Search Results - "Mills, Rebecca F."
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HvHMA2, a P1B-ATPase from Barley, Is Highly Conserved among Cereals and Functions in Zn and Cd Transport
Published in PloS one (03-08-2012)“…Manipulation of crops to improve their nutritional value (biofortification) and optimisation of plants for removal of toxic metals from contaminated soils…”
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Journal Article -
2
Barley HvHMA1 is a heavy metal pump involved in mobilizing organellar Zn and Cu and plays a role in metal loading into grains
Published in PloS one (14-11-2012)“…Heavy metal transporters belonging to the P(1B)-ATPase subfamily of P-type ATPases are key players in cellular heavy metal homeostasis. Heavy metal…”
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3
Functional significance of AtHMA4 C-terminal domain in planta
Published in PloS one (20-10-2010)“…Enhancing the upward translocation of heavy metals such as Zn from root to shoot through genetic engineering has potential for biofortification and…”
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4
The plant P1B‐type ATPase AtHMA4 transports Zn and Cd and plays a role in detoxification of transition metals supplied at elevated levels
Published in FEBS letters (31-01-2005)“…The transition metal Zn is essential for many physiological processes in plants, yet at elevated concentrations this, and the related non‐essential metal Cd,…”
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Journal Article -
5
ECA3, a Golgi-Localized P₂A-Type ATPase, Plays a Crucial Role in Manganese Nutrition in Arabidopsis
Published in Plant physiology (Bethesda) (2008)“…Calcium (Ca) and manganese (Mn) are essential nutrients required for normal plant growth and development, and transport processes play a key role in regulating…”
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6
A Combined Zinc/Cadmium Sensor and Zinc/Cadmium Export Regulator in a Heavy Metal Pump
Published in The Journal of biological chemistry (08-10-2010)“…Heavy metal pumps (P1B-ATPases) are important for cellular heavy metal homeostasis. AtHMA4, an Arabidopsis thaliana heavy metal pump of importance for plant…”
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7
Functional expression of AtHMA4, a P1B‐type ATPase of the Zn/Co/Cd/Pb subclass
Published in The Plant journal : for cell and molecular biology (01-07-2003)“…Summary Mechanisms are required by all organisms to maintain the concentration of essential heavy metals (e.g. Zn and Cu) within physiological limits and to…”
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8
P1B-ATPases - an ancient family of transition metal pumps with diverse functions in plants
Published in Trends in plant science (01-10-2005)Get full text
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9
Approach to engineer tomato by expression of AtHMA4 to enhance Zn in the aerial parts
Published in Journal of plant physiology (15-09-2014)“…The aim of this work was to assess the potential for using AtHMA4 to engineer enhanced efficiency of Zn translocation to shoots, and to increase the Zn…”
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10
Expression of HvHMA2 in tobacco modifies Zn–Fe–Cd homeostasis
Published in Journal of plant physiology (01-09-2013)“…HvHMA2 is a plasma membrane P1B-ATPase from barley that functions in Zn/Cd root-to-shoot transport. To assess the usefulness of HvHMA2 for modifying the metal…”
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11
HvHMA2, a P(1B)-ATPase from barley, is highly conserved among cereals and functions in Zn and Cd transport
Published in PloS one (2012)“…Manipulation of crops to improve their nutritional value (biofortification) and optimisation of plants for removal of toxic metals from contaminated soils…”
Get full text
Journal Article -
12
P 1B-ATPases – an ancient family of transition metal pumps with diverse functions in plants
Published in Trends in plant science (01-10-2005)“…P 1B-ATPases form a distinct evolutionary sub-family of P-type ATPases, transporting transition metals such as Cu, Zn, Cd, Pb and Co across membranes in a wide…”
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Journal Article -
13
The plant P 1B-type ATPase AtHMA4 transports Zn and Cd and plays a role in detoxification of transition metals supplied at elevated levels
Published in FEBS letters (31-01-2005)“…The transition metal Zn is essential for many physiological processes in plants, yet at elevated concentrations this, and the related non-essential metal Cd,…”
Get full text
Journal Article -
14
Functional expression of AtHMA4, a P 1B ‐type ATPase of the Zn/Co/Cd/Pb subclass
Published in The Plant journal : for cell and molecular biology (01-07-2003)“…Summary Mechanisms are required by all organisms to maintain the concentration of essential heavy metals (e.g. Zn and Cu) within physiological limits and to…”
Get full text
Journal Article -
15
Targeted expression of HvHMA 2 increases the mineral content of the inner endosperm in barley
Published in Plant biotechnology journal (01-09-2016)Get full text
Journal Article -
16
HvHMA2, a P.sub.1B-ATPase from Barley, Is Highly Conserved among Cereals and Functions in Zn and Cd Transport
Published in PloS one (03-08-2012)“…Manipulation of crops to improve their nutritional value (biofortification) and optimisation of plants for removal of toxic metals from contaminated soils…”
Get full text
Journal Article -
17
P(1B)-ATPases--an ancient family of transition metal pumps with diverse functions in plants
Published in Trends in plant science (01-10-2005)“…P(1B)-ATPases form a distinct evolutionary sub-family of P-type ATPases, transporting transition metals such as Cu, Zn, Cd, Pb and Co across membranes in a…”
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Journal Article -
18
Targeted expression of HvHMA2 increases the mineral content of the inner endosperm in barley
Published in Plant biotechnology journal (29-09-2016)“…Cereals are a major source of dietary energy and protein but are nutritionally poor in micronutrients. Zinc (Zn) biofortification of staple crops has been…”
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Journal Article -
19
ECA3, a Golgi-Localized ${\rm{P}}_{{\rm{2A}}}$-Type ATPase, Plays a Crucial Role in Manganese Nutrition in Arabidopsis
Published in Plant physiology (Bethesda) (01-01-2008)“…Calcium (Ca) and manganese (Mn) are essential nutrients required for normal plant growth and development, and transport processes play a key role in regulating…”
Get full text
Journal Article -
20
ECA3, a Golgi-Localized P^sub 2A^-Type ATPase, Plays a Crucial Role in Manganese Nutrition in Arabidopsis1[C][W][OA]
Published in Plant physiology (Bethesda) (01-01-2008)“…Calcium (Ca) and manganese (Mn) are essential nutrients required for normal plant growth and development, and transport processes play a key role in regulating…”
Get full text
Journal Article