples were spread on an MRS agar plate (Difco, Becton & Dickinson, Sparks, MD, United States) and incubated at 37 °C for 48 h under anaerobic conditions.
Complete Genome Sequencing and Comparative Genomics of Three Potential Probiotic Strains, Lacticaseibacillus casei FBL6, Lacticaseibacillus chiayiensis FBL7, and Lacticaseibacillus zeae FBL8 — PubMed Central (open access), 2022The different individual colonies were randomly selected according to morphological differences and purified on MRS broth (Difco).
Complete Genome Sequencing and Comparative Genomics of Three Potential Probiotic Strains, Lacticaseibacillus casei FBL6, Lacticaseibacillus chiayiensis FBL7, and Lacticaseibacillus zeae FBL8 — PubMed Central (open access), 2022In brief, preserved vaginal swab samples were freeze-thawed, diluted, and spread onto agar media, including modified MRS agar containing 0.12 g/L of bromocresol purple (Sigma Aldrich, Steinheim, Germany) and 0.1% L-cystine HCl (Sigma Aldrich, Germany), as well as Rogosa SL agar.
Clinical Potential of Novel Microbial Therapeutic LP51 Based on Xerosis-Microbiome Index — PubMed Central (open access), 2024
-
Brain heart infusion (BHI)
Evidence (3)
The bacterial strain was routinely grown in BHI medium (Oxoid, Basingstone, UK) supplemented with 3% ( w/v ) NaCl (Solaibao, Beijing, China) at an optimal temperature of 28 °C.
Whole-Genome Sequence Analysis, Probiotic Potential, and Safety Assessment of the Marine Bacterium Paraliobacillus zengyii CGMCC1.16464 — PubMed Central (open access), 2025The activated culture was then transferred at a 1:100 dilution into fresh BHI media containing 3% ( w / v ) NaCl and further cultured with shaking for 6 to 8 h until the logarithmic growth phase was reached (OD 600 = 0.6).
Whole-Genome Sequence Analysis, Probiotic Potential, and Safety Assessment of the Marine Bacterium Paraliobacillus zengyii CGMCC1.16464 — PubMed Central (open access), 2025E. coli PET-24a and S. aureus 25923 were cultured in BHI medium at 37 °C.
Whole-Genome Sequence Analysis, Probiotic Potential, and Safety Assessment of the Marine Bacterium Paraliobacillus zengyii CGMCC1.16464 — PubMed Central (open access), 2025
-
Luria-Bertani (LB)
Evidence (2)
Then, the indicated pathogens (100 μL, 1 × 10 7 CFU/mL) were mixed with 5 mL of semisolid LB agar medium and quickly poured onto the surface of solid LB agar medium.
Genomic and in-vitro characteristics of a novel strain Lacticaseibacillus chiayiensis AACE3 isolated from fermented blueberry — PubMed Central (open access), 2023Planktonic persisters of two clinical strains of P. aeruginosa (PaCF1 and PaCF4) were obtained following two different procedures: (i) exposing stationary-phase cultures to cyanide m-chlorophenylhydrazone (CCCP) in LB medium; (ii) incubating stationary-phase cultures with high doses of tobramycin (128-fold MIC) in ASM.
Anti-Persisters Activity of Lacticaseibacillus rhamnosus Culture Filtrates against Pseudomonas aeruginosa in Artificial Sputum Medium — Crossref, 2024
2 Optimum temperature for growth
low28 °C
Evidence (1)
The bacterial strain was routinely grown in BHI medium (Oxoid, Basingstone, UK) supplemented with 3% ( w/v ) NaCl (Solaibao, Beijing, China) at an optimal temperature of 28 °C.
Whole-Genome Sequence Analysis, Probiotic Potential, and Safety Assessment of the Marine Bacterium Paraliobacillus zengyii CGMCC1.16464 — PubMed Central (open access), 2025
Other values reported (1)
-
37 °C
Evidence (1)
Briefly, L. chiayiensis AACE3 was inoculated in MRS broth and cultured at 37 °C for 24 h.
