Biology of flower-infecting fungi.
暂无分享,去创建一个
[1] R. Barreto,et al. Biological control ofBotrytis cinerea in residues and flowers of Rose (Rosa hybrida) , 1998, Phytoparasitica.
[2] E. Kokko,et al. Infection of alfalfa pollen bySclerotinia sclerotiorum , 1997, Phytoparasitica.
[3] B. Goates,et al. Nonsystemic bunt fungi--Tilletia indica and T. horrida: a review of history, systematics, and biology. , 2006, Annual review of phytopathology.
[4] J. Burdon,et al. The current and future dynamics of disease in plant communities. , 2006, Annual review of phytopathology.
[5] C. K. Evans,et al. Distribution of Mycelial Colonies and Lesions in Field-Grown Barley Inoculated with Fusarium graminearum. , 2006, Phytopathology.
[6] L. Cedeño,et al. Cladosporium echinulatum, causante de manchas en hojas y flores del clavel en Mérida-Venezuela , 2006 .
[7] H. Scherm,et al. Mimicry in plant-parasitic fungi. , 2006, FEMS microbiology letters.
[8] M. Aizen,et al. Nectar concentration and composition of 26 species from the temperate forest of South America. , 2006, Annals of botany.
[9] H. Rogers. Programmed cell death in floral organs: how and why do flowers die? , 2006, Annals of botany.
[10] B. E. Giles,et al. Natural selection on floral traits of female Silene dioica by a sexually transmitted disease. , 2006, The New phytologist.
[11] A. Newton,et al. Induced resistance for plant disease control: maximizing the efficacy of resistance elicitors. , 2005, Phytopathology.
[12] J. Hamrick,et al. The Mating System of Verbascum thapsus (Scrophulariaceae): The Effect of Plant Height , 2005, International Journal of Plant Sciences.
[13] J. Erwin,et al. Naturally occurring variation in high temperature induced floral bud abortion across Arabidopsis thaliana accessions , 2005 .
[14] L. Eguiarte,et al. Reproductive ecology of five sympatric Agave Littaea (Agavaceae) species in central Mexico. , 2005, American journal of botany.
[15] H. Scherm,et al. Electrostatic application of a plant-disease biocontrol agent for prevention of fungal infection through the stigmatic surfaces of blueberry flowers , 2005 .
[16] K. Delaplane,et al. Effect of flower-applied Serenade biofungicide (Bacillus subtilis) on pollination-related variables in rabbiteye blueberry , 2005 .
[17] T. Nakashizuka,et al. Resource allocation to reproductive organs during masting in the tropical emergent tree, Dipterocarpus tempehes , 2005, Journal of Tropical Ecology.
[18] T. Maoka,et al. The Complete Nucleotide Sequence and Biotype Variability of Papaya leaf distortion mosaic virus. , 2005, Phytopathology.
[19] J. Antonovics. Plant venereal diseases: insights from a messy metaphor. , 2004, The New phytologist.
[20] D. K. Sandhu,et al. Yeasts associated with pollinating bees and flower nectar , 1985, Microbial Ecology.
[21] Michael Brysch-Herzberg. Ecology of yeasts in plant-bumblebee mutualism in Central Europe. , 2004, FEMS microbiology ecology.
[22] K. Delaplane,et al. Effectiveness of honey bees in delivering the biocontrol agent Bacillus subtilis to blueberry flowers to suppress mummy berry disease , 2004 .
[23] P. Tudzynski,et al. Claviceps purpurea: molecular aspects of a unique pathogenic lifestyle. , 2004, Molecular plant pathology.
[24] Kelian Sun,et al. Ovule Abortion in Arabidopsis Triggered by Stress1 , 2004, Plant Physiology.
[25] E. Curry,et al. Temperature and Pomaceous Flower Age Related to Colonization by Erwinia amylovora and Antagonists. , 2004, Phytopathology.
[26] H. Scherm,et al. Pollen mimicry during infection of blueberry flowers by conidia of Monilinia vaccinii-corymbosi , 2004 .
[27] H. Scherm,et al. Biological control of infection of blueberry flowers caused by Monilinia vaccinii-corymbosi , 2004 .
[28] M. Boehm,et al. Effects of Choline, Betaine, and Wheat Floral Extracts on Growth of Fusarium graminearum. , 2004, Plant disease.
[29] K. Delaplane,et al. Nectar-Robbing Carpenter Bees Reduce Seed-Setting Capability of Honey Bees (Hymenoptera: Apidae) in Rabbiteye Blueberry, Vaccinium ashei, ‘Climax’ , 2004 .
[30] A. Wennström. The effect of systemic rusts and smuts on clonal plants in natural systems , 1999, Plant Ecology.
[31] J. Lundberg,et al. An update of the Angiosperm Phylogeny Group classification for the orders and families of flowering plants : APG II THE ANGIOSPERM PHYLOGENY GROUP * , 2003 .
