标题
A curated list of genes that affect the plant ionome
作者
关键词
-
出版物
Plant Direct
Volume 4, Issue 10, Pages -
出版商
Wiley
发表日期
2020-10-21
DOI
10.1002/pld3.272
参考文献
相关参考文献
注意:仅列出部分参考文献,下载原文获取全部文献信息。- We aren’t good at picking candidate genes, and it’s slowing us down
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- Phytochelatin Synthase has Contrasting Effects on Cadmium and Arsenic Accumulation in Rice Grains
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- NRT1.5/NPF7.3 Functions as a Proton-Coupled H + /K + Antiporter for K + Loading into the Xylem in Arabidopsis
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- Medicago truncatula Zinc-Iron Permease6 provides zinc to rhizobia-infected nodule cells
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- OsHKT1;5 mediates Na+ exclusion in the vasculature to protect leaf blades and reproductive tissues from salt toxicity in rice
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- The iron-chelate transporter OsYSL9 plays a role in iron distribution in developing rice grains
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- Metal Tolerance Protein 8 Mediates Manganese Homeostasis and Iron Reallocation during Seed Development and Germination
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- A Magnesium Transporter OsMGT1 Plays a Critical Role in Salt Tolerance in Rice
- (2017) Zhi Chang Chen et al. PLANT PHYSIOLOGY
- POSITIVE REGULATOR OF IRON HOMEOSTASIS1, OsPRI1, Facilitates Iron Homeostasis
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- A new vesicle trafficking regulator CTL1 plays a crucial role in ion homeostasis
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- A Small GTPase, OsRab6a, is Involved in the Regulation of Iron Homeostasis in Rice
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- Phytochelatin Synthesis Promotes Leaf Zn Accumulation ofArabidopsis thalianaPlants Grown in Soil with Adequate Zn Supply and is Essential for Survival on Zn-Contaminated Soil
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- A loss-of-function allele ofOsHMA3associated with high cadmium accumulation in shoots and grain ofJaponicarice cultivars
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- Two bHLH Transcription Factors, bHLH34 and bHLH104, Regulate Iron Homeostasis inArabidopsis thaliana
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- A heavy metal P-type ATPase OsHMA4 prevents copper accumulation in rice grain
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- Nuclear Localised MORE SULPHUR ACCUMULATION1 Epigenetically Regulates Sulphur Homeostasis in Arabidopsis thaliana
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- Arabidopsis NIP3;1 Plays an Important Role in Arsenic Uptake and Root-to-Shoot Translocation under Arsenite Stress Conditions
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- Overexpression of the potassium channel TPKb in small vacuoles confers osmotic and drought tolerance to rice
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- A node-localized transporter OsZIP3 is responsible for the preferential distribution of Zn to developing tissues in rice
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- Medicago truncatulaNatural Resistance-Associated Macrophage Protein1 Is Required for Iron Uptake by Rhizobia-Infected Nodule Cells
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- The Vacuolar Manganese Transporter MTP8 Determines Tolerance to Iron Deficiency-Induced Chlorosis in Arabidopsis
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- The MYB36 transcription factor orchestrates Casparian strip formation
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- A polarly localized transporter for efficient manganese uptake in rice
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- Coordination between zinc and phosphate homeostasis involves the transcription factor PHR1, the phosphate exporter PHO1, and its homologue PHO1;H3 in Arabidopsis
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- The Major Facilitator Superfamily Transporter ZIFL2 Modulates Cesium and Potassium Homeostasis in Arabidopsis
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- Arabidopsis Transporter MGT6 Mediates Magnesium Uptake and Is Required for Growth under Magnesium Limitation
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- Transport of Boron by thetassel-less1Aquaporin Is Critical for Vegetative and Reproductive Development in Maize
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- OPT3 Is a Phloem-Specific Iron Transporter That Is Essential for Systemic Iron Signaling and Redistribution of Iron and Cadmium in Arabidopsis
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- ZAT11, a zinc finger transcription factor, is a negative regulator of nickel ion tolerance in Arabidopsis
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- Iron-Binding E3 Ligase Mediates Iron Response in Plants by Targeting Basic Helix-Loop-Helix Transcription Factors
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- Polarization of IRON-REGULATED TRANSPORTER 1 (IRT1) to the plant-soil interface plays crucial role in metal homeostasis
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- A Coastal Cline in Sodium Accumulation in Arabidopsis thaliana Is Driven by Natural Variation of the Sodium Transporter AtHKT1;1
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- Rice-Specific Mitochondrial Iron-Regulated Gene (MIR) Plays an Important Role in Iron Homeostasis
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- Disruption of OsYSL15 Leads to Iron Inefficiency in Rice Plants
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- TheArabidopsis thalianaaquaglyceroporin AtNIP7;1 is a pathway for arsenite uptake
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- The high affinity K+transporter AtHAK5 plays a physiological rolein plantaat very low K+concentrations and provides a caesium uptake pathway inArabidopsis
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- Phosphate Starvation Responses and Gibberellic Acid Biosynthesis are Regulated by the MYB62 Transcription Factor in Arabidopsis
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- Involvement ofOsSPX1in phosphate homeostasis in rice
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- OsPHR2 Is Involved in Phosphate-Starvation Signaling and Excessive Phosphate Accumulation in Shoots of Plants
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- Variation in Molybdenum Content Across Broadly Distributed Populations of Arabidopsis thaliana Is Controlled by a Mitochondrial Molybdenum Transporter (MOT1)
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