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Horizontal starch gel electrophoresis has been applied to thestudy of esterase, peroxidase and acid phosphatase patternsin seven taxa, namely Hordeum diploids (2n=14) (H. marinum,H. marinum I and H. hystrix), tetraploids (2n=28) (H. bulbosumand H. murinum subsp. leporinum) and Taeniatherum (2n=14) (T.caput-medusae and T. caput-medusae I) in order to elucidatetheir phylogenetic relationships. On the basis of our experimentalresults the seven taxa may be placed in the following threegroups; (1) diploid Hordeum (H. marinum, H. marinum I, H. hystrix);(2) tetraploid Hordeum (H. bulbosum, H. murinum subsp. leporinum);(3) Taeniatherum (T. caput-medusae, T. caput-medusae I). Esterase, peroxidase and acid phosphatase patterns of the twoHordeum diploid taxa (H. marinum and H. marinum I) are verysimilar suggesting their close phylogenetic relationship; thesame is true for both the taxa of the genus Taeniatherum (T.caput-medusae and T. caput-medusae I). The taxa of the Taeniatherumgroup compared with the diploid Hordeum (H. marinum, H. marinumI, H. hystrix) and the tetraploid Hordeum (H. bulbosum, H. murinumsubsp. leporinum) show a lower degree of phylogenetic relationshipand seem to be equally distant from them. The tetraploid Hordeumgroup shows a higher phylogenetic relationship with diploidHordeum group than with the Taeniatherum group. These results confirm that the genus Taeniatherum, previouslyconsidered as part of the genus Hordeum, should be regardedas a separate genus. Gramineae (Poaceae), Hordeum L., Taeniatherum Nevski., esterase, peroxidase and acid phosphatase patterns, phylogenetic relationships  相似文献   
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Agropyron striatulum (Elymus striatulus Run.) 2n = 14, A. rechingeriRun. 2n = 28, A. junceum (L.) P.B. subsp. boreoatlanticum simonetet Guinochet (A. junceiforme Löve and Löve) 2n = 28,A. junceum (L.) P.B. subsp. mediterraneum Simonet (A. junceum(L.) P.B.) 2n = 42 and A. diae (Elymus diae Run.) 2n = 56 werestudied by isoelectric focusing of seed soluble proteins. The electrophoretic phenotypes obtained from the five materialsshowed a striking degree of similarity. The typical proteinprofile was recognized to consist of 40 bands. No qualitativeprotein phenotypic differences were found and all observed variationconcerned the intensities of some particular bands. The data of the present study combined with cytological informationprovided by other workers indicate that in the composition ofthe polyploid taxa another genome besides that of the diploidA. striatulum is not likely to participate. Consequently thepolyploid taxa of A. junceum (L.) P.B. complex can be characterizedas segmental allopolyploids with the same basic genome moreor less modified at different ploidy levels. Agropyron junceum (L.) P.B. complex, seed storage proteins, protein profile, isoelectric focusing, genomic constitution, segmental allopolyploids  相似文献   
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