[32] S. Law,et al. An In Vitro Study of Fungicide Effects on Pollen Germination and Tube Growth in Almond , 2003 .
[33] R. Mittler,et al. A major function of the tobacco floral nectary is defense against microbial attack , 2003, Plant Systematics and Evolution.
[34] L. Ericson,et al. The concept of sexually transmitted diseases in plants: definition and applicability , 2003 .
[35] J. Ornelas,et al. Hummingbirds as vectors of fungal spores in Moussonia deppeana (Gesneriaceae): taking advantage of a mutualism? , 2003, American-Eurasian journal of botany.
[36] S. Law,et al. Fungicide sprays can injure the stigmatic surface during receptivity in almond flowers. , 2003, Annals of botany.
[37] H. Wen,et al. Infection of Alfalfa (Medicago sativa L.) Pollen by Mycoparasitic Fungi Coniothyrium minitans Campbell and Gliocladium catenulatum Gilmon and Abbott , 2003 .
[38] M. Nepi,et al. Nectar biodiversity: a short review , 2003, Plant Systematics and Evolution.
[39] H. Scherm,et al. Relationships Between Blueberry Flower Age, Pollination, and Conidial Infection by Monilinia vaccinii-corymbosi. , 2002, Phytopathology.
[40] C. Schardl,et al. Evolutionary Origins and Ecological Consequences of Endophyte Symbiosis with Grasses , 2002, The American Naturalist.
[41] M. Boots,et al. The evolution of risky behaviour in the presence of a sexually transmitted disease , 2002, Proceedings of the Royal Society of London. Series B: Biological Sciences.
[42] B. Fitt,et al. Factors affecting the development of Botrytis cinerea (grey mould) on linseed (Linum usitatissimum) buds, flowers and capsules , 2002 .
[43] S. Stephenson,et al. Inflorescences of Neotropical herbs as a newly discovered microhabitat for myxomycetes , 2002, Mycologia.
[44] H. Vahidi,et al. Antimicrobial Properties of Croccus sativus L. , 2002 .
[45] J. Sauerborn,et al. Benzothiadiazole Activates Resistance in Sunflower (Helianthus annuus) to the Root-Parasitic Weed Orobanche cuman. , 2002, Phytopathology.
[46] G. Gilbert. Evolutionary ecology of plant diseases in natural ecosystems. , 2002, Annual review of phytopathology.
[47] E. Lord,et al. The mechanisms of pollination and fertilization in plants. , 2002, Annual review of cell and developmental biology.
[48] H Scherm,et al. Interactions Between Chill-Hours and Degree-Days Affect Carpogenic Germination in Monilinia vaccinii-corymbosi. , 2001, Phytopathology.
[49] A. Dobson,et al. Sexually transmitted diseases in polygynous mating systems: prevalence and impact on reproductive success , 2000, Proceedings of the Royal Society of London. Series B: Biological Sciences.
[50] P. Oudemans,et al. Variation and Heritability of Phenology in the Fungus Monilinia vaccinii-corymbosi on Blueberry. , 2000, Phytopathology.
[51] A. Fahn. Structure and function of secretory cells , 2000 .
[52] C. Windels. Economic and social impacts of fusarium head blight: changing farms and rural communities in the northern great plains. , 2000, Phytopathology.
[53] D. Susko,et al. Effects of resource availability, and fruit and ovule position on components of fecundity in Alliaria petiolata (Brassicaceae). , 1999 .
[54] A. Widmer,et al. Floral mimicry: a fascinating yet poorly understood phenomenon. , 1999, Trends in plant science.
[55] L. Aarssen,et al. The advantage of being tall: Higher flowers receive more pollen in Verbascum thapsus L. (Scrophulariaceae) , 1999 .
[56] E. Kokko,et al. Infection of alfalfa pollen by Botrytis cinerea , 1999 .
[57] N. Mclaren,et al. Ergot: A New Disease Threat to Sorghum in the Americas and Australia. , 1998, Plant disease.
[58] G. Holz,et al. Effects of Fruit and Pollen Exudates on Growth of Botrytis cinerea and Infection of Plum and Nectarine Fruit. , 1998, Plant disease.
[59] P. García‐Fayos,et al. Ecological causes, function, and evolution of abortion and parthenocarpy in Pistacia lentiscus (Anacardiaceae) , 1998 .
[60] K. B. Johnson,et al. Management of fire blight: a case study in microbial ecology. , 1998, Annual review of phytopathology.
[61] J. Smilanick,et al. Karnal Bunt of Wheat. , 1997, Plant disease.
[62] J. Sutton,et al. Effectiveness of bumblebees and honeybees for delivering inoculum of Gliocladium roseum to raspberry flowers to control Botrytis cinerea , 1997 .
