[HTML][HTML] Characterization of the microbiome and volatile compounds in anal gland secretions from domestic cats (Felis catus) using metagenomics and metabolomics

CA Rojas, SL Marks, E Borras, H Lesea… - Scientific Reports, 2023 - nature.com
Many mammals rely on volatile organic chemical compounds (VOCs) produced by bacteria
for their communication and behavior, though little is known about the exact molecular …

Characterization of the microbiome and volatile compounds in anal gland secretions from domestic cats (Felis catus) using metagenomics and metabolomics

CA Rojas, SL Marks, E Borras, H Lesea… - Research …, 2023 - pubmed.ncbi.nlm.nih.gov
Animals rely on volatile chemical compounds for their communication and behavior. Many of
these compounds are sequestered in endocrine and exocrine glands and are synthesized …

Characterization of the microbiome and volatile compounds in anal gland secretions from domestic cats (Felis catus) using metagenomics and metabolomics.

CA Rojas, SL Marks, E Borras, H Lesea… - Scientific …, 2023 - search.ebscohost.com
Many mammals rely on volatile organic chemical compounds (VOCs) produced by bacteria
for their communication and behavior, though little is known about the exact molecular …

Characterization of the microbiome and volatile compounds in anal gland secretions from domestic cats (Felis catus) using metagenomics and metabolomics

CA Rojas, SL Marks, E Borras, H Lesea… - 2023 - researchsquare.com
Animals rely on volatile chemical compounds for their communication and behavior. Many of
these compounds are sequestered in endocrine and exocrine glands and are synthesized …

[HTML][HTML] Characterization of the microbiome and volatile compounds in anal gland secretions from domestic cats (Felis catus) using metagenomics and metabolomics

CA Rojas, SL Marks, E Borras, H Lesea… - Scientific …, 2023 - ncbi.nlm.nih.gov
Many mammals rely on volatile organic chemical compounds (VOCs) produced by bacteria
for their communication and behavior, though little is known about the exact molecular …

Characterization of the microbiome and volatile compounds in anal gland secretions from domestic cats (Felis catus) using metagenomics and metabolomics.

C Rojas, E Borras, H Lesea, M McCartney… - Scientific …, 2023 - escholarship.org
Many mammals rely on volatile organic chemical compounds (VOCs) produced by bacteria
for their communication and behavior, though little is known about the exact molecular …

Characterization of the microbiome and volatile compounds in anal gland secretions from domestic cats (Felis catus) using metagenomics and metabolomics

CA Rojas, SL Marks, E Borras, H Lesea… - Scientific …, 2023 - ui.adsabs.harvard.edu
Many mammals rely on volatile organic chemical compounds (VOCs) produced by bacteria
for their communication and behavior, though little is known about the exact molecular …

Characterization of the microbiome and volatile compounds in anal gland secretions from domestic cats (Felis catus) using metagenomics and metabolomics.

CA Rojas, SL Marks, E Borras, H Lesea… - Scientific …, 2023 - europepmc.org
Many mammals rely on volatile organic chemical compounds (VOCs) produced by bacteria
for their communication and behavior, though little is known about the exact molecular …

[HTML][HTML] Characterization of the microbiome and volatile compounds in anal gland secretions from domestic cats (Felis catus) using metagenomics and metabolomics

CA Rojas, SL Marks, E Borras, H Lesea… - Research … - ncbi.nlm.nih.gov
Animals rely on volatile chemical compounds for their communication and behavior. Many of
these compounds are sequestered in endocrine and exocrine glands and are synthesized …

Characterization of the microbiome and volatile compounds in anal gland secretions from domestic cats (Felis catus) using metagenomics and metabolomics

CA Rojas, SL Marks, E Borras, H Lesea… - Scientific …, 2023 - pubmed.ncbi.nlm.nih.gov
Many mammals rely on volatile organic chemical compounds (VOCs) produced by bacteria
for their communication and behavior, though little is known about the exact molecular …