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)
Jane M. F. Johnson, George D. Weiblen, Carroll P. Vance, Deborah L. Allan
1996-09-01

citrate and malate exudationorganic acid exudationproteoid rootsroot nonphotosynthetic CO2 fixation
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.
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.

Proteoid (cluster) roots of phosphorus-deficient Lupinus albus (white lupin)

Nonphotosynthetic (root) carbon fixation contribution to exudation of organic acids (primarily citrate and malate) from proteoid roots under phosphorus deficiency

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1996-09-01
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Jane M. F. Johnson
George D. Weiblen
Carroll P. Vance
Deborah L. Allan
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