[63] W. Doorn. Review article. Effects of pollination on floral attraction and longevity , 1997 .
[64] J. Shykoff. Sex differences in floral nectar production by Silene latifolia (Caryophyllaceae), with reference to susceptibility to a pollinator-borne fungal disease , 1997 .
[65] W. Doorn. Effects of pollination on floral attraction and longevity. Review article , 1997 .
[66] P. Oudemans,et al. PHENOLOGY OF THE MUMMY BERRY FUNGUS AND THE BLUEBERRY HOST: IMPLICATIONS FOR RESISTANCE BREEDING , 1997 .
[67] O. Kaltz,et al. ANTHER SMUT DISEASE IN DIANTHUS SILVESTER (CARYOPHYLLACEAE): NATURAL SELECTION ON FLORAL TRAITS , 1997, Evolution; international journal of organic evolution.
[68] P. Oudemans,et al. Phenology of Apothecium Production in Populations of Monilinia vaccinii-corymbosi from Early- and Late-Maturing Blueberry Cultivars. , 1997, Phytopathology.
[69] P. Thrall,et al. SEXUALLY TRANSMITTED DISEASES IN ANIMALS: ECOLOGICAL AND EVOLUTIONARY IMPLICATIONS , 1996, Biological reviews of the Cambridge Philosophical Society.
[70] A. Biere,et al. SEX‐SPECIFIC COSTS OF RESISTANCE TO THE FUNGAL PATHOGEN USTILAGO VIOLACEA (MICROBOTRYUM VIOLACEUM) IN SILENE ALBA , 1996, Evolution; international journal of organic evolution.
[71] A. Zangerl,et al. The Probability of Attack and Patterns of Constitutive and Induced Defense: A Test of Optimal Defense Theory , 1996, The American Naturalist.
[72] M. Palm,et al. Fungi on Rhododendron: A World Reference , 1996 .
[73] Steven A. Frank,et al. Models of Parasite Virulence , 1996, The Quarterly Review of Biology.
[74] B. Bowes. A Color Atlas of Plant Structure , 1996 .
[75] C. Schardl. EPICHLOE SPECIES: fungal symbionts of grasses. , 1996, Annual review of phytopathology.
[76] K. Clay,et al. The Red Queen Hypothesis and plant/pathogen interactions. , 1996, Annual review of phytopathology.
[77] Gary G. Koch,et al. Categorical Data Analysis Using The SAS1 System , 1995 .
[78] O. Kaltz. Plant venereal disease: a model for integrating genetics, ecology and epidemiology. , 1995, Trends in ecology & evolution.
[79] J. Shykoff,et al. Pollinator visitation patterns, floral rewards and the probability of transmission of Microbotryum violaceum, a venereal disease of plants , 1995 .
[80] Peter H. Thrall,et al. Frequency-Dependent Disease Transmission and the Dynamics of the Silene-Ustilago Host-Pathogen System , 1995, The American Naturalist.
[81] H. Jakobsen,et al. Influence of Temperature and Floret Age on Nectar Secretion in Trifolium repens L. , 1994 .
[82] B. Roy. The use and abuse of pollinators by fungi. , 1994, Trends in ecology & evolution.
[83] P. K. Endress,et al. Diversity and evolutionary biology of tropical flowers , 1994 .
[84] A. Wennström. Systemic diseases on hosts with different growth patterns , 1994 .
[85] Kálmán Vánky,et al. European smut fungi , 1994 .
[86] B. E. Giles,et al. Anther-smut infection in Silene dioica: variation in floral morphology and patterns of spore deposition , 1993 .
[87] H. M. Alexander,et al. Genotypic variation in plant disease resistance―physiological resistance in relation to field disease transmission , 1993 .
[88] T. Turkington,et al. Use of petal infestation to forecast Sclerotinia stem rot of canola: the influence of inoculum variation over the flowering period and canopy density. , 1993 .
[89] J. Sutton,et al. Manipulation and Vectoring of Biocontrol Organisms to Manage Foliage and Fruit Diseases in Cropping Systems , 1993 .
[90] K. Snetselaar,et al. Infection of maize stigmas by Ustilago maydis: light and electron microscopy , 1993 .
[91] G. Mink. Pollen and seed-transmitted viruses and viroids. , 1993, Annual review of phytopathology.
[92] A. W. Cooke,et al. Mango stem end rot pathogens - Fruit infection by endophytic colonisation of the inflorescence and pedicel , 1992 .
[93] J. Sutton,et al. Evaluation of microorganisms for biocontrol ofBotrytis cinereain strawberry , 1991 .
[94] K. Clay. Parasitic castration of plants by fungi. , 1991, Trends in ecology & evolution.
[95] P. Ewald,et al. Transmission modes and the evolution of virulence , 1991, Human nature.
