Abstract:
Methods to generate doubled haploid plants and plant components using low mammalian toxicity chromosome doubling agents are disclosed. Chromosome doubling agents provide low mortality rates and higher chromosome doubling rate in plants.
Abstract:
This invention is related to use of a volatile antimicrobial compound against pathogens affecting meats, plants, or plant parts. The volatile antimicrobial compounds provided include certain oxaborole compounds, for example benzoxaboroles. Delivery systems are provided to take advantage of the volatile nature of these antimicrobial compounds. Also combinations with a volatile plant growth regulator, for example 1-methylcyclopropene, are disclosed.
Abstract:
This invention is related to use of a volatile antimicrobial compound against pathogens affecting meats, plants, or plant parts. The volatile antimicrobial compounds provided include certain oxaborole compounds, for example benzoxaboroles. Delivery systems are provided to take advantage of the volatile nature of these antimicrobial compounds. Also combinations with a volatile plant growth regulator, for example 1-methylcyclopropene, are disclosed.
Abstract:
Methods to generate doubled haploid plants and plant components using low mammalian toxicity chromosome doubling agents are disclosed. Chromosome doubling agents provide low mortality rates and higher chromosome doubling rate in plants.
Abstract:
Methods to generate doubled haploid plants and plant components using low mammalian toxicity chromosome doubling agents are disclosed. Chromosome doubling agents provide low mortality rates and higher chromosome doubling rate in plants.
Abstract:
This invention is related to use of a volatile antimicrobial compound against pathogens affecting meats, plants, or plant parts. The volatile antimicrobial compounds provided include certain oxaborole compounds, for example benzoxaboroles. Delivery systems are provided to take advantage of the volatile nature of these antimicrobial compounds. Also combinations with a volatile plant growth regulator, for example 1-methylcyclopropene, are disclosed.
Abstract:
Various aspects disclosed herein relate to aryl substituted aminopyrimidines according to Formula 1: wherein, X1 is N or C—R3; X2 is N or C—R4 provided that X1 and X2 are not both N; R1-R7 are H, CN, CHO, —SCN, NO2, F, Cl, Br, I, substituted or unsubstituted C1-C4-alkyl, substituted or unsubstituted halo-C1-C4-alkyl, substituted or unsubstituted C1-C4-alkoxy, substituted or unsubstituted halo-C1-C4-alkoxy, substituted or unsubstituted C1-C4-thioalkyl, substituted or unsubstituted halo-C1-C4-thioalkyl, substituted or unsubstituted C3-C-7-cycloalkyl, substituted or unsubstituted C2-C4-alkenyl, C2-C4-alkynyl, substituted or unsubstituted C1-C4-acylalkyl, C1-C4-acyloxy, C1-C4 alkoxycarbonyl, C1-C4-alkoxy-amino, C1-C4-alkyl-S(O)═NH, substituted or unsubstituted aryl, substituted or unsubstituted heterocycle, wherein the substituents are one or more of the following F, Cl, Br, OH, CN, NO2, CHO, —SCN, S(O)n-C1-C4-alkyl (where n=0-2), C1-C4-alkyl, halo-C1-C4-alkyl, C1-C4-alkylamine, C1-C4-alkoxy, halo-C1-C4-alkoxy, C1-C4-thioalkyl, halo-C1-C4-thioalkyl, C1-C4-alkylacyl, C1-C4-acyloxy, C1-C4 alkoxycarbonyl, C1-C4-alkoxy-imino, hydroxy-imino; C-C4-alkyl-S(O)═NH; and Q is a substituted or unsubstituted aryl, substituted or unsubstituted heterocycle wherein the substituents of Q are taken from R1-R7
Abstract:
Methods to generate doubled haploid plants and plant components using low mammalian toxicity chromosome doubling agents are disclosed. Chromosome doubling agents provide low mortality rates and higher chromosome doubling rate in plants.