Academic literature on the topic 'Tolerance improvement'

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Journal articles on the topic "Tolerance improvement"

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Ranalli, P., M. di Candilo, and M. Bagatta. "Drought tolerance screening for potato improvement." Plant Breeding 116, no. 3 (1997): 290–92. http://dx.doi.org/10.1111/j.1439-0523.1997.tb00999.x.

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Shen, Xiaoxia, Ping Zhang, Jinping Wang, et al. "Influence of improvement or worsening of glucose tolerance on risk of stroke in persons with impaired glucose tolerance." International Journal of Stroke 13, no. 9 (2018): 941–48. http://dx.doi.org/10.1177/1747493018784432.

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Background and aim We sought to determine the effect of regression to normal glucose tolerance (NGT) or progression to diabetes in early years of impaired glucose tolerance (IGT) on subsequent risk of stroke. Methods In 1986, 576 adults aged 25 years and older with impaired glucose tolerance in Da Qing, China, were randomly assigned by clinic to control, diet, exercise, or diet plus exercise intervention groups for a six-year period. Subsequently participants received medical care in their local clinics. We tracked participants for additional 17 years to ascertain stroke events and other outco
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Wang, Jingyi, Chaonan Li, Long Li, Matthew Reynolds, Xinguo Mao, and Ruilian Jing. "Exploitation of Drought Tolerance-Related Genes for Crop Improvement." International Journal of Molecular Sciences 22, no. 19 (2021): 10265. http://dx.doi.org/10.3390/ijms221910265.

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Drought has become a major threat to food security, because it affects crop growth and development. Drought tolerance is an important quantitative trait, which is regulated by hundreds of genes in crop plants. In recent decades, scientists have made considerable progress to uncover the genetic and molecular mechanisms of drought tolerance, especially in model plants. This review summarizes the evaluation criteria for drought tolerance, methods for gene mining, characterization of genes related to drought tolerance, and explores the approaches to enhance crop drought tolerance. Collectively, th
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Park, Yong Mok. "Improvement of Drought Tolerance in Transgenic Tobacco Plant." Journal of Environmental Science International 25, no. 1 (2016): 173–79. http://dx.doi.org/10.5322/jesi.2016.25.1.173.

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Tawfik, Rasha Sabry, Abdelfattah Badr, Reda Sammour, Usama Ibrahim, Mohamed Matter, and Mahmoud Sakr. "Improvement of Flax Drought Tolerance Using Gene Transfer." Plant Tissue Culture and Biotechnology 26, no. 2 (2016): 197–207. http://dx.doi.org/10.3329/ptcb.v26i2.30570.

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Attempt was made to produce transgenic cell lines of flax cv. Blanka tolerant to drought stress. Genetic transformation systems were used to incorporate the DREB2A gene, as the specific gene for drought stress tolerance. In biolistic transformation, hypocotyl segments were bombarded with DREB2A and GFP genes at particle flight distance of 9 cm and rupture disc pressure of 1300 psi. The expression of the gene was observed under a light microscope after 24 and 48 hrs. In Agrobacterium?mediated transformation, the hypocotyl segments were incubated overnight with Agrobacterium culture at five opti
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Davy, A. J., R. C. Staples, and G. H. Toenniessen. "Salinity Tolerance in Plants: Strategies for Crop Improvement." Journal of Applied Ecology 22, no. 3 (1985): 1022. http://dx.doi.org/10.2307/2403260.

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B. Harborne, Jeffrey. "Salinity tolerance in plants: Strategies for crop improvement." Phytochemistry 24, no. 4 (1985): 887. http://dx.doi.org/10.1016/s0031-9422(00)84924-9.

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Mendoza-Hernandez, F., M. Linares-Aranda, and V. Champac. "Noise-tolerance improvement in dynamic CMOS logic circuits." IEE Proceedings - Circuits, Devices and Systems 153, no. 6 (2006): 565. http://dx.doi.org/10.1049/ip-cds:20050292.

