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Environmental stresses are now more severe due to climatic changes. Globally, numerous abiotic stresses affect soil and plants, hindering plant quality and productivity. To enhance plant yield and quality, it is crucial to understand how changes in the soil's physical and chemical properties impact plant production. Plants have evolved mechanisms to cope with environmental stresses within specific limits. Analyzing soil properties, observing plant responses, and considering various physicochemical factors are essential for understanding these stress tolerance mechanisms. Heavy metals, microplastic pollution, pesticides, pharmaceuticals, and other organic and inorganic contaminants have cause...
The field of horticultural crop production is increasingly challenged by both abiotic and biotic stressors, exacerbated by global climatic changes and anthropogenic activities. These stressors, including salinity, drought, temperature extremes, and heavy metal contamination, significantly impact plant growth, yield, and quality. Horticultural crops exhibit varied responses to these stressors, particularly during critical growth phases such as seedling establishment, vegetative growth, reproductive stages, and senescence. Recent studies have highlighted the importance of understanding the physiological, biochemical, and molecular responses of these crops to stress. However, gaps remain in fully elucidating the resistance mechanisms and mitigation strategies. Additionally, biotic stressors like viruses, fungi, bacteria, insects, and nematodes further compromise crop vigor and productivity. The role of biostimulants, hormones, novel chemicals, and microorganisms in enhancing stress tolerance is an emerging area of interest, with recent findings pointing to the beneficial effects of phytochemicals, secondary metabolites, and antimicrobial peptides in stress mitigation.
Nanotechnology for Abiotic Stress Tolerance and Management in Crop Plants reviews the most recent literature on the role of nanomaterials in achieving sustainability in crop production in stressful environments. This book explores the adverse conditions caused by abiotic stress to crop plants, and the methods by which these conditions can be potentially overcome through developments in nanoscience and nanotechnology. Abiotic stresses such as drought, salinity, temperature stress, excessive water, heavy metal stress, UV stress etc. are major factors which may adversely affect the growth, development, and yield of crops. While recent research for ways of overcoming the physiological and bioche...
This Research Topic is part of the Abiotic Stress Signaling in Plants: Functional Genomic Intervention series: Abiotic Stress Signaling in Plants: Functional Genomic Intervention Abiotic stresses such as high temperature, low-temperature, drought and salinity limit crop productivity worldwide. Understanding plant responses to these stresses is essential for rational engineering of crop plants. In Arabidopsis, the signal transduction pathways for abiotic stresses, light, several phytohormones and pathogenesis have been elucidated. A significant portion of plant genomes (most studies are Arabidopsis and rice genome) encodes for proteins involves in signaling such as receptor, sensors, kinases,...
O, güreşi önce kafasında yaşadı. Güçlü fiziği, yüksek aile bağları ve büyük aşkı güreşi yurt sevgisiyle yoğurup zoru başardı. Güreşe dayısı Adil Candemir’in yanında başladı. Yaşar Doğu’nun üzerine titreyip evladı gibi sevdiği Hamit Kaplan, kendisine inananları hiç mahcup etmedi. Üzerinde emeği bulunanlara vefada hiç geri durmadı. 22 yaşında katıldığı 1956 Melbourne Olimpiyatları’nda hem serbestte hem grekoromende ülkesini temsil etti. Kazandığı şampiyonluğun yanında dünyanın en başarılı on sporcusu arasına girdi. Üç olimpiyatta birden madalya kazanan tek güreşçimizdir.
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