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Different regeneration potential of mesophyll protoplasts from cultivated and a wild species of tomato
Authors:Hans-Peter Mühlbach
Institution:(1) Arbeitsgruppe Pflanzenvirologie, Justus-Liebig-Universität, Frankfurter Straße 107, D-6300 Giessen, Federal Republic of Germany
Abstract:Mesophyll protoplasts were isolated from leaves of three cultivars of Lycopersicon esculentum (L.) Mill., namely ldquoHilda 72rdquo, ldquoRutgersrdquo and ldquoRentitardquo, and from the wild tomato species Lycopersicon peruvianum (L.) Mill. Protoplasts from L. peruvianum divided and grew actively in a liquid medium according to Zapata et al. (1977), whereas protoplasts from the tomato cultivars ldquoHilda 72rdquo and ldquoRutgersrdquo showed comparable rates for cell division only, when the content of major elements in this medium was reduced to one half of the original concentration and when mannitol as osmoticum was replaced by glucose. In ldquoRentitardquo protoplasts no cell division could be observed in about 15 different modifications of the five basic culture media tested. The morphogenetic potential of these tomato cells was assessed by comparing the root and shoot formation of protoplasts and of leaf explants. L. peruvianum exhibited the highest potential. Calli derived from protoplasts regenerated roots on Murastrige-Skoog agar containing 1 mgrM benzylaminopurine (BAP) plus 10 mgrM indole-3-acetic acid (IAA) and 0.1 mgrM BAP plus 1 mgrM IAA. Shoot formation occurred in the combinations of 10 mgrM BAP with 0.1, 1.0, and 10 mgrM IAA. Plantlets regenerated from the L. peruvianum calli could be grown in soil. No shoots or roots were regenerated from calli of ldquoHilda 72rdquo and ldquoRutgersrdquo protoplasts in all combinations of BAP and IAA tested in the range from 0.1 mgrM to 100 mgrM, thus indicating the rather low morphogenetic potential of these protoplasts as compared to protoplasts from L. peruvianum leaves.Abbreviations BAP benzylaminopurine - IAA indole-acetic acid - TMV tobacco mosaic virus
Keywords:Lycopersicon  Protoplasts  Regeneration (roots  shorts)
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