Genomic and in-vitro characteristics of a novel strain Lacticaseibacillus chiayiensis AACE3 isolated from fermented blueberry — PubMed Central (open access), 2023
3 Time required to grow
moderate0-48 h
Evidence (6)
Cultures were incubated at 37 °C for 0-48 h under varying conditions-namely aerobic, anaerobic, and microaerophilic chambers (Baker Ruskin, Rotherham, UK).
Clinical Potential of Novel Microbial Therapeutic LP51 Based on Xerosis-Microbiome Index — PubMed Central (open access), 2024LAB were routinely grown in the study in MRS broth at 37 °C for 24 h and reinoculated in fresh MRS broth at 37 °C.
Genomic and in-vitro characteristics of a novel strain Lacticaseibacillus chiayiensis AACE3 isolated from fermented blueberry — PubMed Central (open access), 2023Briefly, L. chiayiensis AACE3 was inoculated in MRS broth and cultured at 37 °C for 24 h.
Genomic and in-vitro characteristics of a novel strain Lacticaseibacillus chiayiensis AACE3 isolated from fermented blueberry — PubMed Central (open access), 2023Then, the plates were transferred to a constant-temperature incubator at 37 °C for 24 h to observe the bacterial inhibitory activity.
Genomic and in-vitro characteristics of a novel strain Lacticaseibacillus chiayiensis AACE3 isolated from fermented blueberry — PubMed Central (open access), 2023For the individual colonies used for routine use, the strain was grown and passaged in lactic acid bacteria selective medium (MRS) broth at 37 °C for 24 h.
Effects of Dietary Supplementation of Lacticaseibacillus Chiayiensis AACE3 on Hepatic Antioxidant Capacity, Immune Factors and Gut Microbiology in Nandan Yao Chicks — PubMed Central (open access), 2023The strain exhibited exponential growth, reaching 8.8 log CFU/mL within 24 h, and demonstrated strong acid tolerance with survival rates of 54% at pH 3.0, 99% at pH 3.5, and 100% at pH 7.
In vitro evaluation of Zymomonas mobilis UFPEDA 363 as a probiotic: safety profile, antagonism, and simulated gastrointestinal resistance — OpenAlex, 2026
Other values reported (4)
-
14 d
Evidence (1)
The starter culture was rejuvenated in coconut water medium and incubated at 30 °C for 14 days.
Microbial diversity of bacterial cellulose starter culture revealed by 16S rRNA gene amplicon sequencing — OpenAlex, 2026
-
21 d
Evidence (1)
The chicks were weighed after 21 days, and the PC, LC6 and LC7 groups were found to be 11.28 g, 4.56 g and 14.69 g heavier than the NC group, respectively.
Effects of Dietary Supplementation of Lacticaseibacillus Chiayiensis AACE3 on Hepatic Antioxidant Capacity, Immune Factors and Gut Microbiology in Nandan Yao Chicks — PubMed Central (open access), 2023
-
3 d
Evidence (1)
Moreover, the transcription level of LOR was remarkably enhanced under treatment with 3% of LP51 culture filtrate ( Figure 3 D).
Clinical Potential of Novel Microbial Therapeutic LP51 Based on Xerosis-Microbiome Index — PubMed Central (open access), 2024
-
6-8 h
Evidence (1)
The activated culture was then transferred at a 1:100 dilution into fresh BHI media containing 3% ( w / v ) NaCl and further cultured with shaking for 6 to 8 h until the logarithmic growth phase was reached (OD 600 = 0.6).
Whole-Genome Sequence Analysis, Probiotic Potential, and Safety Assessment of the Marine Bacterium Paraliobacillus zengyii CGMCC1.16464 — PubMed Central (open access), 2025
4 Colony morphology
no evidenceNo sentence in the retrieved literature supported this field. Nothing is asserted here. Add BacDive credentials to widen the scan, or consult Bergey's Manual and the culture-collection product sheet directly.
5 Gram character
moderateGram-positive
Evidence (4)
Antibacterial activity The antibacterial activity and antimicrobial spectrum of L. chiayiensis AACE3 against gram-positive (2) and gram-negative (6) indicators were determined by the modified Oxford cup double-layer plate method ( Voulgari et al., 2010 ).
Genomic and in-vitro characteristics of a novel strain Lacticaseibacillus chiayiensis AACE3 isolated from fermented blueberry — PubMed Central (open access), 2023The results indicate that AACE3 has broad-spectrum antibacterial activity against common gram-positive and gram-negative pathogens.
