scholarly article | Q13442814 |
P356 | DOI | 10.1111/TPJ.13506 |
P698 | PubMed publication ID | 28181322 |
P50 | author | John F. Golz | Q54653403 |
Joanne E Lee | Q57373793 | ||
P2093 | author name string | Zhaojun Ding | |
Zhong-Bao Yang | |||
Walter J Horst | |||
Xiaoyu Geng | |||
P2860 | cites work | Characterization of AtALMT1 expression in aluminum-inducible malate release and its role for rhizotoxic stress tolerance in Arabidopsis. | Q46989224 |
Pectin methylesterases: sequence-structural features and phylogenetic relationships | Q48714928 | ||
Identification of the primary lesion of toxic aluminum in plant roots | Q50439757 | ||
TAA1-regulated local auxin biosynthesis in the root-apex transition zone mediates the aluminum-induced inhibition of root growth in Arabidopsis. | Q53494634 | ||
PECTIN METHYLESTERASE INHIBITOR6 promotes Arabidopsis mucilage release by limiting methylesterification of homogalacturonan in seed coat epidermal cells | Q56026933 | ||
Aluminum Toxicity and Tolerance in Plants | Q56269767 | ||
Spatial coordination of aluminium uptake, production of reactive oxygen species, callose production and wall rigidification in maize roots | Q57015904 | ||
Resistance to Aluminium and Manganese Toxicities in Plants related to Variety and Cation-Exchange Capacity | Q59087407 | ||
Growth of the plant cell wall | Q29616250 | ||
Genome-wide insertional mutagenesis of Arabidopsis thaliana | Q29617345 | ||
Arabidopsis PECTIN METHYLESTERASE17 is co-expressed with and processed by SBT3.5, a subtilisin-like serine protease. | Q30360583 | ||
Pectin methylesterase, a regulator of pollen tube growth | Q33216938 | ||
AGL24, SHORT VEGETATIVE PHASE, and APETALA1 redundantly control AGAMOUS during early stages of flower development in Arabidopsis | Q33342560 | ||
YABBYs and the transcriptional corepressors LEUNIG and LEUNIG_HOMOLOG maintain leaf polarity and meristem activity in Arabidopsis | Q33348051 | ||
SEUSS and SEUSS-LIKE transcriptional adaptors regulate floral and embryonic development in Arabidopsis | Q33348327 | ||
Alteration of cell-wall porosity is involved in osmotic stress-induced enhancement of aluminium resistance in common bean (Phaseolus vulgaris L.). | Q33349164 | ||
SEUSS and SEUSS-LIKE 2 coordinate auxin distribution and KNOXI activity during embryogenesis | Q33358811 | ||
Involvement of co-repressor LUH and the adapter proteins SLK1 and SLK2 in the regulation of abiotic stress response genes in Arabidopsis | Q33587414 | ||
LEUNIG and SEUSS co-repressors regulate miR172 expression in Arabidopsis flowers | Q33818116 | ||
Pectin methylesterases: cell wall enzymes with important roles in plant physiology | Q34360716 | ||
AtALMT1, which encodes a malate transporter, is identified as one of several genes critical for aluminum tolerance in Arabidopsis | Q34687209 | ||
A comparative genome analysis of PME and PMEI families reveals the evolution of pectin metabolism in plant cell walls | Q34951210 | ||
How do crop plants tolerate acid soils? Mechanisms of aluminum tolerance and phosphorous efficiency | Q35891643 | ||
Genomic basis for cell-wall diversity in plants. A comparative approach to gene families in rice and Arabidopsis | Q35930358 | ||
Arabidopsis PME17 Activity can be Controlled by Pectin Methylesterase Inhibitor4 | Q36214437 | ||
Tuning of Pectin Methylesterification: PECTIN METHYLESTERASE INHIBITOR 7 MODULATES THE PROCESSIVE ACTIVITY OF CO-EXPRESSED PECTIN METHYLESTERASE 3 IN A pH-DEPENDENT MANNER. | Q36281679 | ||
New insights into pectin methylesterase structure and function | Q36820520 | ||
Groucho/Tup1 family co-repressors in plant development | Q37100042 | ||
Pectin structure and biosynthesis | Q37166506 | ||
Transcriptional repression of target genes by LEUNIG and SEUSS, two interacting regulatory proteins for Arabidopsis flower development. | Q37388945 | ||
The role of the root apoplast in aluminium-induced inhibition of root elongation and in aluminium resistance of plants: a review | Q37710905 | ||
Diverse roles of Groucho/Tup1 co-repressors in plant growth and development | Q37981062 | ||
Transcriptional regulation of aluminium tolerance genes. | Q37998267 | ||
The Transcriptional Coregulator LEUNIG_HOMOLOG Inhibits Light-Dependent Seed Germination in Arabidopsis | Q38297049 | ||
Plant Adaptation to Acid Soils: The Molecular Basis for Crop Aluminum Resistance. | Q38332645 | ||
STOP1 regulates multiple genes that protect arabidopsis from proton and aluminum toxicities | Q38355558 | ||
Comparison of three colorimetric reagents in the determination of methanol with alcohol oxidase. Application to the assay of pectin methylesterase | Q43476228 | ||
Aluminum-activated citrate and malate transporters from the MATE and ALMT families function independently to confer Arabidopsis aluminum tolerance | Q44001846 | ||
Association of specific pectin methylesterases with Al-induced root elongation inhibition in rice | Q46132440 | ||
The role of SEUSS in auxin response and floral organ patterning | Q46277719 | ||
ALS3 encodes a phloem-localized ABC transporter-like protein that is required for aluminum tolerance in Arabidopsis | Q46303797 | ||
Arabidopsis ALS1 encodes a root tip and stele localized half type ABC transporter required for root growth in an aluminum toxic environment | Q46448041 | ||
Transcriptional profiling of aluminum toxicity and tolerance responses in maize roots. | Q46654886 | ||
The Arabidopsis transcription factor LUH/MUM1 is required for extrusion of seed coat mucilage | Q46748063 | ||
P433 | issue | 3 | |
P921 | main subject | cell wall | Q128700 |
P304 | page(s) | 491-504 | |
P577 | publication date | 2017-02-09 | |
P1433 | published in | The Plant Journal | Q15766987 |
P1476 | title | LEUNIG_HOMOLOG transcriptional co-repressor mediates aluminium sensitivity through PECTIN METHYLESTERASE46-modulated root cell wall pectin methylesterification in Arabidopsis | |
P478 | volume | 90 |
Q88651754 | Acid phosphatase gene GmHAD1 linked to low phosphorus tolerance in soybean, through fine mapping |
Q92990010 | Aluminum Alters the Histology and Pectin Cell Wall Composition of Barley Roots |
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