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1.
Plant Cell ; 36(5): 1937-1962, 2024 May 01.
Article in English | MEDLINE | ID: mdl-38242838

ABSTRACT

Plants need to acclimate to different stresses to optimize growth under unfavorable conditions. In Arabidopsis (Arabidopsis thaliana), the abundance of the chloroplast envelope protein FATTY ACID EXPORT PROTEIN1 (FAX1) decreases after the onset of low temperatures. However, how FAX1 degradation occurs and whether altered FAX1 abundance contributes to cold tolerance in plants remains unclear. The rapid cold-induced increase in RHOMBOID-LIKE PROTEASE11 (RBL11) transcript levels, the physical interaction of RBL11 with FAX1, the specific FAX1 degradation after RBL11 expression, and the absence of cold-induced FAX1 degradation in rbl11 loss-of-function mutants suggest that this enzyme is responsible for FAX1 degradation. Proteomic analyses showed that rbl11 mutants have higher levels of FAX1 and other proteins involved in membrane lipid homeostasis, suggesting that RBL11 is a key element in the remodeling of membrane properties during cold conditions. Consequently, in the cold, rbl11 mutants show a shift in lipid biosynthesis toward the eukaryotic pathway, which coincides with impaired cold tolerance. To test whether cold sensitivity is due to increased FAX1 levels, we analyzed FAX1 overexpressors. The rbl11 mutants and FAX1 overexpressor lines show superimposable phenotypic defects upon exposure to cold temperatures. Our re-sults show that the cold-induced degradation of FAX1 by RBL11 is critical for Arabidop-sis to survive cold and freezing periods.


Subject(s)
Arabidopsis Proteins , Arabidopsis , Cold Temperature , Gene Expression Regulation, Plant , Arabidopsis/genetics , Arabidopsis/metabolism , Arabidopsis/physiology , Arabidopsis Proteins/metabolism , Arabidopsis Proteins/genetics , Fatty Acid Transport Proteins/metabolism , Fatty Acid Transport Proteins/genetics , Mutation , Proteolysis
2.
Physiol Plant ; 174(2): e13653, 2022 Mar.
Article in English | MEDLINE | ID: mdl-35187664

ABSTRACT

Overexpression of the vacuolar sugar transporter TST1 in Arabidopsis leads to higher seed lipid levels and higher total seed yield per plant. However, effects on fruit biomass have not been observed in crop plants like melon, strawberry, cotton, apple, or tomato with increased tonoplast sugar transporter (TST) activity. Thus, it was unclear whether overexpression of TST in selected crops might lead to increased fruit yield, as observed in Arabidopsis. Here, we report that constitutive overexpression of TST1 from sugar beet in the important crop species Camelina sativa (false flax) resembles the seed characteristics observed for Arabidopsis upon increased TST activity. These effects go along with a stimulation of sugar export from source leaves and not only provoke optimised seed properties like higher lipid levels and increased overall seed yield per plant, but also modify the root architecture of BvTST1 overexpressing Camelina lines. Such mutants grew longer primary roots and showed an increased number of lateral roots, especially when developed under conditions of limited water supply. These changes in root properties result in a stabilisation of total seed yield under drought conditions. In summary, we demonstrate that increased vacuolar TST activity may lead to optimised yield of an oil-seed crop species with high levels of healthy ω3 fatty acids in storage lipids. Moreover, since BvTST1 overexpressing Camelina mutants, in addition, exhibit optimised yield under limited water availability, we might devise a strategy to create crops with improved tolerance against drought, representing one of the most challenging environmental cues today and in future.