Genomic and in-vitro characteristics of a novel strain Lacticaseibacillus chiayiensis AACE3 isolated from fermented blueberry — PubMed Central (open access), 2023Four rod-shaped, non-motile, non-spore-forming, facultative anaerobic, Gram-stain-positive lactic acid bacteria, designated as EB0058 T , SCR0080, LD0937 T and SCR0063 T , were isolated from different corn and grass silage samples.
<i>Lacticaseibacillus parahuelsenbergensis</i> sp. nov., <i>Lacticaseibacillus styriensis</i> sp. nov. and <i>Lacticaseibacillus zeae</i> subsp. <i>silagei</i> subsp. nov., isolated from different grass and corn silage. — Europe PMC, 2024Inferred from NCBI Taxonomy lineage: cellular organisms; Bacteria; Bacillati; Bacillota; Bacilli; Lactobacillales; Lactobacillaceae; Lacticaseibacillus
NCBI Taxonomy lineage — NCBI Taxonomy, 2026
Other values reported (1)
-
Gram-negative
Evidence (3)
Antibacterial activity The antibacterial activity and antimicrobial spectrum of L. chiayiensis AACE3 against gram-positive (2) and gram-negative (6) indicators were determined by the modified Oxford cup double-layer plate method ( Voulgari et al., 2010 ).
Genomic and in-vitro characteristics of a novel strain Lacticaseibacillus chiayiensis AACE3 isolated from fermented blueberry — PubMed Central (open access), 2023The results indicate that AACE3 has broad-spectrum antibacterial activity against common gram-positive and gram-negative pathogens.
Genomic and in-vitro characteristics of a novel strain Lacticaseibacillus chiayiensis AACE3 isolated from fermented blueberry — PubMed Central (open access), 2023Moreover, AACE3 showed robust antibacterial activity against gram-negative indicators such as Klebsiella pneumoniae ATCC 10031 (inhibitory zone diameter of 19.46 ± 0.28 mm), Salmonella enteritidis CMCC (B) 50335 (inhibitory zone diameter of 18.22 ± 0.14 mm) and Escherichia coli CMCC (B) 44102 (inhibitory zone diameter of 17.96 ± 0.22 mm).
Genomic and in-vitro characteristics of a novel strain Lacticaseibacillus chiayiensis AACE3 isolated from fermented blueberry — PubMed Central (open access), 2023
6 Biochemical tests for identification
high-
16S rRNA gene sequencing
Evidence (6)
These strains were identified via 16S rRNA gene sequencing with 27F/1492R primer pairs.
Complete Genome Sequencing and Comparative Genomics of Three Potential Probiotic Strains, Lacticaseibacillus casei FBL6, Lacticaseibacillus chiayiensis FBL7, and Lacticaseibacillus zeae FBL8 — PubMed Central (open access), 202216S rRNA Gene-Sequencing-Based Identification of Isolated Probiotics The probiotic strain was identified through 16S rRNA gene-sequencing technology.
Clinical Potential of Novel Microbial Therapeutic LP51 Based on Xerosis-Microbiome Index — PubMed Central (open access), 2024The isolated strains were identified using 16S rRNA gene sequencing.
Clinical Potential of Novel Microbial Therapeutic LP51 Based on Xerosis-Microbiome Index — PubMed Central (open access), 2024The isolated strains were characterized using a polyphasic approach and EB0058 T and SCR0080 were identified as Lacticaseibacillus zeae by 16S rRNA gene sequence analysis.
<i>Lacticaseibacillus parahuelsenbergensis</i> sp. nov., <i>Lacticaseibacillus styriensis</i> sp. nov. and <i>Lacticaseibacillus zeae</i> subsp. <i>silagei</i> subsp. nov., isolated from different grass and corn silage. — Europe PMC, 2024Isolates were identified by the homology of the 16S rRNA gene sequence.
Associations between intestinal lactic acid bacteria species and feeding habits of zoo animals. — Europe PMC, 2024The aim of this research is to characterize the bacterial diversity and community composition of a BC starter culture using 16S rRNA gene amplicon sequencing and to complement the molecular data with culture-based enumeration.
