Improvement of nutrient use efficiency in rice: current toolbox and future perspectives
出版年份 2020 全文链接
标题
Improvement of nutrient use efficiency in rice: current toolbox and future perspectives
作者
关键词
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出版物
THEORETICAL AND APPLIED GENETICS
Volume -, Issue -, Pages -
出版商
Springer Science and Business Media LLC
发表日期
2020-01-09
DOI
10.1007/s00122-019-03527-6
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- Over-expression ofOsIRT1leads to increased iron and zinc accumulations in rice
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- OsMT1a, a type 1 metallothionein, plays the pivotal role in zinc homeostasis and drought tolerance in rice
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- Disruption of OsYSL15 Leads to Iron Inefficiency in Rice Plants
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- Approaches and challenges to engineering seed phytate and total phosphorus
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- Iron fortification of rice seeds through activation of the nicotianamine synthase gene
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- Ionomics and the Study of the Plant Ionome
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- Increased expression of OsPT1, a high-affinity phosphate transporter, enhances phosphate acquisition in rice
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- Biofortified crops to alleviate micronutrient malnutrition
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- A Novel NAC Transcription Factor, IDEF2, That Recognizes the Iron Deficiency-responsive Element 2 Regulates the Genes Involved in Iron Homeostasis in Plants
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- Rice OsYSL15 Is an Iron-regulated Iron(III)-Deoxymugineic Acid Transporter Expressed in the Roots and Is Essential for Iron Uptake in Early Growth of the Seedlings
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- Genetic Identification of Quantitative Trait Loci for Contents of Mineral Nutrients in Rice Grain
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- Two rice phosphate transporters, OsPht1;2 and OsPht1;6, have different functions and kinetic properties in uptake and translocation
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- CYCLOPS, a mediator of symbiotic intracellular accommodation
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- Genetic analysis of root elongation induced by phosphorus deficiency in rice (Oryza sativa L.): fine QTL mapping and multivariate analysis of related traits
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- Rhizosphere bacteria help plants tolerate abiotic stress
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