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Anami, Sylvester Elikana, Li‐Min Zhang, Yan Xia, Yu‐Miao Zhang, Zhi‐Quan Liu, and Hai‐Chun Jing. "Sweet sorghum ideotypes: genetic improvement of stress tolerance." Food and Energy Security 4, no. 1 (2015): 3–24. http://dx.doi.org/10.1002/fes3.54.

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Shapiro, David I., Itamar Glazer, and Daniel Segal. "Genetic Improvement of Heat Tolerance inHeterorhabditis bacteriophorathrough Hybridization." Biological Control 8, no. 2 (1997): 153–59. http://dx.doi.org/10.1006/bcon.1996.0488.

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Dissertations / Theses on the topic "Tolerance improvement"

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Talukder, Shyamal Krishna. "Heat tolerance studies for wheat improvement." Diss., Kansas State University, 2013. http://hdl.handle.net/2097/18144.

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Doctor of Philosophy<br>Department of Agronomy<br>Allan K. Fritz<br>Heat stress is one of the major environmental constraints for wheat production worldwide. High temperature during grain filling in wheat leads to a significant reduction in yield. In this research, three different projects were completed. The first project was to study cytoplasmic effects on heat tolerance in wheat, where ten different alloplasmic lines of wheat were backcrossed with four different wheat varieties: „Karl 92‟, „Ventnor‟, „U1275‟ and „Jagger‟. The nuclear genome of the alloplasmic lines was substituted by backcr
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Polianskikh, Boris. "Fault tolerance and yield improvement of embedded memories." Thesis, McGill University, 2001. http://digitool.Library.McGill.CA:80/R/?func=dbin-jump-full&object_id=33989.

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Recent advances in microelectronics industry allow us to create a System-On-Chip. The embedded memory is one of the vital parts of any system-on-chip. Today it is not enough just to design and fabricate the embedded memory. In order to put the System-On-Chip in mass production, the designer has to be concerned about yield and reliability of the embedded memory. This thesis provides background on fault tolerance improvement theory, and gives several new solutions on how to improve reliability and enhance yield of the embedded memory in efficient ways.<br>A complete fast embedded SRAM and Contro
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Nguyen, Tien Thanh. "Model-driven architecture exploration for fault tolerance improvement." Thesis, Nantes, 2019. http://www.theses.fr/2019NANT4059.

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La fiabilité devient une caractéristique très importante du processus de conception d’un système embarqué. Par conséquent, l'élaboration de stratégies de tolérance aux fautes fait également partie des priorités lors des premières phases de conception des systèmes embarqués. Cette thèse vise à établir un cadre permettant de trouver la meilleure solution de plate-forme pour une application donnée dans des systèmes multiprocesseurs hétérogènes. La solution trouvée doit être intégrée à la tolérance aux fautes. Un nouveau méta-modèle de plateforme intégrant la tolérance aux fautes est présenté qui
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Jesus, Cláudia Marisa de. "Salicylic acid and drought tolerance improvement in Eucalyptus." Master's thesis, Universidade de Aveiro, 2014. http://hdl.handle.net/10773/13377.

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Mestrado em Biologia Aplicada<br>Covering approximately 20 million ha, Eucalyptus genus is the most widely planted hardwood trees all over the world. In the Mediterranean region, the positive performance of Eucalyptus plantations is conditioned by low water availability that strongly limits forest productivity and alters plant growth and development. Plant drought tolerance can be managed by adopting strategies such as exogenous application of hormones. Salicylic acid (SA) is a plant endogenous regulator of growth (PGR) that has been reported as a compound playing a key role in plants response
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Wissuwa, Matthias 1964. "Improvement of tolerance to summer irrigation termination in alfalfa." Diss., The University of Arizona, 1996. http://hdl.handle.net/10150/282135.

