19 results on '"Pittman, Jon K."'
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2. Functional Association of Arabidopsis CAX1 and CAX3 Is Required for Normal Growth and Ion Homeostasis
3. Two Glycerol-3-Phosphate Dehydrogenases from Chlamydomonas Have Distinct Roles in Lipid Metabolism
4. The Monosaccharide Transporter Gene, AtSTP4, and the Cell-Wall Invertase, atβfruct1, Are Induced in Arabidopsis during Infection with the Fungal Biotroph Erysiphe cichoracearum
5. Distinct N-Terminal Regulatory Domains of Ca²⁺/H⁺ Antiporters
6. Characterization of CAX4, an Arabidopsis H⁺/Cation Antiporter
7. Regulation of CAX1, an Arabidopsis Ca²⁺/H⁺ Antiporter. Identification of an N-Terminal Autoinhibitory Domain
8. PSR1 Is a Global Transcriptional Regulator of Phosphorus Deficiency Responses and Carbon Storage Metabolism in Chlamydomonas reinhardtii
9. ECA3, a Golgi-Localized ${\rm{P}}_{{\rm{2A}}}$-Type ATPase, Plays a Crucial Role in Manganese Nutrition in Arabidopsis
10. ECA3, a Golgi-localized [P.sub.2A]-type ATPase, plays a crucial role in manganese nutrition in Arabidopsis
11. Increased calcium levels and prolonged shelf life in tomatoes expressing Arabidopsis [H.sup.+]/[Ca.sup.2+] Transporters (1)
12. Distinct N-terminal regulatory domains of [Ca.sup.2+]/[H.sup.+] antiporters (1)
13. The monosaccharide transporter gene, AtSTP4, and the cell-wall invertase, At[beta]fruct1, are induced in Arabidopsis during infection with the fungal biotroph Erysiphe cichoracearum (1)
14. Characterization of CAX4, an Arabidopsis [H.sup.+]/cation antiporter (1)
15. PSR1 Is a Global Transcriptional Regulator of Phosphorus Deficiency Responses and Carbon Storage Metabolism in Chlamydomonas reinhardtii
16. ECA3, a Golgi-Localized P2A-Type ATPase, Plays a Crucial Role in Manganese Nutrition in Arabidopsis
17. ECA3, a Golgi-Localized P2A-Type ATPase, Plays a Crucial Role in Manganese Nutrition in Arabidopsis.
18. Increased Calcium Levels and Prolonged Shelf Life in Tomatoes Expressing Arabidopsis H+/Ca2+ Transporters.
19. Functional Association of Arabidopsis CAX1 and CAX3 Is Required for Normal Growth and Ion Homeostasis.
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