Abiotic Stress in Crop Production
TL;DR: In this article , the authors focus on current findings in plant resistance to four cardinal abiotic stressors (drought, heat, salinity, and low temperatures) and focus on the importance of primary and secondary metabolites, including carbohydrates, amino acids, phenolics, and phytohormones.
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Abstract: The vast majority of agricultural land undergoes abiotic stress that can significantly reduce agricultural yields. Understanding the mechanisms of plant defenses against stresses and putting this knowledge into practice is, therefore, an integral part of sustainable agriculture. In this review, we focus on current findings in plant resistance to four cardinal abiotic stressors—drought, heat, salinity, and low temperatures. Apart from the description of the newly discovered mechanisms of signaling and resistance to abiotic stress, this review also focuses on the importance of primary and secondary metabolites, including carbohydrates, amino acids, phenolics, and phytohormones. A meta-analysis of transcriptomic studies concerning the model plant Arabidopsis demonstrates the long-observed phenomenon that abiotic stressors induce different signals and effects at the level of gene expression, but genes whose regulation is similar under most stressors can still be traced. The analysis further reveals the transcriptional modulation of Golgi-targeted proteins in response to heat stress. Our analysis also highlights several genes that are similarly regulated under all stress conditions. These genes support the central role of phytohormones in the abiotic stress response, and the importance of some of these in plant resistance has not yet been studied. Finally, this review provides information about the response to abiotic stress in major European crop plants—wheat, sugar beet, maize, potatoes, barley, sunflowers, grapes, rapeseed, tomatoes, and apples.
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Early-Stage Detection of Biotic and Abiotic Stress on Plants by Chlorophyll Fluorescence Imaging Analysis
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References
Ethylene Signaling Negatively Regulates Freezing Tolerance by Repressing Expression of CBF and Type-A ARR Genes in Arabidopsis
TL;DR: This study demonstrates that ethylene negatively regulates cold signaling at least partially through the direct transcriptional control of cold-regulated CBFs and type-A ARR genes by EIN3, and provides evidence that type- A ARRs function as key nodes to integrate ethylene and cytokinin signaling in regulation of plant responses to environmental stress.
Identification of Maize Leaf Diseases Using Improved Deep Convolutional Neural Networks
TL;DR: Two improved models based on deep learning that are used to train and test nine kinds of maize leaf images are obtained by adjusting the parameters, changing the pooling combinations, adding dropout operations and rectified linear unit functions, and reducing the number of classifiers.
591
Adverse weather conditions for European wheat production will become more frequent with climate change
Miroslav Trnka,Miroslav Trnka,Reimund P. Rötter,Margarita Ruiz-Ramos,Kurt Christian Kersebaum,Jørgen E. Olesen,Zdeněk Žalud,Zdeněk Žalud,Mikhail A. Semenov +8 more
TL;DR: In this paper, the authors present an analysis that accounts for a range of adverse weather events that might significantly affect wheat yield in Europe, using climate scenarios based on the most recent ensemble of climate models and greenhouse gases emission estimates.
583
Role of sugars under abiotic stress.
TL;DR: This review focuses the correlation between sugars and their protective functions in several physiological processes against various abiotic stresses and enlightens the interaction of sugars with several phytohormones and its effect on their biosynthesis under abiotic stress conditions.
576
Abiotic Stress Responses in Plants
Parvaiz Ahmad,Majeti Narasimha Vara Prasad +1 more
- 01 Jan 2012
TL;DR: The application, optimization and innovation of sustainable agricultural techniques with a low negative environmental impact allow to recover or increase the normal levels of total fertility in fruit agro-ecosystems, so Sustainable Fruit Production in Mediterranean Orchards Subjected to Drought Stress can be improved.