Microbial diversity of bacterial cellulose starter culture revealed by 16S rRNA gene amplicon sequencing — OpenAlex, 2026
-
Whole-genome sequencing / ANI
Evidence (5)
Analysis of Whole-Genome Sequencing Results of the Strain The primary genomic characteristics of the LP51 strain are illustrated in Figure 1 .
Clinical Potential of Novel Microbial Therapeutic LP51 Based on Xerosis-Microbiome Index — PubMed Central (open access), 2024Based on whole-genome sequence-based characterization, EB0058 T and SCR0080 were separated into a distinct clade from Lacticaseibacillus zeae DSM 20178 T , together with CECT9104 and UD2202, whose genomic sequences are available from NCBI GenBank.
<i>Lacticaseibacillus parahuelsenbergensis</i> sp. nov., <i>Lacticaseibacillus styriensis</i> sp. nov. and <i>Lacticaseibacillus zeae</i> subsp. <i>silagei</i> subsp. nov., isolated from different grass and corn silage. — Europe PMC, 2024Through whole-genome sequence analysis, the strain TISTR 2593 was identified as Lacticaseibacillus paracasei.
Evaluating the safety and efficacy of Lacticaseibacillus paracasei TISTR 2593 as a therapeutic probiotic for obesity prevention — OpenAlex, 2025Molecular identification through whole genome sequencing indicated that the bacteria isolated from human breast milk were identified as Bifidobacterium breve (BS2-PS1 and BS2-PS2) and Lacticaseibacillus paracasei subspecies paracasei (BS2-PB5), whereas the bacteria isolated from infant feces was identified as Lactiplantibacillus plantarum (BR-12).
Whole-Genome Analysis and Tolerance Assessment on Bifidobacteria-like Bacteria Isolated from Breast Milk and Infant Fecal Samples in Indonesia — OpenAlex, 2025Whole genome sequencing has played a significant role in the identification and characterization of many probiotic candidates.
Unveiling the probiotic potential of L. rhamnosus strain 044AE by genomic and phenotypic characterization — OpenAlex, 2026
-
Starch hydrolysis
Evidence (4)
Furthermore, compared to NC, L. chiayiensis AACE3, the activity of intestinal digestive enzymes (i.e., α-amylase, lipase and trypsin) was increased.
Effects of Dietary Supplementation of <i>Lacticaseibacillus Chiayiensis</i> AACE3 on Hepatic Antioxidant Capacity, Immune Factors and Gut Microbiology in Nandan Yao Chicks. — Europe PMC, 2023Furthermore, compared to NC, L. chiayiensis AACE3, the activity of intestinal digestive enzymes (i.e., α-amylase, lipase and trypsin) was increased.
Effects of Dietary Supplementation of Lacticaseibacillus Chiayiensis AACE3 on Hepatic Antioxidant Capacity, Immune Factors and Gut Microbiology in Nandan Yao Chicks — Crossref, 2023Furthermore, compared to NC, L. chiayiensis AACE3, the activity of intestinal digestive enzymes (i.e., α-amylase, lipase and trypsin) was increased.
Effects of Dietary Supplementation of Lacticaseibacillus Chiayiensis AACE3 on Hepatic Antioxidant Capacity, Immune Factors and Gut Microbiology in Nandan Yao Chicks — OpenAlex, 2023Furthermore, compared to NC, L. chiayiensis AACE3, the activity of intestinal digestive enzymes (i.e., α-amylase, lipase and trypsin) was increased.
Effects of Dietary Supplementation of Lacticaseibacillus Chiayiensis AACE3 on Hepatic Antioxidant Capacity, Immune Factors and Gut Microbiology in Nandan Yao Chicks — DOAJ, 2023
-
Lipase
Evidence (4)
Furthermore, compared to NC, L. chiayiensis AACE3, the activity of intestinal digestive enzymes (i.e., α-amylase, lipase and trypsin) was increased.
Effects of Dietary Supplementation of <i>Lacticaseibacillus Chiayiensis</i> AACE3 on Hepatic Antioxidant Capacity, Immune Factors and Gut Microbiology in Nandan Yao Chicks. — Europe PMC, 2023Furthermore, compared to NC, L. chiayiensis AACE3, the activity of intestinal digestive enzymes (i.e., α-amylase, lipase and trypsin) was increased.
