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Internal Changes in Hyphae of Rhizopus sexualis (Smith) Callen and Mucor hiemalis Wehm. associated with Zygospore Formation
Authors:HAWKER  LILIAN E; ABBOTT  PATRICIA McV; GOODAY  MARGARET A
Institution:Department of Botany, University of Bristol
Abstract:The distribution of nucleic acids, nuclei, mitochondria, andreserve foods in vegetative hyphae, zygophores, and developingzygospores of Rhizopus sexualis and Mucor hiemalis were examinedby differential staining. The extreme tips and growing zones of vegetative hyphae containeda high concentration of RNA and numerous mitochondria. Nucleiwere not present at the extreme tip but were numerous just behindit. In older parts of the hyphae the concentration of RNA waslow and both nuclei and mitochondria were fewer than in thezone of elongation. Glycogen and lipids were present in all parts of the livinghyphae except the extreme tips and were more highly concentratedin the older parts of the hyphae. Young zygophores showed a much lower RNA/DNA ratio than thatfound in the vegetative hyphal tips. Transfer of colonies from20? C to temperatures of less than 10? C, which is known toprevent zygospore initiation, caused some but not all recognizablezygophores of R. sexualis, but not those of M. hiemalis, torevert to the RNA/DNA ratio characteristic of vegetative hyphae.Some zygophores of Rhizopus and most of those of Mucor developedinto sporangiophores at low temperature, retaining the relativelylow RNA/DNA ratio throughout development. It is suggested thata reduction in the RNA/DNA ratio is an early step in the changefrom the vegetative state to the reproductive one. At firstthis step is reversible, but soon becomes irreversible by anadditional step, the nature of which is unknown. For some timeafter this the reproductive hyphae are capable of either producingasexual sporangia or of conjugating to produce zygospores. Onceconjugation has taken place development either ceases or continuesuntil the spore is fully mature, but it cannot under any circumstancesthen be reversed. The development and maturation of the zygospore involves a greatincrease in number of both nuclei and mitochondria and in theconcentration of glycogen and lipids.
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