Subject(s)
Arabidopsis , Beta vulgaris , Brassicaceae , Arabidopsis/genetics , Beta vulgaris/genetics , Brassicaceae/physiology , Carbohydrates , Crops, Agricultural , Lipids , Plants, Genetically Modified , Seeds/genetics , Sugars
3.
Plant Physiol ; 187(4): 2716-2730, 2021 12 04.
Article in English | MEDLINE | ID: mdl-34597404

ABSTRACT

Root growth and architecture are markedly influenced by both developmental and environmental cues. Sugars integrate different stimuli and are essential building blocks and signaling molecules for modulating the root system. Members from the SUGAR WILL EVENTUALLY BE EXPORTED TRANSPORTER (SWEET) family facilitate the transport of different sugars over cellular membranes and steer both inter and intracellular distribution of sugars. SWEET17 represents a fructose-specific sugar porter localized to the vacuolar membrane, the tonoplast. Here, we analyzed how SWEET17-dependent fructose released from vacuoles affects root growth during drought stress in Arabidopsis (Arabidopsis thaliana). We found that the SWEET17 gene was predominantly expressed in the root vasculature and in meristematic cells of the root tip. SWEET17 expression appeared markedly induced during lateral root (LR) outgrowth and under drought. Moreover, fructose repressed primary root growth but induced density and length of first order LRs. Consistently, sweet17 knock-out mutants exhibited reduced LR growth and a diminished expression of LR-development-related transcription factors during drought stress, resulting in impaired drought tolerance of sweet17 mutants. We discuss how SWEET17 activity integrates drought-induced cellular responses into fructose signaling necessary for modulation of the root system and maximal drought tolerance.


Subject(s)
Arabidopsis Proteins/genetics , Arabidopsis/genetics , Droughts , Membrane Transport Proteins/genetics , Plant Roots/growth & development , Arabidopsis/metabolism , Arabidopsis Proteins/metabolism , Membrane Transport Proteins/metabolism , Plant Roots/genetics
4.
Plant Physiol ; 182(3): 1239-1255, 2020 03.
Article in English | MEDLINE | ID: mdl-31932409

ABSTRACT

The ability of plants to withstand cold temperatures relies on their photosynthetic activity. Thus, the chloroplast is of utmost importance for cold acclimation and acquisition of freezing tolerance. During cold acclimation, the properties of the chloroplast change markedly. To provide the most comprehensive view of the protein repertoire of the chloroplast envelope, we analyzed this membrane system in Arabidopsis (Arabidopsis thaliana) using mass spectrometry-based proteomics. Profiling chloroplast envelope membranes was achieved by a cross comparison of protein intensities across the plastid and the enriched membrane fraction under both normal and cold conditions. We used multivariable logistic regression to model the probabilities for the classification of an envelope localization. In total, we identified 38 envelope membrane intrinsic or associated proteins exhibiting altered abundance after cold acclimation. These proteins comprise several solute carriers, such as the ATP/ADP antiporter nucleotide transporter2 (NTT2; substantially increased abundance) or the maltose exporter MEX1 (substantially decreased abundance). Remarkably, analysis of the frost recovery of ntt loss-of-function and mex1 overexpressor mutants confirmed that the comparative proteome is well suited to identify key factors involved in cold acclimation and acquisition of freezing tolerance. Moreover, for proteins with known physiological function, we propose scenarios explaining their possible roles in cold acclimation. Furthermore, spatial proteomics introduces an additional layer of complexity and enables the identification of proteins differentially localized at the envelope membrane under the changing environmental regime.


Subject(s)
Arabidopsis Proteins/metabolism , Chloroplast Proteins/metabolism , Chloroplasts/metabolism , Arabidopsis/metabolism , Cold Temperature , Mass Spectrometry , Membrane Transport Proteins/metabolism , Proteomics
5.
New Phytol ; 213(1): 193-205, 2017 01.
Article in English | MEDLINE | ID: mdl-27504715