Effects of Dietary Supplementation of Lacticaseibacillus Chiayiensis AACE3 on Hepatic Antioxidant Capacity, Immune Factors and Gut Microbiology in Nandan Yao Chicks — Crossref, 2023Furthermore, compared to NC, L. chiayiensis AACE3, the activity of intestinal digestive enzymes (i.e., α-amylase, lipase and trypsin) was increased.
Effects of Dietary Supplementation of Lacticaseibacillus Chiayiensis AACE3 on Hepatic Antioxidant Capacity, Immune Factors and Gut Microbiology in Nandan Yao Chicks — OpenAlex, 2023Furthermore, compared to NC, L. chiayiensis AACE3, the activity of intestinal digestive enzymes (i.e., α-amylase, lipase and trypsin) was increased.
Effects of Dietary Supplementation of Lacticaseibacillus Chiayiensis AACE3 on Hepatic Antioxidant Capacity, Immune Factors and Gut Microbiology in Nandan Yao Chicks — DOAJ, 2023
-
Haemolysis pattern
Evidence (5)
L. paracasei TISTR 2593 exhibited γ-hemolytic activity (nonhemolysis) and demonstrated susceptibility to antibiotics, indicating that it is generally safe for consumption.
Evaluating the safety and efficacy of Lacticaseibacillus paracasei TISTR 2593 as a therapeutic probiotic for obesity prevention — OpenAlex, 2025Regarding safety, the strain was susceptible to most clinically relevant antibiotics, such as tetracycline and ampicillin, and it did not exhibit hemolytic or gelatinase activity.
In vitro evaluation of Zymomonas mobilis UFPEDA 363 as a probiotic: safety profile, antagonism, and simulated gastrointestinal resistance — OpenAlex, 2026Rigorous in vitro experiments confirmed tolerance of strain cqf-43 in the intestinal environment, its antimicrobial efficacy, sensitivity to antibiotics, absence of hemolysis and gelatinase activity, and its inability to produce biogenic amines.
Probiotic Potential and Safety Assessment of Lactiplantibacillus plantarum cqf-43 and Whole-Genome Sequence Analysis — OpenAlex, 2023In vitro experiments indicated that the Lpb. plantarum strain Y300 had no hemolytic activity; excellent acid-producing ability;an outstanding tolerance to bile salts, low-pH environments, and simulated gastrointestinal fluids; a positive hydrophobic interaction with xylene, and good auto-aggregation characteristics.
Complete Genome Sequence Analysis and Probiotic Characterisation of Lactiplantibacillus plantarum Y300 Isolated from Traditional Free-Range Chickens — OpenAlex, 2025In addition, PD2 demonstrated notable auto- and co-aggregation abilities with foodborne pathogens including Bacillus cereus, Escherichia coli, Enterococcus faecalis, Listeria monocytogenes, Salmonella Typhi, Vibrio cholerae, and V. parahaemolyticus, along with significant antioxidant activity and broad-spectrum antibacterial effects against those pathogens.
Genomic insights into Lacticaseibacillus chiayiensis PD2 isolated from Southern Thai fermented fish and its potential for probiotic and antibacterial activity against foodborne pathogens — DOAJ, 2025
-
Antibiotic susceptibility profile
Evidence (4)
These strains also demonstrated strong bile salt hydrolase (BSH) activity, high tolerance to simulated gastrointestinal conditions, resistance to phenol, broad-spectrum antimicrobial activity against foodborne pathogens, and favorable antibiotic susceptibility profiles.
Multifunctional biotherapeutic probiotic bacteria with antioxidant capacity for cholesterol reduction, and inflammation alleviation. — PubMed (NCBI E-utilities), 2026These strains also demonstrated strong bile salt hydrolase (BSH) activity, high tolerance to simulated gastrointestinal conditions, resistance to phenol, broad-spectrum antimicrobial activity against foodborne pathogens, and favorable antibiotic susceptibility profiles.
Multifunctional biotherapeutic probiotic bacteria with antioxidant capacity for cholesterol reduction, and inflammation alleviation. — PubMed (NCBI E-utilities), 2026These strains also demonstrated strong bile salt hydrolase (BSH) activity, high tolerance to simulated gastrointestinal conditions, resistance to phenol, broad-spectrum antimicrobial activity against foodborne pathogens, and favorable antibiotic susceptibility profiles.
