Root Carbon Dioxide Fixation by Phosphorus-Deficient Lupinus albus (Contribution to Organic Acid Exudation by Proteoid Roots)
Фиксация углекислого газа корнями при дефиците фосфора у Lupinus albus (вклад протеоидных корней в экскрецию органических кислот)
1996-09-01
SCID: 54.1/wu5sca2f
Discuss with AI
citrate and malate exudationorganic acid exudationproteoid rootsroot nonphotosynthetic CO2 fixation
Figures from the paper
Abstract (AI)
When white lupin (Lupinus albus L.) is subjected to P deficiency lateral root development is altered and densely clustered, tertiary lateral roots (proteoid roots) are initiated. These proteoid roots exude large amounts of citrate, which increases P solubilization. In the current study plants were grown with either 1 mM P (+P-treated) or without P (-P-treated). Shoots or roots of intact plants from both P treatments were labeled independently with 14CO2 to compare the relative contribution of C fixed in each with the C exuded from roots as citrate and other organic acids. About 25-fold more acid-stable 14C, primarily in citrate and malate, was recovered in exudates from the roots of -P-treated plants compared with +P-treated plants. The rate of in vivo C fixation in roots was about 4-fold higher in -P-treated plants than in +P-treated plants. Evidence from labeling intact shoots or roots indicates that synthesis of citrate exuded by -P-treated roots is directly related to nonphotosynthetic C fixation in roots. C fixed in roots of -P-treated plants contributed about 25 and 34% of the C exuded as citrate and malate, respectively. Nonphotosynthetic C fixation in white lupin roots is an integral component in the exudation of large amounts of citrate and malate, thus increasing the P available to the plant.
Key Findings
1
In vivo carbon fixation rate in roots was ~4-fold higher in -P-treated plants than in +P-treated plants.
2
Nonphotosynthetic (root) carbon fixation in -P-treated plants contributed ~25% of the C exuded as citrate and ~34% as malate.
3
P deficiency in Lupinus albus induces proteoid (densely clustered tertiary lateral) root formation that exude large amounts of citrate increasing P solubilization.
4
Roots of P-deficient (-P) plants released ~25-fold more acid-stable 14C, primarily in citrate and malate, compared with P-sufficient (+P) plants.
5
Synthesis of exuded citrate in P-deficient roots is directly related to root (nonphotosynthetic) CO2 fixation, making this fixation integral to increased citrate and malate exudation and P acquisition.
Research Object
Proteoid (cluster) roots of phosphorus-deficient Lupinus albus (white lupin)
Research Subject
Nonphotosynthetic (root) carbon fixation contribution to exudation of organic acids (primarily citrate and malate) from proteoid roots under phosphorus deficiency
Publication Details
Publication Date
1996-09-01
Journal
Publisher
ISSN
Open access PDF
Access Type
Author Information
Download PDF
Subscribe to digest