Search Results - "Tsujimoto, Hisashi"
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1
Gene-Mining Asian Wheat to Feed the Population in the 21st Century
Published in Plant and cell physiology (25-03-2021)Get full text
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Greetings from the new Editor-in-Chief of Breeding Science
Published in Breeding Science (01-01-2020)Get full text
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3
Tuning water-use efficiency and drought tolerance in wheat using abscisic acid receptors
Published in Nature plants (01-02-2019)“…Water availability is a key determinant of terrestrial plant productivity. Many climate models predict that water stress will increasingly challenge…”
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Stay-Green Trait: A Prospective Approach for Yield Potential, and Drought and Heat Stress Adaptation in Globally Important Cereals
Published in International journal of molecular sciences (20-11-2019)“…The yield losses in cereal crops because of abiotic stress and the expected huge losses from climate change indicate our urgent need for useful traits to…”
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5
Heat stress effects on source-sink relationships and metabolome dynamics in wheat
Published in Journal of experimental botany (07-01-2020)“…Crops such as wheat (Triticum spp.) are predicted to face more frequent exposures to heat stress as a result of climate change. Increasing the yield and…”
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Metabolic profiles in drought-tolerant wheat with enhanced abscisic acid sensitivity
Published in PloS one (22-07-2024)“…Global warming has led to the expansion of arid lands and more frequent droughts, which are the largest cause of global food production losses. In our previous…”
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Metabolic and physiological responses to progressive drought stress in bread wheat
Published in Scientific reports (14-10-2020)“…Wheat ( Tritium aestivum ) is vulnerable to future climate change because it is predominantly grown under rain-fed conditions in drought-prone areas. Thus,…”
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Tuning Beforehand: A Foresight on RNA Interference (RNAi) and In Vitro-Derived dsRNAs to Enhance Crop Resilience to Biotic and Abiotic Stresses
Published in International journal of molecular sciences (19-07-2021)“…Crop yield is severely affected by biotic and abiotic stresses. Plants adapt to these stresses mainly through gene expression reprogramming at the…”
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Harnessing the diversity of wild emmer wheat for genetic improvement of durum wheat
Published in Theoretical and applied genetics (01-05-2022)“…Key message The multiple derivative lines (MDLs) characterized in this study offer a promising strategy for harnessing the diversity of wild emmer wheat for…”
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Genomic analysis for heat and combined heat–drought resilience in bread wheat under field conditions
Published in Theoretical and applied genetics (01-01-2022)“…Key message GWAS on a bread wheat panel with high D genome diversity identified novel alleles and QTLs associated with resilience to combined heat and drought…”
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Genome-wide association study reveals distinct genetic associations related to leaf hair density in two lineages of wheat-wild relative Aegilops tauschii
Published in Scientific reports (19-10-2022)“…Wild relatives of modern crops represent a promising source of genetic variation that can be mined for adaptations to climate change. Aegilops tauschii , the…”
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Genetic variation for grain nutritional profile and yield potential in sorghum and the possibility of selection for drought tolerance under irrigated conditions
Published in BMC genomics (02-09-2023)“…Abstract Background Increasing grain nutritional value in sorghum ( Sorghum bicolor ) is a paramount breeding objective, as is increasing drought resistance…”
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13
Chemical Fingerprinting of Heat Stress Responses in the Leaves of Common Wheat by Fourier Transform Infrared Spectroscopy
Published in International journal of molecular sciences (04-03-2022)“…Wheat ( L.) is known to be negatively affected by heat stress, and its production is threatened by global warming, particularly in arid regions. Thus, efforts…”
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Genetic manipulation of abscisic acid receptors enables modulation of water use efficiency
Published in Plant signaling & behavior (03-10-2019)“…The phytohormone abscisic acid (ABA) is a key signal molecule for controlling stomatal movement and stress responses such as drought. Genetic manipulation of…”
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Stripe rust resistance in wild wheat Aegilops tauschii Coss.: genetic structure and inheritance in synthetic allohexaploid Triticum wheat lines
Published in Genetic resources and crop evolution (15-04-2019)“…Studies on natural plant variability for biotic (e.g. disease) and abiotic (e.g. drought) stress resistance/tolerance may provide valuable insights into the…”
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Stage-Specific Characterization of Physiological Response to Heat Stress in the Wheat Cultivar Norin 61
Published in International journal of molecular sciences (28-06-2021)“…Bread wheat ( ) is less adaptable to high temperatures than other major cereals. Previous studies of the effects of high temperature on wheat focused on the…”
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Metabolome Profiling of Heat Priming Effects, Senescence, and Acclimation of Bread Wheat Induced by High Temperatures at Different Growth Stages
Published in International journal of molecular sciences (05-12-2021)“…Our previous study described stage-specific responses of 'Norin 61' bread wheat to high temperatures from seedling to tillering (GS1), tillering to flowering…”
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Genetic basis for spontaneous hybrid genome doubling during allopolyploid speciation of common wheat shown by natural variation analyses of the paternal species
Published in PloS one (08-08-2013)“…The complex process of allopolyploid speciation includes various mechanisms ranging from species crosses and hybrid genome doubling to genome alterations and…”
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Comparative Metabolome and Transcriptome Analyses of Susceptible Asparagus officinalis and Resistant Wild A. kiusianus Reveal Insights into Stem Blight Disease Resistance
Published in Plant and cell physiology (01-08-2020)“…Phomopsis asparagi is one of the most serious fungal pathogens, which causes stem blight disease in Asparagus officinalis (AO), adversely affecting its…”
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High throughput method of 16S rRNA gene sequencing library preparation for plant root microbial community profiling
Published in Scientific reports (11-11-2022)“…Microbiota are a major component of agroecosystems. Root microbiota, which inhabit the inside and surface of plant roots, play a significant role in plant…”
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