Search bioRxivSearch

Biology subjects

dos Anjos, L.

Publications and source records attributed to dos Anjos, L..

2 recordsLinked to original sources

Distinct metabolic flux modes through the tricarboxylic acid cycle in mesophyll and guard cells revealed by GC-MS-based 13C-positional isotopomer analysis

O_LI13C-Metabolic flux analysis (13C-MFA) have greatly contributed to revealing the regulation of plant metabolism. However, mass spectrometry (MS) approaches have hitherto been limited in their power to deduce flux information due to lack of positional information. C_LIO_LIHere we established an MS-based 13C-positional isotopomer labelling approach and performed a multi-species/cell-types analysis based on previous 13C-MFA to compare flux modes through the tricarboxylic acid (TCA) cycle and associated pathways in mesophyll (MCs) and guard cells (GCs). C_LIO_LIBoth cell types showed high 13C-enrichment in pyruvate. However, GCs and sink MCs, but not source MCs showed high 13C-incorporation into Glu/Gln following provision of 13C-sucrose. Only GCs showed higher 13C-enrichment in the carbon 1 atom of Gln, which is derived from PEPc-mediated CO2 fixation. Increased 13C-enrichment in the carbon 1 of Glu was also observed in both trxo1 and ntra ntrb mutants, but not in wild type Arabidopsis plants, following provision of 13C-glucose. C_LIO_LIOur results suggest that the mitochondrial thioredoxin system restricts the fluxes from PEPc and glycolysis to Glu in illuminated MCs and reveal that fluxes throughout the TCA cycle of GCs resemble those of sink MCs but operate different non-cyclic flux modes to support Gln synthesis in the light. C_LI

plant biology

Complex dynamics arising from the interplay between prey harvest saturation and predator-prey dynamics

A study of the influence of prey harvest saturation on the dynamics of a predator-prey system is undertaken. It is shown that the augmentation of the constant intensity harvest part of this functional response can significantly change prey-predator dynamics by means of slight variations of the constant harvest intensity, rendering thus species management difficult due to, for instance, multiple attractors. Given that some management policies rely on the harvest saturation structure studied in this work, these results may have significant implications regarding renewable resource management.

ecology