Multifunctional biotherapeutic probiotic bacteria with antioxidant capacity for cholesterol reduction, and inflammation alleviation. — Europe PMC, 2026We identified two Brevundimonas nasdae strains, Au-Bre29 and Au-Bre30, among these eight strains, having a high minimum inhibitory concentration (MIC) for As(III).
Characterization of Two Highly Arsenic-Resistant Caulobacteraceae Strains of Brevundimonas nasdae: Discovery of a New Arsenic Resistance Determinant — OpenAlex, 2022
-
Gelatin hydrolysis — reported negative
Evidence (3)
Regarding safety, the strain was susceptible to most clinically relevant antibiotics, such as tetracycline and ampicillin, and it did not exhibit hemolytic or gelatinase activity.
In vitro evaluation of Zymomonas mobilis UFPEDA 363 as a probiotic: safety profile, antagonism, and simulated gastrointestinal resistance — OpenAlex, 2026Furthermore, the genome is devoid of menacing genes such as hemolysin, gelatinase, and biogenic amine-producing genes.
Probiotic Potential and Safety Assessment of Lactiplantibacillus plantarum cqf-43 and Whole-Genome Sequence Analysis — OpenAlex, 2023Rigorous in vitro experiments confirmed tolerance of strain cqf-43 in the intestinal environment, its antimicrobial efficacy, sensitivity to antibiotics, absence of hemolysis and gelatinase activity, and its inability to produce biogenic amines.
Probiotic Potential and Safety Assessment of Lactiplantibacillus plantarum cqf-43 and Whole-Genome Sequence Analysis — OpenAlex, 2023
-
Motility — reported negative
Evidence (1)
Four rod-shaped, non-motile, non-spore-forming, facultative anaerobic, Gram-stain-positive lactic acid bacteria, designated as EB0058 T , SCR0080, LD0937 T and SCR0063 T , were isolated from different corn and grass silage samples.
<i>Lacticaseibacillus parahuelsenbergensis</i> sp. nov., <i>Lacticaseibacillus styriensis</i> sp. nov. and <i>Lacticaseibacillus zeae</i> subsp. <i>silagei</i> subsp. nov., isolated from different grass and corn silage. — Europe PMC, 2024
-
Spore formation / stain — reported negative
Evidence (1)
Four rod-shaped, non-motile, non-spore-forming, facultative anaerobic, Gram-stain-positive lactic acid bacteria, designated as EB0058 T , SCR0080, LD0937 T and SCR0063 T , were isolated from different corn and grass silage samples.
<i>Lacticaseibacillus parahuelsenbergensis</i> sp. nov., <i>Lacticaseibacillus styriensis</i> sp. nov. and <i>Lacticaseibacillus zeae</i> subsp. <i>silagei</i> subsp. nov., isolated from different grass and corn silage. — Europe PMC, 2024
-
Aerotolerance test — reported positive
Evidence (1)
Four rod-shaped, non-motile, non-spore-forming, facultative anaerobic, Gram-stain-positive lactic acid bacteria, designated as EB0058 T , SCR0080, LD0937 T and SCR0063 T , were isolated from different corn and grass silage samples.
<i>Lacticaseibacillus parahuelsenbergensis</i> sp. nov., <i>Lacticaseibacillus styriensis</i> sp. nov. and <i>Lacticaseibacillus zeae</i> subsp. <i>silagei</i> subsp. nov., isolated from different grass and corn silage. — Europe PMC, 2024
-
Short-chain fatty acid profile (GLC)
Evidence (1)
Probiotics produce the secondary metabolites, such as short-chain fatty acids, hydrogen peroxide, enzymes, and bacteriocins, that inhibit the proliferation of other resident gut microbes.
Mechanisms of probiotic action in poultry gut: Colonization resistance, bioactive metabolites, quorum sensing activity, and immunomodulation. — Europe PMC, 2026
-
Carbohydrate fermentation panel
Evidence (1)
Functional annotations derived from COG and KEGG databases highlighted a significant abundance of genes related to metabolism, with a notable emphasis on carbohydrate utilization.
