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Mapping of the Physcomitrella patens proteome
Phytochemistry, 2004The moss Physcomitrella patens is unique among land plants due to the high rate of homologous recombination in its nuclear DNA. The feasibility of gene targeting makes Physcomitrella an unrivalled model organism in the field of plant functional genomics. To further extend the potentialities of this seed-less plant we aimed at exploring the P.
Sarnighausen, Eric +4 more
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English Medieval Chalices and Patens
Archaeological Journal, 1886The Archaeological Journal, 43, 137 ...
St John Hope, W H, Fallow, T M
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Asymmetry in the bryophyte, Physcomitrium patens
Current Opinion in Plant BiologyCell polarity and asymmetric division are fundamental to plant development, governing growth, differentiation, and stress responses. The filamentous tissues of the moss Physcomitrium patens provide an excellent system to investigate these processes, as their exposed cells facilitate direct observation of cellular and intracellular dynamics. This review
Prerna, Singh +3 more
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Plastid Transformation in Physcomitrella patens
2014The moss Physcomitrella patens performs efficient homologous recombination in both the nucleus and plastid enabling the study of individual gene function by generating precise inactivation or modification of genes. Polyethylene glycol (PEG)-mediated transformation of protoplasts is routinely used to study the nuclear gene function of P. patens.
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TINJAUAN YURIDIS TENTANG PERLINDUNGAN HAK KEKAYAAN INTELEKTUAL DI BIDANG PATEN
, 2021Niru Anita Sinaga, Tiberius Zaluchu
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On a mediaeval paten at Hartshorne.
2017The Derbyshire Archaeological Journal, 8, 150 ...
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