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Biomedical subjects

L Margulis

Publications and source records attributed to L Margulis.

At least 91 records · Page 5Linked to original sources

Colchicine, nocodazole and trifluralin: different effects of microtubule polymerization inhibitors on the uptake and migration of endosymbiotic algae in Hydra viridis.

Hydra viridis (= Chlorohydra viridissima) the freshwater coelenterate, is symbiotic. Each individual animal harbours Chlorella sp. in its endodermal cells. The symbiosis may be disestablished, the partners grown independently, and then re-established experimentally. The most effective method to produce alga-free hydra was developed by Pardy (1976). In this study algae from homogenized H. viridis, English (= European) strain, were either used directly or first grown in pure culture and then injected to re-establish the symbiosis. The uptake of algae grown in culture was compared with that of algae released directly from fresh hydra. Fewer cultured algae were taken up. Four strains were tested: English, Carolina, Frome, and Jubilee. Each takes up a characteristic number of Chlorella when injected in excess. Colchicine, nocodazole and trifluralin, were tested for their effects on either uptake or migration. Colchicine had no effect. Nocodazole and trifluralin reduced both the number of algae taken up and the rate at which they were transported to the distal region of the hydra digestive cell. The effects of these drugs tended to be proportional to the concentration between 10(-8) and 10(-5) M.

Animals↗

Microtubules in prokaryotes.

Longitudinally aligned microtubules, about 220 A in diameter, have been seen in the protoplasmic cylinders of the following spirochetes (symbiotic in the hindguts of dry-wood and subterranean termites): Pillotina sp., Diplocalyx sp., Hollandina sp. They are also present in a gliding bacterium from Pterotermes occidentis. These microtubules are probably composed of tubulin, as determined by staining with fluorescent antibodies to tubulin and comigration with authentic tubulin on acrylamide gels. Treponema reiteri lack tubulin by these same criteria. These observations support the hypothesis of the symbiotic origin of cilia and flagella from certain spirochetes.

Animals↗

Protist classification and the kingdoms of organisms.

Traditional classification imposed a division into plant-like and animal-like forms on the unicellular eukaryotes, or protists; in a current view the protists are a diverse assemblage of plant-, animal- and fungus-like groups. Classification of these into phyla is difficult because of their relatively simple structure and limited geological record, but study of ultrastructure and other characteristics is providing new insight on protist classification. Possible classifications are discussed, and a summary classification of the living world into kingdoms (Monera, Protista, Fungi, Animalia, Plantae) and phyla is suggested. This classification also suggests groupings of phyla into superphyla and form-superphyla, and a broadened kingdom Protista (including green algae, oomycotes and slime molds but excluding red and brown algae). The classification thus seeks to offer a compromise between the protist and protoctist kingdoms of Whittaker and Margulis and to combine a full listing of phyla with grouping of these for synoptic treatment.

Animals↗

Inhibitory effects of the herbicide trifluralin on the establishment of the clover root nodule symbiosis.

Trifluralin, a widely used herbicide (Rahman, 1977), may act via interaction with plant microtubule protein (Hess and Bayer, 1974, 1977). In trifluralin treated seedlings of Trifolium repens, root tips increased in diameter and decreased in length, cell elongation was decreased, cell wall deposition was abnormal, root hairs were deformed, and a marked reduction was seen in the number of infection threads induced by the bacterial symbionts. Our observations support the hypothesis that trifluralin (at low concentrations, from 2 x 10(-6) M) interferes with microtubule-based morphogenetic processes in developing seedlings and adversely affects the establishment of the bacteria-legume symbiosis.

Morphogenesis↗

Pillotinas and hollandinas: distribution and behaviour of large spirochaetes symbiotic in termites.

Pillotina spirochaetes have been observed in the hindguts of wood-eating cockroaches (Cryptocercus punctulatus), and in 25 out of 28 species of termites examined. They were especially abundant in 21 species of dry wood termites of the family Kalotermitidae, from Europe, North America and Australia. These included many species of Kalotermes and one or a few of the following: Glyptotermes, Bifidotermes, Neotermes, Ceratokalotermes, Paraneotermes, Cryptotermes, Porotermes, Marginitermes, Pterotermes, Zootermopsis, Reticulitermes, Coptotermes, Heterotermes, and nasutitermitids. Identifications of pillotinas were made on the basis of large size (0.5--2 micromtere in diameter, 50 to greater than 100 micrometers in length) and wave pattern; these were verified by electron microscopy in K. schwarzi, Pterotermes occidentis and others. Pillotinas were also present in all species of subterranean termites (Family Rhinotermitidae) examined, and in the most primitive Australian termite, Mastotermes darwiniensis (Family Mastotermitidae). They were not observed in damp wood termites (Family Hodotermidiae). Pillotinas are invariably associated with a rich, complex xylophagous microbial community composed primarily of motile prokaryotes, and hypermastigote and polymastigote flagellates. Some have been previously described by those primarily concerned with termite hindgut protozoa. Observations were made on their modes of behaviour, division, and microbial associates. A new genus of spirochaetes, Hollandina, is also described. It is distinguished from Pillotina by a smaller size and several ultrastructural features, but is otherwise closely related taxonomically. Evidence is provided to support Hollande and Gharagozlou's (1967) concept that the pillotinas and hollandinas deserve the taxonomic status of 'family' and that they should be classified with the cristispire siprochaetes a-cording to the scheme developed by Hovind-Hougen (1976). Spirochaetes are treated as a Phylum of the Kingdom Monera (Prokaryota) in the five kingdom system of Whittaker (1969).

Animals↗

Delay in migration of symbiotic algae in Hydra viridis by inhibitors of microtubule protein polymerization.

An English strain of the fresh water symbiotic coelenterate Hydra viridis was experimentally "bleached" of its Chlorella algae and maintained indefinitely by feeding. The algal symbiosis could be re-established by injecting other symbiotic algae into aposymbionts. Although algal uptake and recognition were not affected by microtubule protein polymerization inhibitors, these compounds i.e., podophyllotoxin, beta-peltatin and vinblastine had delaying effects on the migration of the algae through the host digestive cells. Picropodophyllotoxin did not delay migration. The rates, the reversibility and the sensitivity of algal migration to low concentrations of drugs known to bind tubulin suggests the symbionts migrate somehow via labile polymerization of host hydra tubulin into microtubules.

Animals↗

Comment of Egami's concept of the evolution of nitrate respiration.

Recent results suggest that the presence of common nitrogen salts (sodium nitrite and nitrate) in the irradiation medium can markedly protect filamentous blue green algae from potentially lethal ultraviolet light irradiation. Our results as well as general biologica-l arguments as presented by Egami (above) support and extend Egami's original view that anaerobic respiratory pathways using nitrite and nitrate as terminal electron acceptors evolved prior to oxygen requiring aerobic respiratory pathways.

Cyanobacteria↗

Symbiotic theory of the origin of eukaryotic organelles; criteria for proof.

The purpose of a scientific theory is to unite apparently disparate observations into a coherent set of generalizations with predictive power. Historical theories, which necessarily treat complex irreversible events, can never be directly tested. However they certainly can lead to predictions. The 'extreme' version of the serial endosymbiotic theory argues that three classes of eukaryotic organelles had free-living ancestors: mitochondria, basal bodies/flagella/cilia [(9 + 2) homologues] and photosynthetic plastids. Many lines of evidence support this theory and can be interpreted in relation to one another on the basis of this theory. Even if this theory should eventually be proved wrong it has the real advantage of generating a large number of unique experimentally verifiable hypotheses.

Aerobiosis↗