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Withholding irrigation to alfalfa (Medicago sativa L.) during summer, a management strategy referred to as summer irrigation termination (SIT), has been suggested as a way to conserve water in desert environments. SIT may decrease productivity of alfalfa stands, although such negative effects may be reduced if cultivars with improved tolerance to SIT could be developed. This research was undertaken to determine how improved tolerance to SIT could be achieved through plant breeding. Single spaced plants of an extremely nondormant alfalfa population were grown in a field trial in Tucson, AZ and
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Li, Shouxin. "Evaluation and Improvement of Freezing Tolerance in Cold Sensitive Grape Genotypes." The Ohio State University, 2014. http://rave.ohiolink.edu/etdc/view?acc_num=osu1417627623.

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Wu, Qingyu. "Improvement of abiotic stress tolerance and calcium-deficiency disorder resistance of tomato plants." Diss., Kansas State University, 2012. http://hdl.handle.net/2097/14033.

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Doctor of Philosophy<br>Department of Horticulture, Forestry, and Recreation Resources<br>Sunghun Park<br>Plants are continuously exposed to numerous abiotic stresses, which adversely affect plant growth, development, and yield. Plants have developed different signaling pathways to cope with abiotic stresses, and some of the pathways converge to help plants tolerate simultaneous stresses. Here, we report ectopic expression of an Arabidopsis glutaredoxin AtGRXS17 that confers tolerance to multiple abiotic stresses in tomato plants. In yeast assays, AtGRXS17 co-localized with yeast ScGrx3 in the
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Mullan, Daniel John. "Physiology, comparative genomics and germplasm development for improvement of salt tolerance in hexaploid wheat." University of Western Australia. Faculty of Natural and Agricultural Sciences, 2006. http://theses.library.uwa.edu.au/adt-WU2006.0104.

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[Truncated abstract] Lophopyrum elongatum, a wild relative of wheat, can be used as a source of novel genes for improving the salt tolerance of bread wheat. Na+ `exclusion? is a major physiological mechanism for salt tolerance in the wheat L. elongatum amphiploid, and a large proportion (~50%) of the improved Na+ `exclusion? is contributed by a gene(s) on chromosome 3E. This study integrated physiological analysis with comparative genomics to identify gene orthologues that may regulate Na+ transport, and designed and implemented molecular markers for developing wheat L. elongatum recombinant
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Lough, Graham. "Should we aim for genetic improvement of host resistance or tolerance to infectious disease?" Thesis, University of Edinburgh, 2017. http://hdl.handle.net/1842/29510.

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A host can adopt two strategies when facing infection: resistance, where host immune responses prevent or reduce pathogen replication; or tolerance, which refers to all mechanisms that reduce the impact of the infection on host health or performance. Both strategies may be under host genetic control, and could thus be targeted for genetic improvement. Although there is ample evidence of genetic variation in resistance to infection, there is limited evidence to suggest that individuals also differ genetically in tolerance. Furthermore, although resistance and tolerance are typically considered
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Zhou, Yao. "Study on genetic algorithm improvement and application." Link to electronic thesis, 2006. http://www.wpi.edu/Pubs/ETD/Available/etd-050306-211907/.

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Books on the topic "Tolerance improvement"

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Gerasimov, Sergey, and Irina Skovorodkina. Tolerance education in Junior schoolchildren. INFRA-M Academic Publishing LLC., 2020. http://dx.doi.org/10.12737/1084985.

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The textbook presents the methodology of solving the problem of formation of tolerance in children of primary school age, the analysis of the legal framework of education for peace, non-violence, human rights and tolerance. Special attention is paid to the theoretical and practical aspects of tolerance in primary school children, didactic tools, the characteristics of the system of pedagogical means of education of tolerance at pupils of elementary school. &#x0D; Consists of a Preface, three chapters, conclusion, Glossary, bibliography and applications. Includes tables and diagrams that can be
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Drought frontiers in rice: Crop improvement for increased rainfed production. World Scientific Publishing Company, 2009.

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Serraj, Rachid. Drought frontiers in rice: Crop improvement for increased rainfed production. World Scientific Publishing Company, 2009.

