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April 30, 2026Scientific Reports0 citationsOpen Access

Evaluating effects of tissue type, preservation method, and decomposition on DNA quality to support genetic sampling in stranded small cetaceans

MGMiguel L. GriloMRMiguel Leal e RigorAMAndré E. Moura

Key Points

  • This study aims to compare DNA quality from various tissue types and preservation methods to enhance genetic sampling protocols for stranded cetaceans.
  • Compared DNA concentration, purity, and integrity from skin, muscle, and blubber samples.
  • Samples were preserved in 96% ethanol or frozen at −20 °C and categorized based on decomposition stages.
  • Utilized standardized protocols for DNA extraction and statistical analyses to evaluate influencing factors.
  • Skin produced the highest DNA concentrations and acceptable purity levels, even in advanced decomposition stages.
  • DNA integrity declined with decomposition, with muscle retaining higher integrity values in late stages.
  • Both preservation methods yielded good results in early decomposition stages, with freezing essential for muscle integrity later.

Abstract

Effective management decisions rely on accurate insights into species’ population structure, with high-quality genetic material being essential. Stranded cetaceans are an important source of samples, but meeting quality standards remains challenging. Despite their frequent use in conservation genetics, no controlled studies have compared DNA yield and quality across tissue types and preservation methods. This is further compounded by cetaceans uniquely derived physiology, meaning standards obtained from other mammals might not apply. In this study, we compared DNA concentration, purity, and integrity when extracted from skin, muscle, and blubber samples preserved in 96% ethanol or frozen at − 20 °C. Samples were obtained from a tissue bank of stranded dolphins and classified into five decomposition condition categories following international guidelines. All samples underwent standardized protocols for DNA extraction, quantification, and quality control. Statistical analyses evaluated the influence of tissue type and preservation method on DNA quality. Skin consistently produced the highest DNA concentrations and acceptable purity levels, even in advanced decomposition stages. DNA integrity declined with decomposition, except in muscle, which retained higher integrity values in later stages. Both 96% ethanol and freezing at − 20 °C produced good results in early decomposition stages, while freezing was particularly important for maintaining DNA integrity in muscle in more advanced decomposition. Based on these findings, we propose two frameworks: one guiding researchers according to sequencing requirements, and another simplified version for stranding networks. These results contribute to standardized sampling protocols and improve the reliability and comparability of genetic analyses from stranded cetaceans.

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Cite This Study

Grilo et al. (2026) studied this question.

synapsesocial.com/papers/69f2f0991e5f7920c6386ca3https://doi.org/10.1038/s41598-026-41686-x
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