Patent classifications
A01N63/30
METHODS OF INCREASING THE GERMINATION RATE OF FUNGAL SPORES
The present invention relates to a method of increasing the germination rate of spores of a fungal microorganisms formulated in a liquid composition essentially free of water, comprising, prior to applying to a plant, plant part or locus where a plant is growing or intended to be grown, suspending said composition in an agriculturally acceptable water-based liquid in a ratio of liquid composition and water-based liquid of between 1000:1 and 1:10. The invention further relates to a method of increasing efficacy of a biological control agent based on spores of a fungal microorganisms and a method of controlling the quality of such biological control agents.
METHODS OF INCREASING THE GERMINATION RATE OF FUNGAL SPORES
The present invention relates to a method of increasing the germination rate of spores of a fungal microorganisms formulated in a liquid composition essentially free of water, comprising, prior to applying to a plant, plant part or locus where a plant is growing or intended to be grown, suspending said composition in an agriculturally acceptable water-based liquid in a ratio of liquid composition and water-based liquid of between 1000:1 and 1:10. The invention further relates to a method of increasing efficacy of a biological control agent based on spores of a fungal microorganisms and a method of controlling the quality of such biological control agents.
BIPOLARIS YAMADAE (Y. NISIK.) SHOEMAKER, AND SCREENING AND IDENTIFICATION METHOD THEREFOR AND USE THEREOF
A Bipolaris yamadae (Y. Nisik.) shoemaker (HXDC-1-2), and a screening and identification method therefor and use thereof. The Bipolaris yamadae (Y Nisik.) strain (HXDC-1-2) is deposited in the China General Microbiological Culture Collection Center with the accession number CGMCC No. 17778. The Bipolaris yamadae (Y. Nisik.) strain (HXDC-1-2) is applied to biological weed control when the conidial concentration is 10.sup.2 conidia/ml or more.
SYMBIONT FOR ENHANCEMENT OF PLANT PERFORMANCE
The present disclosure provides a novel endophyte, Serendipita vermifera ssp. bescii (“S. bescii”), uses thereof and methods incorporating the use thereof for enhancement of plant performance. The present disclosure also provides methods for detecting the presence of and identifying S. bescii.
SYMBIONT FOR ENHANCEMENT OF PLANT PERFORMANCE
The present disclosure provides a novel endophyte, Serendipita vermifera ssp. bescii (“S. bescii”), uses thereof and methods incorporating the use thereof for enhancement of plant performance. The present disclosure also provides methods for detecting the presence of and identifying S. bescii.
POLYMERIC PARTICLES CONTAINING MICROORGANISMS
The present invention relates to polymeric particles comprising a biodegradable polymer, and at least one microorganism in a total concentration of at least 10.sup.8 CFU/g dry weight that is stable for at least 35 weeks at 30° C. and optionally additional carriers and additives as well as to methods for producing polymeric particles and use thereof.
POLYMERIC PARTICLES CONTAINING MICROORGANISMS
The present invention relates to polymeric particles comprising a biodegradable polymer, and at least one microorganism in a total concentration of at least 10.sup.8 CFU/g dry weight that is stable for at least 35 weeks at 30° C. and optionally additional carriers and additives as well as to methods for producing polymeric particles and use thereof.
POLYMERIC PARTICLES CONTAINING MICROORGANISMS
The present invention relates to polymeric particles comprising a biodegradable polymer, and at least one microorganism in a total concentration of at least 10.sup.8 CFU/g dry weight that is stable for at least 35 weeks at 30° C. and optionally additional carriers and additives as well as to methods for producing polymeric particles and use thereof.
NON-AQUEOUS, NON-OIL LIVE MICROBIAL COMPOSITIONS
The present invention is directed to non-aqueous, non-oil liquid compositions comprising live microbial organisms and a liquid carrier. The present invention is further directed methods of controlling pests comprising applying an effective amount of a non-aqueous, non-oil liquid composition comprising live microbial organisms and a liquid carrier to an area in need of pest control.
NON-AQUEOUS, NON-OIL LIVE MICROBIAL COMPOSITIONS
The present invention is directed to non-aqueous, non-oil liquid compositions comprising live microbial organisms and a liquid carrier. The present invention is further directed methods of controlling pests comprising applying an effective amount of a non-aqueous, non-oil liquid composition comprising live microbial organisms and a liquid carrier to an area in need of pest control.