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INSTYTUT ARCHEOLOGII I ETNOLOGII POLSKIEJ AKADEMII NAUK
INSTYTUT BADAŃ LITERACKICH POLSKIEJ AKADEMII NAUK
INSTYTUT BADAWCZY LEŚNICTWA
INSTYTUT BIOLOGII DOŚWIADCZALNEJ IM. MARCELEGO NENCKIEGO POLSKIEJ AKADEMII NAUK
INSTYTUT BIOLOGII SSAKÓW POLSKIEJ AKADEMII NAUK
INSTYTUT CHEMII FIZYCZNEJ PAN
INSTYTUT CHEMII ORGANICZNEJ PAN
INSTYTUT FILOZOFII I SOCJOLOGII PAN
INSTYTUT GEOGRAFII I PRZESTRZENNEGO ZAGOSPODAROWANIA PAN
INSTYTUT HISTORII im. TADEUSZA MANTEUFFLA POLSKIEJ AKADEMII NAUK
INSTYTUT JĘZYKA POLSKIEGO POLSKIEJ AKADEMII NAUK
INSTYTUT MATEMATYCZNY PAN
INSTYTUT MEDYCYNY DOŚWIADCZALNEJ I KLINICZNEJ IM.MIROSŁAWA MOSSAKOWSKIEGO POLSKIEJ AKADEMII NAUK
INSTYTUT PODSTAWOWYCH PROBLEMÓW TECHNIKI PAN
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SIEĆ BADAWCZA ŁUKASIEWICZ - INSTYTUT TECHNOLOGII MATERIAŁÓW ELEKTRONICZNYCH
MUZEUM I INSTYTUT ZOOLOGII POLSKIEJ AKADEMII NAUK
INSTYTUT BADAŃ SYSTEMOWYCH PAN
INSTYTUT BOTANIKI IM. WŁADYSŁAWA SZAFERA POLSKIEJ AKADEMII NAUK
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Abstracts 4-7 March 212, Poznań, Poland
Biały Beata - przekład, Warszawa 2006.
Biotechnologia 4(91)'2010
„Biotechnologia roślinna w biologii, farmacji i rolnictwie” X Ogólnopolska Konferencja Kultur In Vitro i Biotechnologii Roślin
braki w stronach
błędy w numeracji stron
cały artykuł, bez błędów w numeracji stron
chemia bioorganiczna
Dedicated to Professor Maciej Wiewiórowski on the occasion of his 80th birthday
doktor
III Konferencja Biotechnologii
International Conference Sept. 13 and 14, 1974 Poznań-Kiekrz Poland
jasmonic acid (JA), methyl jasmonate (JA-Me) and their related compoundswhich are designated as jasmonates, are widely distributed in the plant kingdom and show various important biological activities in the regulation of plantgrowth and development, resulting in a consideration that they are putativenew plant hormones. Endogenous levels ofjasmonates, mainly JA, increase rapidly and transiently in plants or their organs under both abiotic and biotic stressconditions, jasmonates consist of an integral part of the signal transductionchain between stress signal(s) and stress response(s). In this article, we focusedon and reviewed the role ofjasmonates in control of differentiation processesin tissue cultures, regeneration and micropropagation, somatic embryo formation, tuber initiation and formation. The involvement of jasmonates intuberization, tuberous root formation and bulb formation was inferred fromtheir ability to induce the processes in vitro, and from changes in the levels ofendogenous jasmonates during the growth of the plants which can account forthe initiation of tuberization. The tuberization and the expansion of cells induced by jasmonates always involve the reorientation of cortical microtubules.Differential effect ofjasmonic acid on cell cycle progression is also presented. Itis still an open question about interactions between jasmonates and other hormones (auxin, ethylene, cytokinins, abscisic acid) in the regulation of meristemactivities, cell cycle and other physiological processes.
KULTURY IN VITRO I BIOTECHNOLOGIA ROŚLIN
Listy
Monografia opublikowana w zeszycie Biotechnologia 2(85)'2009
PhD
Polish Academy of Sciences, Japan Society for Promotion of Science
Polish - Japan Issue
postdoctoral dissertation
Poster
Poster presentation
Poster presentation 2002
poster Wklaster in eng
Potato has been known in Europe for the past 400 years. Potato breeding began after the global Phytoplithora infestans epidemics in 1840 and 1841. The first breeding attempts were to increase the F. infestans resistance in cultivated potato. In the 2H' century, new potato cultivars have been evaluated for more than 50 traits, both for disease and pest resistance, and significant tuber traits. Modern potato breeding requires biotechnology. Cell and tissue culture, genetic engineering and DNA-based molecular markers are the most promising areas of molecular biology for potato breeding. However, there are few reports indicating the actual use of biotechnology in potato breeding programs. Cisgenesis and DNA markers that reside within resistance genes or physically close to them and identified in a fully automated system are a chance for the progress in the future.
Praca doktorska wykonana w Zakładzie Biochemii RNA. Promotor: prof. dr hab. Jerzy Ciesiołka
Praca wykonana w Zakładzie Chemii Nukleozydów i Nukleotydów Instytutu Chemii Bioorganicznej PAN w Poznaniu pod kierunkiem prof. dr hab. Jerzego Boryskiego
prace eksperymentalne
prace przeglądowe
Program, abstract, list of participants
PROGRAM, ABSTRACTS & PARTICIPANTS
przetłumaczył: Bartłomiej Pietrzyk; (tytuł oryginału Our Posthuman Future. Consequences of the Biotechnology Revolution)
Raport
raporty
Redakcja naukowa Stefan Malepszy
Scientific adviser: Prof. Mariusz Jaskólski
Sekcja 11 Pierwszego Krajowego Kongresu Biotechnologii
Sekcja 12 Pierwszego Krajowego Kongresu Biotechnologii
Sekcja 13 Pierwszego Krajowego Kongresu Biotechnologii
Sekcja 2 Pierwszego Krajowego Kongresu Biotechnologii
Sekcja 3 Pierwszego Krajowego Kongresu Biotechnologii
Sekcja 4 Pierwszego Krajowego Kongresu Biotechnologii
Sekcja 7 Pierwszego Krajowego Kongresu Biotechnologii
Sekcja 8 Pierwszego Krajowego Kongresu Biotechnologii
Sekcja 9 Pierwszego Krajowego Kongresu Biotechnologii
Selected issues of non-conventional enzymology
Thesis presented to the Scientific Councilof the Institute of Bioorganic ChemistryPolish Academy of Sciences in Poznan asa Ph.D. dissertation
Thesis presented to the Scientific Councilof the Institute of Bioorganic ChemistryPolish Academy of Sciences in Poznanas a Ph.D. dissertation.
Sprawozdania
statut
Supervisor: Dr hab. Paweł Bednarek, prof. IBCh PAS
who is who
Zaid A., Hughes H. G., Porceddu E., Nicholas F., 2007, Glossary of Biotechnology for Food and Agriculture, FAO Rome, p. 305, ISBN 978-92-5-104693-8.
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