Physiology of sexual reproduction in mosses

[1]  M. Bopp,et al.  Hormonal Regulation of Development in Mosses , 1987 .

[2]  R. Jayaswal,et al.  Occurrence and biosynthesis of auxin in protonema of the moss Funaria hygrometrica , 1985 .

[3]  P. Sharma,et al.  Effect of Cyclic 3',5'-Adenosine Monophosphate and Kinetin on Growth and Fertility in the Male Clones of the Moss Microdus brasiliensis (Dub.) Ther. , 1985, Journal of plant physiology.

[4]  S. C. Bhatla,et al.  Subcellular Localization of Adenylate Cyclase in the Shoot Apices of Bryum argenteum Hedw , 1984 .

[5]  S. C. Bhatla,et al.  Effect of chelating agents and metal ions on gametangial formation in the moss Bryum argenteum Hedw. , 1983 .

[6]  R. Chopra,et al.  EFFECT OF KINETIN AND CYCLIC 3′, 5′-ADENOSINE MONOPHOSPHATE ON BUD INDUCTION IN THE MOSS TIMMIELLA ANOMALA , 1983 .

[7]  S. C. Bhatla,et al.  Biological significance of cyclic adenosine 3′,5′‐monophosphate in mosses , 1983 .

[8]  M. Johri,et al.  Partial purification and characterization of cyclic AMP phosphodiesterases from Funaria hygrometrica. , 1982, Archives of biochemistry and biophysics.

[9]  R. Chopra,et al.  Effect of Liquid Medium, Activated Charcoal and pH on the Onset of Reproductive Phase in the Moss Bartramidula bartramioides , 1982 .

[10]  S. C. Bhatla,et al.  Hormonal Regulation of Gametangial Formation in the Moss Bryum argenteum Hedw , 1981 .

[11]  S. C. Bhatla,et al.  EFFECT OF PHYSICAL FACTORS ON GAMETANGIAL INDUCTION, FERTILIZATION AND SPOROPHYTE DEVELOPMENT IN THE MOSS BRYUM ARGENTEUM GROWN IN VITRO , 1981 .

[12]  S. C. Bhatla,et al.  Involvement of Cyclic 3′,5′ Adenosine Monophosphate and Other Purine Derivatives in Sex Induction in the Moss Bryum argenteum , 1981 .

[13]  Trevor L. Wang,et al.  Cytokinins from the Moss Physcomitrella patens. , 1981, Plant physiology.

[14]  Trevor L. Wang,et al.  Cytokinin Biosynthesis in Mutants of the Moss Physcomitrella patens. , 1981, Plant physiology.

[15]  M. Dietert THE EFFECT OF TEMPERATURE AND PHOTOPERIOD ON THE DEVELOPMENT OF GEOGRAPHICALLY ISOLATED POPULATIONS OF FUNARIA HYGROMETRICA AND WEISSIA CONTROVERSA , 1980 .

[16]  B. Gunning,et al.  Structure and Function of Transfer Cells in the Sporophyte Haustorium of Funaria hygrometrica Hedw I. THE DEVELOPMENT AND ULTRASTRUCTURE OF THE AUSTORIUM , 1979 .

[17]  L. D. Spiess Antagonism of Cytokinin Induced Callus in Pylaisiella selwynii by Nucleosides and Cyclic Nucleotides1,2 , 1979 .

[18]  K. W. Hughes,et al.  Sexual Life Cycle of Three Species of Funariaceae in Culture , 1978 .

[19]  N. Ashton,et al.  Evidence for the restricted passage of metabolites into the sporophyte of the moss Physcomitrella patens (Hedw.) Br. Eur. , 1978 .

[20]  H. Schraudolf Wirkungen von cycl. 3′, 5′-AMP, mononucleotiden und theophyllin auf antheridienbildung und dunkelkeimung von Anemia phyllitidis L. Sw. , 1977 .

[21]  A. Handa,et al.  Cyclic adenosine 3':5'-monophosphate in moss protonema: a comparison of its levels by protein kinase and gilman assays. , 1977, Plant physiology.

[22]  D. Paolillo,et al.  Effect of Light and Other Factors on Capsule Expansion in Funaria hygrometrica , 1976 .

[23]  J. Varner,et al.  Hormones**Sections I, II and III prepared by J. E. Varner, Sections IV and V prepared by David Tuan-hua Ho. , 1976 .

[24]  Daphne Vince-Prue,et al.  Photoperiodism in Plants , 1975 .

[25]  D. Paolillo,et al.  On the role of the calyptra in permitting expansion of capsules in the moss Funaria , 1975 .

[26]  A. Ajami,et al.  Identification of the Flower-inducing Factor Isolated from Aphid Honeydew as being Salicylic Acid. , 1974, Plant physiology.

[27]  M. Johri,et al.  Auxin regulation of caulonema formation in moss protonema. , 1973, Nature: New biology.

[28]  M. Newton An investigation of photoperiod and temperature in relation to the life cycles of Mnium hornum Hedw. and M. undulatum Sw. (Musci) with reference to their histology , 1972 .

[29]  M. Newton Sex-ratio differences in Mnium hornum Hedw. and M. undulatum Sw. in relation to spore germination and vegetative regeneration , 1972 .

[30]  P. Engel THE INDUCTION OF BIOCHEMICAL AND MORPHOLOGICAL MUTANTS IN THE MOSS PHYSCOMITRELLA PATENS , 1968 .

[31]  B. Nebel,et al.  LIGHT, TEMPERATURE AND CARBOHYDRATE REQUIREMENTS FOR SHOOT‐BUD INITIATION FROM PROTONEMATA IN THE MOSS PHYSCOMITRIUM TURBINATUM , 1968 .

[32]  G. Philippi Sporenkeimung und Protonemawachstum von Moosen verschiedener Standorte in Abhängigkeit vom pH-Wert , 1966 .

[33]  J. H. Monroe Some Factors Evoking Formation of Sex Organs in Funaria , 1965 .

[34]  K. Benson-Evans Physiology of the Reproduction of Bryophytes , 1964 .

[35]  J. G. Hughes THE EFFECTS OF DAY‐LENGTH ON THE DEVELOPMENT OF THE SPOROPHYTE OF POLYTRICHUM ALOIDES HEDW. AND P. PILIFERUM HEDW. , 1962 .

[36]  R. Belkengren GROWTH AND SEXUAL REPRODUCTION OF THE MOSS AMBLYSTEGIUM RIPARIUM UNDER STERILE CONDITIONS , 1962 .

[37]  K. Benson-Evans Environmental Factors and Bryophytes , 1961, Nature.

[38]  K. C. Hamner,et al.  Responses of Marchantia polymorpha to Nutrient Supply and Photoperiod , 1940, Botanical Gazette.