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Hossain, Mohammad Anwar, Mobashwer Alam, Saman Seneweera, Sujay Rakshit, and Robert Henry, eds. Molecular breeding in wheat, maize and sorghum: strategies for improving abiotic stress tolerance and yield. CABI, 2021. http://dx.doi.org/10.1079/9781789245431.0000.

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Abstract This book contains 29 chapters focusing on wheat, maize and sorghum molecular breeding. It aims to contribute the latest understandings of the molecular and genetic bases of abiotic stress tolerance, yield and quality improvement of wheat, maize and sorghum to develop strategies for improving abiotic stress tolerance that will lead to enhance productivity and better utilization of natural resources to ensure food security through modern breeding.
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Gupta, U. S. Crop Improvement: Stress Tolerance. Science Pub Inc, 1997.

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Rai, Ashwani K., and Teruhiro Takabe. Abiotic Stress Tolerance in Plants: Toward the Improvement of Global Environment and Food. Rai Ashwani K Takabe Teruhiro, 2010.

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(Editor), Ashwani K. Rai, and Teruhiro Takabe (Editor), eds. Abiotic Stress Tolerance in Plants: Toward the Improvement of Global Environment and Food. Springer, 2006.

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Doeschl-Wilson, Andrea B., and Ilias Kyriazakis, eds. Should we aim for genetic improvement in host resistance or tolerance to infectious disease? Frontiers Media SA, 2013. http://dx.doi.org/10.3389/978-2-88919-105-5.

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Roychoudhury, Aryadeep. Rice Research for Quality Improvement : Genomics and Genetic engineering : Volume 1: Breeding Techniques and Abiotic Stress Tolerance. Springer, 2020.

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Vergnaud, Sophie, David Dobarro, and John Wort. Pulmonary vasculature. Oxford University Press, 2017. http://dx.doi.org/10.1093/med/9780199657742.003.0017.

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A 16-year-old girl with a diagnosis of diffuse cutaneous systemic sclerosis is referred to a specialist pulmonary hypertension centre with a history of progressive breathlessness, reduced exercise tolerance, and raised pulmonary pressures on transthoracic echocardiogram. She is found to have pulmonary arterial hypertension on right cardiac catheterization and is started on sildenafil, a phosphodiesterase-5 inhibitor, which stabilizes her condition. An endothelin receptor antagonist is added, which provides some initial symptomatic improvement. She continues to deteriorate over a period of 5 ye
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Book chapters on the topic "Tolerance improvement"

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Ye, Changrong, Xiaolin Li, Edilberto Redoña, Tsutomu Ishimaru, and Krishna Jagadish. "Genetics and Breeding of Heat Tolerance in Rice." In Rice Improvement. Springer International Publishing, 2021. http://dx.doi.org/10.1007/978-3-030-66530-2_7.

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AbstractExtreme weather events, especially heat waves, have become more frequent with global warming. High temperature significantly affects world food security by decreasing crop yield. Rice is intensively planted in tropical and subtropical areas in Asia, where high temperature has become a major factor affecting rice production. Rice is sensitive to high temperature, especially at booting and flowering stages. Rice varieties tolerant of high temperature are rare, and only a few heat-tolerant rice varieties have been identified. High temperature at booting and flowering stages causes sterile pollen, decreased pollen shedding, and poor pollen germination, which finally lead to a yield decrease. Heat-tolerant QTLs have been identified in different studies, but new breeding lines with considerable heat tolerance have not been bred using identified heat-tolerance donors and QTLs. Research on heat-tolerant donor identification, QTL mapping, gene cloning, and large-scale phenotyping technology is important for developing heat-tolerant rice varieties.
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Najeeb, Sofi, Anumalla Mahender, Annamalai Anandan, Waseem Hussain, Zhikang Li, and Jauhar Ali. "Genetics and Breeding of Low-Temperature Stress Tolerance in Rice." In Rice Improvement. Springer International Publishing, 2021. http://dx.doi.org/10.1007/978-3-030-66530-2_8.