Probiotic Potential and Safety Assessment of Lactiplantibacillus plantarum cqf-43 and Whole-Genome Sequence Analysis — OpenAlex, 2023
7 References used
27 sourcesCatalogues to check by hand
These have no open interface, or their terms forbid automated querying. The app prepares the query; you open it.
Scan log — what each database returned
| Database | Status | Records | Evidence | Time | Note |
|---|---|---|---|---|---|
| NCBI Taxonomy — lineage and accepted name | empty | 0 | 0 | 1487 ms | TaxID 2100821 (species). |
| LPSN — nomenclatural status | skipped | 0 | 0 | 0 ms | Skipped — LPSN credentials not configured (free registration). |
| StrainInfo — strain cross-references | empty | 0 | 0 | 1472 ms | No response (endpoint may require a different path). |
| GBIF — name resolution | empty | 0 | 0 | 671 ms | Matched as Lacticaseibacillus chiayiensis Chiayiensis, 2020 (ACCEPTED). |
| Wikidata — identifier bridge | empty | 0 | 0 | 1274 ms | No Wikidata item. |
| DSMZ MediaDive — curated growth media | empty | 0 | 0 | 760 ms | No media entries matched this name in MediaDive. |
| BacDive — curated strain phenotypes | skipped | 0 | 0 | 0 ms | Skipped — BacDive credentials not configured. This is the single highest-value source; registration is free. |
| PubMed — culture and cultivation query | hit | 3 | 1 | 2522 ms | 3 abstracts retrieved (culture query). |
| PubMed — morphology and identification query | hit | 1 | 1 | 2411 ms | 1 abstracts retrieved (pheno query). |
| PubMed Central — open-access Methods sections | hit | 5 | 30 | 9083 ms | 5 open-access full texts mined. |
| Europe PMC — abstract search | hit | 13 | 12 | 1210 ms | 13 records from Europe PMC. |
| Europe PMC — full-text mining | empty | 0 | 0 | 3428 ms | 0 full texts mined for Methods detail. |
| Crossref — DOI metadata | hit | 25 | 4 | 950 ms | 25 DOI records (abstracts only where deposited). |
| OpenAlex — open scholarly graph | hit | 24 | 21 | 2299 ms | 24 works (inverted abstracts reconstructed locally). |
| Semantic Scholar — abstracts | empty | 0 | 0 | 683 ms | Rate-limited or unavailable (keyless access is throttled). |
| DOAJ — open-access journals | hit | 4 | 3 | 673 ms | 4 open-access articles. |
| OpenAIRE — repository publications | empty | 0 | 0 | 14012 ms | 0 repository publications. |
| SciELO — regional journals | empty | 0 | 0 | 525 ms | No parseable SciELO response (their JSON output is unstable; a deep link is still provided). |
| NCBI Bookshelf — reference texts | empty | 0 | 0 | 683 ms | No reference-text chapters matched. |
| CORE — aggregated repositories | skipped | 0 | 0 | 0 ms | Skipped — no API key configured. |
| Springer Nature — publisher metadata | skipped | 0 | 0 | 0 ms | Skipped — no API key configured. |
| ScienceDirect — publisher metadata | skipped | 0 | 0 | 0 ms | Skipped — no API key configured. |
| bioRxiv / medRxiv — preprints | empty | 0 | 0 | 792 ms | 0 preprints (not peer reviewed — weighted down). |
| Zenodo — datasets and protocols | hit | 2 | 0 | 1489 ms | 2 deposits (datasets, theses, protocols). |
| Wikipedia — orientation only | empty | 0 | 0 | 881 ms | No article found. |
| ATCC — deep link | empty | 0 | 0 | 0 ms | Deep link prepared — open manually. |
| NCTC / UKHSA — deep link | empty | 0 | 0 | 0 ms | Deep link prepared — open manually. |
| Google Scholar — deep link (not crawled) | empty | 0 | 0 | 0 ms | Deep link prepared — open manually. |
| protocols.io — deep link | empty | 0 | 0 | 0 ms | Deep link prepared — open manually. |
| ResearchGate — deep link | empty | 0 | 0 | 0 ms | Deep link prepared — open manually. |