ABSTRACT

Diatom plastids show several peculiarities when compared with primary plastids of higher plants or algae. They are surrounded by four membranes and depend on nucleotide uptake because, unlike in plants, nucleotide de novo synthesis exclusively occurs in the cytosol. Previous analyses suggest that two specifically adapted nucleotide transporters (NTTs) facilitate the required passage of nucleotides across the innermost plastid membrane. However, nucleotide transport across the additional plastid membranes remains to be clarified. Phylogenetic studies, transport assays with the recombinant protein as well as GFP-based targeting analyses allowed detailed characterization of a novel isoform (PtNTT5) of the six NTTs of Phaeodactylum tricornutum. PtNTT5 exhibits low amino acid similarities and is only distantly related to all previously characterized NTTs. However, in a heterologous expression system, it acts as a nucleotide antiporter and prefers various (deoxy-) purine nucleotides as substrates. Interestingly, PtNTT5 is probably located in the endoplasmic reticulum, which in diatoms also represents the outermost plastid membrane. PtNTT5, with its unusual transport properties, phylogeny and localization, can be taken as further evidence for the establishment of a sophisticated and specifically adapted nucleotide transport system in diatom plastids.


Subject(s)
Diatoms/metabolism , Purine Nucleotides/metabolism , Adenosine Diphosphate/metabolism , Adenosine Triphosphate/metabolism , Amino Acid Sequence , Antiporters/metabolism , Biological Transport , Endoplasmic Reticulum/metabolism , Green Fluorescent Proteins/metabolism , Intracellular Membranes/metabolism , Kinetics , Membrane Transport Proteins/chemistry , Membrane Transport Proteins/metabolism , Models, Biological , Phylogeny , Recombinant Fusion Proteins/metabolism , Substrate Specificity , Time Factors
6.
Proc Natl Acad Sci U S A ; 106(9): 3621-6, 2009 Mar 03.
Article in English | MEDLINE | ID: mdl-19221027

ABSTRACT

Diatoms are ecologically important algae that acquired their plastids by secondary endosymbiosis, resulting in a more complex cell structure and an altered distribution of metabolic pathways when compared with organisms with primary plastids. Diatom plastids are surrounded by 4 membranes; the outermost membrane is continuous with the endoplasmic reticulum. Genome analyses suggest that nucleotide biosynthesis is, in contrast to higher plants, not located in the plastid, but in the cytosol. As a consequence, nucleotides have to be imported into the organelle. However, the mechanism of nucleotide entry into the complex plastid is unknown. We identified a high number of putative nucleotide transporters (NTTs) in the diatoms Thalassiosira pseudonana and Phaeodactylum tricornutum and characterized the first 2 isoforms (NTT1 and NTT2). GFP-based localization studies revealed that both investigated NTTs are targeted to the plastid membranes, and that NTT1 most likely enters the innermost plastid envelope via the stroma. Heterologously expressed NTT1 acts as a proton-dependent adenine nucleotide importer, whereas NTT2 facilitates the counter exchange of (deoxy-)nucleoside triphosphates. Therefore, these transporters functionally resemble NTTs from obligate intracellular bacteria with an impaired nucleotide metabolism rather than ATP/ADP exchanging NTTs from primary plastids. We suggest that diatoms harbor a specifically-adapted nucleotide transport system and that NTTs are the key players in nucleotide supply to the complex plastid.


Subject(s)
Cytosol/metabolism , Diatoms/metabolism , Nucleotides/metabolism , Plastids/metabolism , Biological Transport , Nucleotide Transport Proteins/metabolism , Phylogeny , Substrate Specificity
7.
J Biol Chem ; 283(52): 36486-93, 2008 Dec 26.
Article in English | MEDLINE | ID: mdl-19001371