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AbstractLow-temperature stress (LTS) is one of the major abiotic stresses that affect crop growth and ultimately decrease grain yield. The development of rice varieties with low-temperature stress tolerance has been a severe challenge for rice breeders for a long time. The lack of consistency of the quantitative trait loci (QTLs) governing LTS tolerance for any given growth stage over different genetic backgrounds of mapping populations under different low-temperature stress conditions remains a crucial barrier for adopting marker-assisted selection (MAS). In this review, we discuss the ideal location and phenotyping for agromorphological and physiological parameters as indicators for LTS tolerance and also the traits associated with QTLs that were identified from biparental mapping populations and diverse rice accessions. We highlight the progress made in the fields of genome editing, genetic transformation, transcriptomics, and metabolomics to elucidate the molecular mechanisms of cold tolerance in rice. The stage-specific QTLs and candidate genes for LTS tolerance brought out valuable information toward identifying and improving LTS tolerance in rice varieties. We showed 578 QTLs and 38 functionally characterized genes involved in LTS tolerance. Among these, 29 QTLs were found to be colocalized at different growth stages of rice. The combination of stage-specific QTLs and genes from biparental mapping populations and genome-wide association studies provide potential information for developing LTS-tolerant rice varieties. The identified colocalized stage-specific LTS-tolerance QTLs will be useful for MAS and QTL pyramiding and for accelerating mapping and cloning of the possible candidate genes, revealing the underlying LTS-tolerance mechanisms in rice.
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Ali, Jauhar, Mahender Anumalla, Varunseelan Murugaiyan, and Zhikang Li. "Green Super Rice (GSR) Traits: Breeding and Genetics for Multiple Biotic and Abiotic Stress Tolerance in Rice." In Rice Improvement. Springer International Publishing, 2021. http://dx.doi.org/10.1007/978-3-030-66530-2_3.

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AbstractThe frequent fluctuations in global climate variability (GCV), decreases in farmland and irrigation water, soil degradation and erosion, and increasing fertilizer costs are the significant factors in declining rice productivity, mainly in Asia and Africa. Under GCV scenarios, it is a challenging task to meet the rice food demand of the growing population. Identifying green traits (tolerance of biotic and abiotic stresses, nutrient-use efficiency, and nutritional grain quality) and stacking them in high-yielding elite genetic backgrounds is one promising approach to increase rice productivity. To this end, the Green Super Rice (GSR) breeding strategy helps to pool multi-stress-tolerance traits by stringent selection processes and to develop superior GSR cultivars within a short span of 4–5 years. In the crossing and selection process of GSR breeding, selective introgression lines (SILs) derived from sets of early backcross BC1F2 bulk populations through both target traits and non-target traits were selected. Genotyping of SILs with high-density SNP markers leads to the identification of a large number of SNP markers linked with the target green traits. The identified SILs with superior trait combinations were used for designed QTL pyramiding to combine different target green traits. The GSR breeding strategy also focused on nutrient- and water-use efficiency besides environment-friendly green features primarily to increase grain yield and income returns for resource-poor farmers. In this chapter, we have highlighted the GSR breeding strategy and QTL introgression of green traits in rice. This breeding strategy has successfully dissected many complex traits and also released several multi-stress-tolerant varieties with high grain yield and productivity in the target regions of Asia and Africa.
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Rasool, Saiema, Muneeb U. Rehman, Mohamed Mahgoub Azooz, Muhammad Iqbal, Tariq Omar Siddiqi, and Parvaiz Ahmad. "Arsenic Toxicity and Tolerance Mechanisms in Plants: An Overview." In Crop Improvement. Springer US, 2013. http://dx.doi.org/10.1007/978-1-4614-7028-1_12.

