The yeast responds to amino acid deprivation by activating a pathway conserved in eukaryotes to overcome the starvation stress. We have screened the entire yeast heterozygous deletion collection to identify strains haploinsufficient for growth in the presence of sulfometuron methyl, which causes starvation for isoleucine and valine. We have discovered that cells devoid of are sensitive to sulfometuron methyl, and loss of heterozygosity at the locus can complicate screening the heterozygous deletion collection. We identified 138 cases of loss of heterozygosity in this screen. After eliminating the issues of the loss of heterozygosity, strains isolated from the collection were retested on sulfometuron methyl. To determine the general effect of the mutations for a starvation response, SMM-sensitive strains were tested for the ability to grow in the presence of canavanine, which induces arginine starvation, and strains that were were also tested for growth in the presence of ethionine, which causes methionine starvation. Many of the genes identified in our study were not previously identified as starvation-responsive genes, including a number of essential genes that are not easily screened in a systematic way. The genes identified span a broad range of biological functions, including many involved in some level of gene expression. Several unnamed proteins have also been identified, giving a clue as to possible functions of the encoded proteins.
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http://dx.doi.org/10.1534/g3.116.037416 | DOI Listing |
The integrated stress response (ISR) is a conserved eukaryotic signaling pathway that responds to diverse stress stimuli to restore proteostasis. The strength and speed of ISR activation must be tuned properly to allow protein synthesis while maintaining proteostasis. Here, we describe how genetic perturbations change the dynamics of the ISR in budding yeast.
View Article and Find Full Text PDFAnal Chim Acta
January 2025
Laboratoire OPTIMAG, Université de Brest, 6 Av. Victor Le Gorgeu, 29285, Brest, Cedex, France. Electronic address:
Toxics
March 2024
Department of Agronomic and Forestry Sciences, Plant Science Center, Universidade Federal Rural do Semi-Árido-UFERSA, Av. Francisco Mota, 572, Costa e Silva, P.O. Box 137, Mossoró 59625-900, RN, Brazil.
The leaching of herbicides into the soil is essential to control germinating seeds and parts of vegetative weeds. However, herbicide transportation to deeper soil layers can result in groundwater contamination and, consequently, environmental issues. In this research, our objective was to investigate differences in herbicide leaching between commercial formulations and analytical standards using three different soils.
View Article and Find Full Text PDFHeliyon
July 2023
Department of Crop Science, Agriculture College "Luiz de Queiroz", University of São Paulo, Piracicaba, SP, Brazil.
Biodegradation studies of herbicides applied to the soil alone and in a mixture are required since herbicides are often used in combinations to control weeds. When herbicides are applied in mixtures, interactions may affect their environmental fate. Thus, the objective of this study was to evaluate the distribution of extractable residue, bound residue, biodegradation, and mineralization of diuron, hexazinone, and sulfometuron-methyl when applied alone and in a mixture in two agricultural soils.
View Article and Find Full Text PDFEcotoxicol Environ Saf
June 2022
College of Life Science and Agricultural Engineering, Nanyang Normal University, Nanyang 473061, PR China. Electronic address:
The analysis of soil bacterial community has guiding significance for fully utilization of soil microbial resources. The results of high-throughput sequencing (HTS) showed that the bacteria in the three sulfometuron-methyl contaminated soil samples were mainly composed of 677 genera, including Phenylobacterium, Bacillus, belonging to 28 phyla, including Proteobacteria, Firmicutes. The diversity and richness of bacterial community decreased with the increase in sulfometuron-methyl concentration.
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