ABSTRACT

Chlamydiales and Rickettsiales as metabolically impaired, intracellular pathogenic bacteria essentially rely on "energy parasitism" by the help of nucleotide transporters (NTTs). Also in plant plastids NTT-type carriers catalyze ATP/ADP exchange to fuel metabolic processes. The uptake of ATP4-, followed by energy consumption and the release of ADP3-, would lead to a metabolically disadvantageous accumulation of negative charges in form of inorganic phosphate (Pi) in the bacterium or organelle if no interacting Pi export system exists. We identified that Pi is a third substrate of several NTT-type ATP/ADP transporters. During adenine nucleotide hetero-exchange, Pi is cotransported with ADP in a one-to-one stoichiometry. Additionally, Pi can be transported in exchange with solely Pi. This Pi homo-exchange depends on the presence of ADP and provides a first indication for only one binding center involved in import and export. Furthermore, analyses of mutant proteins revealed that Pi interacts with the same amino acid residue as the gamma-phosphate of ATP. Import of ATP in exchange with ADP plus Pi is obviously an efficient way to couple energy provision with the export of the two metabolic products (ADP plus Pi) and to maintain cellular phosphate homeostasis in intracellular living "energy parasites" and plant plastids. The additional Pi transport capacity of NTT-type ATP/ADP transporters makes the existence of an interacting Pi exporter dispensable and might explain why a corresponding protein so far has not been identified.


Subject(s)
Membrane Transport Proteins/metabolism , Phosphates/chemistry , Adenine/chemistry , Adenosine Diphosphate/chemistry , Adenosine Triphosphate/chemistry , Amino Acids/chemistry , Catalysis , Dose-Response Relationship, Drug , Escherichia coli/metabolism , Kinetics , Liposomes/chemistry , Mutation , Plastids/chemistry , Protein Binding , Time Factors
8.
Strahlenther Onkol ; 181(8): 534-9, 2005 Aug.
Article in English | MEDLINE | ID: mdl-16044222

ABSTRACT

PURPOSE: To analyze the effect of pelvic radiotherapy on ovarian function in prepubertal and pubertal girls and young adult women. PATIENTS AND METHODS: In a retrospective monoinstitutional analysis, patients < 30 years of age at diagnosis were included who had been irradiated between 1979 and 1998. The main tumor types were Hodgkin's disease (38%), Ewing's sarcoma (20%) and nephroblastoma (11%). Patients were classified into three groups according to the position of the ovary in relation to the radiation portals. Group 1 was defined by direct irradiation of both ovaries. Group 2 patients were included with both ovaries potentially located in the radiation portals. In group 3, at least one ovary was not directly irradiated. The median follow-up was 128 months. RESULTS: 16 of 55 analyzed patients were categorized in group 1. In ten of these patients, hormone status was evaluable. The ovarian doses were >/= 15 Gy. Except for one patient treated with 15 Gy all developed hormone failure. Eight of 14 patients of group 2 were evaluable. Seven of these patients developed ovarian failure. 19 of 24 patients in group 3 were evaluable. Nine of these patients developed ovarian failure. The observed difference in the rate of ovarian failure between the groups is statistically significant (p = 0.045). CONCLUSION: All patients receiving > 15 Gy to the ovaries developed hormone failure. In one case of a patient receiving an ovarian dose of 15 Gy, hormone failure was not found. In case of pelvic irradiation excluding at least one ovary, approximately half of the patients developed ovarian dysfunction, probably also due to the effects of polychemotherapy.


Subject(s)
Neoplasms/radiotherapy , Ovarian Diseases/etiology , Ovary/radiation effects , Puberty , Radiotherapy/adverse effects , Adolescent , Adult , Age Factors , Bone Neoplasms/radiotherapy , Chi-Square Distribution , Child , Child, Preschool , Dose Fractionation, Radiation , Female , Follow-Up Studies , Hodgkin Disease/radiotherapy , Humans , Infant , Kidney Neoplasms/radiotherapy , Menarche , Ovary/physiology , Ovary/physiopathology , Pregnancy , Radiotherapy Dosage , Retrospective Studies , Sarcoma, Ewing/radiotherapy , Surveys and Questionnaires , Time Factors , Wilms Tumor/radiotherapy
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