Picea orientalis

Ethnobotanical Studies

Studies

Accumulation analysis and overall measurement to represent airborne toxic metals with passive tree bark biomonitoring technique in urban areas.

Isinkaralar K et al (2024).
Environ Monit Assess.
PubMed:
38958781

Usability of biomonitors in monitoring the change of tin concentration in the air.

Cetin M, Cebi Kilicoglu M and Kocan N (2023).
Environ Sci Pollut Res Int.
PubMed:
37831266

Regeneration of Dark Coniferous Species in the Groups of Picea orientalis (Pinaceae) Drying in the Teberda Nature Reserve (Western Caucasus).

Pukinskaya MY et al (2022).
Dokl Biol Sci.
PubMed:
36301430

Medicinal ethnobotany of wild plants: a cross-cultural comparison around Georgia-Turkey border, the Western Lesser Caucasus.

Kazancı C, Oruç S and Mosulishvili M (2020).
J Ethnobiol Ethnomed.
PubMed:
33225956

Determination of chemical changes in heat-treated wood using ATR-FTIR and FT Raman spectrometry.

Özgenç Ö et al (2017).
Spectrochim Acta A Mol Biomol Spectrosc.
PubMed:
27569772

Temporal changes of soil respiration under different tree species.

Akburak S and Makineci E (2013).
Environ Monit Assess.
PubMed:
22828980

Pollination of Picea orientalis (Pinaceae): saccus morphology governs pollen.

Runions CJ et al (1999).
Am J Bot.
PubMed:
21680358

Quantitative evolution of transposable and satellite DNA sequences in Picea species.

Sarri V, Ceccarelli M and Cionini PG (2011).
Genome.
PubMed:
21539442

Generalized height-diameter models for Picea orientalis L.

Sonmez T et al (2009).
J Environ Biol.
PubMed:
20136063

Nuclear ribosomal DNA internal transcribed spacer 1 (ITS1) in Picea (Pinaceae): sequence divergence and structure.

Campbell CS et al (2005).
Mol Phylogenet Evol.
PubMed:
15737589