A01N63/00

THERAPEUTIC OR NON-THERAPEUTIC USE OF PROTOZOANS OF THE WILLAERTIA GENUS AS A FUNGISTATIC AND/OR FUNGICIDE
20200390826 · 2020-12-17 ·

The invention relates to a therapeutic or non-therapeutic use of protozoans, for examples protozoans of the Willaertia magna amoeba species, as a fungistatic and/or fungicide.

THERAPEUTIC OR NON-THERAPEUTIC USE OF PROTOZOANS OF THE WILLAERTIA GENUS AS A FUNGISTATIC AND/OR FUNGICIDE
20200390826 · 2020-12-17 ·

The invention relates to a therapeutic or non-therapeutic use of protozoans, for examples protozoans of the Willaertia magna amoeba species, as a fungistatic and/or fungicide.

THERAPEUTIC OR NON-THERAPEUTIC USE OF PROTOZOANS OF THE WILLAERTIA GENUS AS A FUNGISTATIC AND/OR FUNGICIDE
20200390826 · 2020-12-17 ·

The invention relates to a therapeutic or non-therapeutic use of protozoans, for examples protozoans of the Willaertia magna amoeba species, as a fungistatic and/or fungicide.

Therapeutic agents

An immunoresponsive cell, such as a T-cell expressing (i) a second generation chimeric antigen receptor comprising: (a) a signalling region; (b) a co-stimulatory signalling region; (c) a transmembrane domain; and (d) a binding element that specifically interacts with a first epitope on a target antigen; and (ii) a chimeric costimulatory receptor comprising (e) a co-stimulatory signalling region which is different to that of (b); (f) a transmembrane domain; and g) a binding element that specifically interacts with a second epitope on a target antigen. This arrangement is referred to as parallel chimeric activating receptors (pCAR). Cells of this type are useful in therapy, and kits and methods for using them as well as methods for preparing them are described and claimed.

Plant growth-promoting microbes, compositions, and uses

The present application relates to plant growth promoting microbes (PGPMs), compositions comprising these PGPMs and methods of using these PGPMs and/or compositions for enhancing plant health, plant growth and/or plant yield, and/or for preventing, inhibiting, or treating the development of plant pathogens or the development of phytopathogenic diseases. This application also provides non-naturally occurring plant varieties that are artificially infected with a PGPM descried herein, as well as seed, reproductive tissue, vegetative tissue, regenerative tissues, plant parts, or progeny thereof.

Plant growth-promoting microbes, compositions, and uses

The present application relates to plant growth promoting microbes (PGPMs), compositions comprising these PGPMs and methods of using these PGPMs and/or compositions for enhancing plant health, plant growth and/or plant yield, and/or for preventing, inhibiting, or treating the development of plant pathogens or the development of phytopathogenic diseases. This application also provides non-naturally occurring plant varieties that are artificially infected with a PGPM descried herein, as well as seed, reproductive tissue, vegetative tissue, regenerative tissues, plant parts, or progeny thereof.

PLANT GROWTH-PROMOTING MICROBES AND USES THEREFOR

Microbial strains, compositions, and methods of use thereof to enhance the growth and/or yield of a plant are provided. Also provided are materials and methods for presenting, inhibiting, or treating the development of plant pathogens or phytopathogenic diseases. The disclosure also provides non-naturally occurring plant and derivatives thereof such as plants artificially infected with a microbial strain of the invention.

POLYSACCHARIDE PRIMING PLANT RESISTANCE TO VIRUSES
20200383335 · 2020-12-10 ·

The present disclosure relates to fungi, a culture filtrate thereof and a polysaccharide and their applications in inducing or priming plant resistance to viruses. Aspects of the present disclosure provides a cultured filtrate, derived from a fungus belonging to the genus Trichosporon, induces strong resistance to various viruses on different plants.

Hypersensitive response elicitor peptides and use thereof

Disclosed are hypersensitive-response eliciting peptides that exhibit improved solubility, stability, resistance to chemical degradation, or a combination of these properties. Use of these peptides or fusion polypeptides, or DNA constructs encoding the same, for modulating plant biochemical signaling, imparting disease resistance to plants, enhancing plant growth, imparting tolerance to biotic stress, imparting tolerance and resistance to abiotic stress, imparting desiccation resistance to cuttings removed from ornamental plants, imparting post-harvest disease or post-harvest desiccation resistance to a fruit or vegetable, or enhancing the longevity of fruit or vegetable ripeness are also disclosed.

Hypersensitive response elicitor peptides and use thereof

Disclosed are hypersensitive-response eliciting peptides that exhibit improved solubility, stability, resistance to chemical degradation, or a combination of these properties. Use of these peptides or fusion polypeptides, or DNA constructs encoding the same, for modulating plant biochemical signaling, imparting disease resistance to plants, enhancing plant growth, imparting tolerance to biotic stress, imparting tolerance and resistance to abiotic stress, imparting desiccation resistance to cuttings removed from ornamental plants, imparting post-harvest disease or post-harvest desiccation resistance to a fruit or vegetable, or enhancing the longevity of fruit or vegetable ripeness are also disclosed.