[96] H. Wetzstein. Stigmatic Surface Degeneration and Inhibition of Pollen Germination with Selected Pesticidal Sprays during Receptivity in Pecan , 1990 .
[97] M. Lachance,et al. THE NECTAR-INHABITING YEASTS AND THEIR EFFECT ON POLLEN GERMINATION IN COMMON MILKWEED, ASCLEPIAS SYRIACA L. , 1990 .
[98] P. Kevan,et al. The effect of the natural assemblage of microorganisms and selected strains of the yeast Metschnikowia reukaufii in controlling the germination of pollen of the common milkweed Asclepias syriaca , 1990 .
[99] A. Rossman,et al. Fungi on Plants and Plant Products in the United States , 1989 .
[100] E. Neergaard. Histological Investigation of Flower Parts of Cucumber Infected by Didymella Bryoniae , 1989 .
[101] Ola Jennersten. Insect dispersal of fungal disease: effects of Ustilago infection on pollinator attraction in Viscaria vulgaris , 1988 .
[102] J. Burdon. Diseases and Plant Population Biology , 1987 .
[103] R. R. Williams,et al. The mechanism of yield suppression by a triadimefon fungicide programme on the apple cv Cox’s Orange Pippin , 1987 .
[104] P. Bristow,et al. Effects of selected fungicides, insecticides, and adjuvants on in vitro germination of highbush blueberry pollen , 1987 .
[105] R M May,et al. The invasion, persistence and spread of infectious diseases within animal and plant communities. , 1986, Philosophical transactions of the Royal Society of London. Series B, Biological sciences.
[106] J. A. Hutcheon,et al. Effects of fungicides on long‐term cropping and fruit quality of apple , 1986 .
[107] J. Andrews,et al. r- and K-Selection and Microbial Ecology , 1986 .
[108] P. Mantle,et al. Stigma Constriction in Pearl Millet, a Factor Influencing Reproduction and Disease , 1985 .
[109] E. Kokko,et al. Infection of alfalfa pollen by Verticillium albo-atrum. , 1985 .
[110] R. Knox. Pollen-Pistil Interactions , 1984 .
[111] R. Williams,et al. Control of ergot in pearl millet through pollen management , 1983 .
[112] Wayne M. Getz,et al. Epidemic Models: Thresholds and Population Regulation , 1983, The American Naturalist.
[113] H. G. Baker,et al. Floral nectar sugar constituents in relation to pollinator type , 1983 .
[114] J. F. Brown,et al. Effects of leaf age, host growth stage, leaf injury and pollen on the infection of sunflower by Alternaria helianthi. , 1983 .
[115] C. Jones,et al. Handbook of experimental pollination biology , 1983 .
[116] S. Bains,et al. Distribution, spread and perpetuation of Peronosclerospora philippinensis in Punjab. , 1982 .
[117] Roy M. Anderson,et al. The Population Dynamics of Microparasites and Their Invertebrate Hosts , 1981 .
[118] M. Sedgley,et al. Stigma Secretion in the Watermelon Before and After Pollination , 1980, Botanical Gazette.
[119] R. Levins,et al. Ecological Theory and Pest Management , 1980 .
[120] R. Williams,et al. Pollination effects on pearl millet ergot , 1980 .
[121] H. Smith,et al. Specificity of choline and betaine as stimulants of Fusarium graminearum , 1978 .
[122] R. R. Williams,et al. Fungicide toxicity to apple pollen in the anther , 1978 .
[123] J. Williams,et al. Transport of Sclerotinia sclerotiorum ascospores by rapeseed pollen in Alberta. , 1978 .
[124] K. Shivanna,et al. The receptive surface of the angiosperm stigma , 1977 .
[125] R. Cates,et al. TOWARD A GENERAL THEORY OF PLANT. ANTIHERBIVORE CHEMISTRY , 1976 .
[126] H. Smith,et al. The isolation and identification of choline and betaine as the two major components in anthers and wheat germ that stimulate Fusarium graminearum in vitro , 1974 .
[127] H. G. Baker,et al. Amino-acids in Nectar and their Evolutionary Significance , 1973, Nature.
[128] D. Mathre,et al. Biology and control of ergot on male sterile Wheat and Barley. , 1971 .
[129] R. G. Stanley,et al. Pollen Protein Diffusates , 1971 .
[130] F. W. Martin. COMPOUNDS FROM THE STIGMAS OF TEN SPECIES , 1969 .
[131] H. Weltzien,et al. Untersuchungen über Blüteninfektionen , 1967 .
[132] M. Percival. TYPES OF NECTAR IN ANGIOSPERMS , 1961 .
[133] J. Jung,et al. Über die Hemmwirkung des Gynäzeums bei Primula obconica auf Bakterien und Pilze , 1960 .
[134] C. Batts,et al. The infection of barley by loose smut (Ustilago nuda (Jens.) Rostr.) , 1960 .