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Zhou, Meixue. "Improvement of Plant Waterlogging Tolerance." In Waterlogging Signalling and Tolerance in Plants. Springer Berlin Heidelberg, 2010. http://dx.doi.org/10.1007/978-3-642-10305-6_13.

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Nagarajan, Subrahmaniam, and Shantha Nagarajan. "Abiotic Tolerance and Crop Improvement." In Abiotic Stress Adaptation in Plants. Springer Netherlands, 2009. http://dx.doi.org/10.1007/978-90-481-3112-9_1.

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Rajabi, Abazar, and Eric Schmieder Ober. "Breeding for Improved Drought Tolerance." In Crop Production for Agricultural Improvement. Springer Netherlands, 2012. http://dx.doi.org/10.1007/978-94-007-4116-4_3.

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Mehra, Poonam, Ajit Pal Singh, Jyoti Bhadouria, Lokesh Verma, Poonam Panchal, and Jitender Giri. "Phosphate Homeostasis: Links with Seed Quality and Stress Tolerance in Chickpea." In Pulse Improvement. Springer International Publishing, 2018. http://dx.doi.org/10.1007/978-3-030-01743-9_9.

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Singh, Balwant, Shefali Mishra, Deepak Singh Bisht, and Rohit Joshi. "Growing Rice with Less Water: Improving Productivity by Decreasing Water Demand." In Rice Improvement. Springer International Publishing, 2021. http://dx.doi.org/10.1007/978-3-030-66530-2_5.

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AbstractRice is a staple food for more than half of the global population. With the increasing population, the yield of rice must correspondingly increase to fulfill the requirement. Rice is cultivated worldwide in four different types of ecosystems, which are limited by the availability of irrigation water. However, water-limiting conditions negatively affect rice production; therefore, to enhance productivity under changing climatic conditions, improved cultivation practices and drought-tolerant cultivars/varieties are required. There are two basic approaches to cultivation: (1) plant based and (2) soil and irrigation based, which can be targeted for improving rice production. Crop plants primarily follow three mechanisms: drought escape, avoidance, and tolerance. Based on these mechanisms, different strategies are followed, which include cultivar selection based on yield stability under drought. Similarly, soil- and irrigation-based strategies consist of decreasing non-beneficial water depletions and water outflows, aerobic rice development, alternate wetting and drying, saturated soil culture, system of rice intensification, and sprinkler irrigation. Further strategies involve developing drought-tolerant cultivars through marker-assisted selection/pyramiding, genomic selection, QTL mapping, and other breeding and cultivation practices such as early planting to follow escape strategies and decreasing stand density to minimize competition with weeds. Similarly, the identification of drought-responsive genes and their manipulation will provide a technological solution to overcome drought stress. However, it was the Green Revolution that increased crop production. To maintain the balance, there is a need for another revolution to cope with the increasing demand.
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Roychoudhury, Aryadeep, S. Krishnamoorthi, and Rupam Paul. "Arsenic Toxicity and Molecular Mechanism of Arsenic Tolerance in Different Members of Brassicaceae." In Brassica Improvement. Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-030-34694-2_9.

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Conference papers on the topic "Tolerance improvement"

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Vial, J., A. Bosio, P. Girard, C. Landrault, S. Pravossoudovitch, and A. Virazel. "Yield Improvement, Fault-Tolerance to the Rescue?" In 2008 14th IEEE International On-Line Testing Symposium (IOLTS). IEEE, 2008. http://dx.doi.org/10.1109/iolts.2008.10.

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Ito, Terumasa, Kenji Tanaka, Hidenori Mori, et al. "Improvement in temperature tolerance of coaxial holographic data storage." In 2009 Optical Data Storage Topical Meeting (ODS). IEEE, 2009. http://dx.doi.org/10.1109/ods.2009.5031763.

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Hsieh, Tong-Yu, Melvin A. Breuer, Murali Annavaram, Sandeep K. Gupta, and Kuen-Jong Lee. "Tolerance of performance degrading faults for effective yield improvement." In 2009 IEEE International Test Conference (ITC). IEEE, 2009. http://dx.doi.org/10.1109/test.2009.5355594.

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Kim, Taeeui, Hingwon Kim, KyungO Kim, Jinsoo Jung, Taesung Jung, and Sung yi. "Tolerance Improvement for Organic Embedded Passive RF Module Substrate." In 2008 10th Electronics Packaging Technology Conference (EPTC). IEEE, 2008. http://dx.doi.org/10.1109/eptc.2008.4763597.

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Lopes, Alba Sandyra Bezerra, Marcio Eduardo Kreutz, and Monica Magalhaes Pereira. "Enabling NoC Performance Improvement Using a Fault Tolerance Mechanism." In 2015 Brazilian Symposium on Computing Systems Engineering (SBESC). IEEE, 2015. http://dx.doi.org/10.1109/sbesc.2015.9.

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Ballot, Eric, and Pierre Bourdet. "An Integrated Framework for 3D Tolerance Chains in Design and Manufacturing." In ASME 2001 International Design Engineering Technical Conferences and Computers and Information in Engineering Conference. American Society of Mechanical Engineers, 2001. http://dx.doi.org/10.1115/detc2001/dac-21023.

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Abstract This paper is about a new model of geometric deviation to compute tridimensional tolerance chains. By the use of a simplification of geometric deviation well adapted to computation of tolerances, we will show how to compute systematically the consequences of geometric deviation from functional requirements to manufacturing. Under the hypothesis that geometric deviations lead only to small displacement of parts, we will demonstrate how their propagation can be computed. We will highlight the improvement yielded by the proposed model and the consequences on the description of tolerances
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Vial, J., A. Bosio, P. Girard, C. Landrault, S. Pravossoudovitch, and A. Virazel. "Using TMR Architectures for Yield Improvement." In 2008 23rd IEEE International Symposium on Defect and Fault Tolerance in VLSI Systems (DFTVS). IEEE, 2008. http://dx.doi.org/10.1109/dft.2008.23.

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Grecu, Cristian, Andre Ivanov, Res Saleh, and Partha Pande. "NoC Interconnect Yield Improvement Using Crosspoint Redundancy." In 2006 21st IEEE International Symposium on Defect and Fault Tolerance in VLSI Systems. IEEE, 2006. http://dx.doi.org/10.1109/dft.2006.46.

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Scholler, S., J. Marks, M. Harbison, L. Kvidahl, and T. D. Huang. "Shipboard Fairing Process Improvement and Testing." In SNAME 5th World Maritime Technology Conference. SNAME, 2015. http://dx.doi.org/10.5957/wmtc-2015-280.

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The flame straightening process has been developed since 1940; however, the process at Ingalls Shipbuilding (Ingalls) was loosely controlled with the majority of procedural steps governed by the flame straightener performing the operation. Findings from initial research showed excessive heat, both in the size and temperature of the heat spots as well as the quantity of spots used to achieve flatness. The amount of heat involved drastically increased paint rework, delayed schedules, and affected the surrounding structural members causing crippled structures that must be cut out and replaced. Be
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Balasubramanian, P., and R. T. Naayagi. "Redundant logic insertion and fault tolerance improvement in combinational circuits." In 2017 International Conference on Circuits, System and Simulation (ICCSS). IEEE, 2017. http://dx.doi.org/10.1109/cirsyssim.2017.8023171.

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Reports on the topic "Tolerance improvement"

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Prevey, P. S., D. J. Hornbach, J. T. Cammett, and R. Ravindranath. Damage Tolerance Improvement of Ti-6-4 Fan Blades With Low Plasticity Burnishing. Defense Technical Information Center, 2002. http://dx.doi.org/10.21236/ada444604.

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Orendorff, Christopher J., Ganesan Nagasubramanian, Kyle R. Fenton, and Eric Allcorn. Abuse Tolerance Improvements. Office of Scientific and Technical Information (OSTI), 2015. http://dx.doi.org/10.2172/1225854.

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