Pages that link to "Q43483105"
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The following pages link to AAP1 regulates import of amino acids into developing Arabidopsis embryos (Q43483105):
Displaying 46 items.
- Physical, metabolic and developmental functions of the seed coat (Q26809964) (← links)
- The Arabidopsis TUMOR PRONE5 gene encodes an acetylornithine aminotransferase required for arginine biosynthesis and root meristem maintenance in blue light (Q33355069) (← links)
- The metabolic role of the legume endosperm: a noninvasive imaging study (Q33502527) (← links)
- OsAAP6 functions as an important regulator of grain protein content and nutritional quality in rice. (Q34246225) (← links)
- A putative role for amino acid permeases in sink-source communication of barley tissues uncovered by RNA-seq (Q34398270) (← links)
- Genome-wide survey and expression analysis of amino acid transporter gene family in rice (Oryza sativa L.). (Q34482092) (← links)
- The genetic basis of natural variation in seed size and seed number and their trade-off using Arabidopsis thaliana MAGIC lines (Q34636314) (← links)
- Metabolic and transcriptional transitions in barley glumes reveal a role as transitory resource buffers during endosperm filling (Q35118651) (← links)
- Molecular Evolution of Plant AAP and LHT Amino Acid Transporters. (Q35970806) (← links)
- Comparative transcriptome analysis of basal and zygote-located tip regions of peanut ovaries provides insight into the mechanism of light regulation in peanut embryo and pod development (Q36101903) (← links)
- Asymmetric transcriptomic signatures between the cob and florets in the maize ear under optimal- and low-nitrogen conditions at silking, and functional characterization of amino acid transporters ZmAAP4 and ZmVAAT3. (Q36107708) (← links)
- Genome-Wide analysis of the AAAP gene family in moso bamboo (Phyllostachys edulis). (Q36265362) (← links)
- Genome-Wide Identification, Classification, and Expression Analysis of Amino Acid Transporter Gene Family in Glycine Max. (Q36814201) (← links)
- The AAP gene family for amino acid permeases contributes to development of the cyst nematode Heterodera schachtii in roots of Arabidopsis (Q37080187) (← links)
- Cytokinins and Expression of SWEET, SUT, CWINV and AAP Genes Increase as Pea Seeds Germinate (Q37534614) (← links)
- Understanding plant response to nitrogen limitation for the improvement of crop nitrogen use efficiency (Q37798366) (← links)
- Accelerating yield potential in soybean: potential targets for biotechnological improvement (Q37891992) (← links)
- Regulation of leaf senescence and crop genetic improvement (Q38058143) (← links)
- Regulation of amino acid metabolic enzymes and transporters in plants. (Q38239081) (← links)
- Improving Plant Nitrogen Use Efficiency through Alteration of Amino Acid Transport Processes. (Q38667273) (← links)
- Spatiotemporal expression patterns of wheat amino acid transporters reveal their putative roles in nitrogen transport and responses to abiotic stress (Q38678095) (← links)
- Network-Guided GWAS Improves Identification of Genes Affecting Free Amino Acids (Q38875842) (← links)
- Relationship between asparagine metabolism and protein concentration in soybean seed (Q41785939) (← links)
- Increased phloem transport of S-methylmethionine positively affects sulfur and nitrogen metabolism and seed development in pea plants. (Q42869250) (← links)
- Significance of light, sugar, and amino acid supply for diurnal gene regulation in developing barley caryopses (Q43122830) (← links)
- Siliques are Red1 from Arabidopsis acts as a bidirectional amino acid transporter that is crucial for the amino acid homeostasis of siliques (Q44802073) (← links)
- Comparability of imazapyr-resistant Arabidopsis created by transgenesis and mutagenesis. (Q45919272) (← links)
- Connecting Source with Sink: The Role of Arabidopsis AAP8 in Phloem Loading of Amino Acids (Q46573553) (← links)
- Improvement of pea biomass and seed productivity by simultaneous increase of phloem and embryo loading with amino acids (Q46820340) (← links)
- Source and sink mechanisms of nitrogen transport and use. (Q47366327) (← links)
- Metabolite profiling and associated gene expression reveal two metabolic shifts during the seed-to-seedling transition in Arabidopsis thaliana. (Q47631143) (← links)
- Transport Function of Rice Amino Acid Permeases (AAPs). (Q48580336) (← links)
- Prolonged Expression of a Putative Invertase Inhibitor in Micropylar Endosperm Suppressed Embryo Growth in Arabidopsis (Q49735284) (← links)
- Blocking amino acid transporter OsAAP3 improves grain yield by promoting outgrowth buds and increasing tiller number in rice. (Q52430480) (← links)
- The long and winding road: transport pathways for amino acids in Arabidopsis seeds. (Q52726057) (← links)
- Arabidopsis UMAMIT24 and 25 are amino acid exporters involved in seed loading (Q57471495) (← links)
- A conserved motif is essential for the correct assembly of proglutelins and for their export from the endoplasmic reticulum in rice endosperm (Q58788644) (← links)
- Leaf Amino Acid Supply Affects Photosynthetic and Plant Nitrogen Use Efficiency under Nitrogen Stress (Q58798420) (← links)
- Function of pea amino acid permease AAP6 in nodule nitrogen metabolism and export, and plant nutrition (Q58800741) (← links)
- Genetic and Molecular Regulation of Seed Storage Proteins (SSPs) to Improve Protein Nutritional Value of Oilseed Rape () Seeds (Q63230343) (← links)
- Disruption of an amino acid transporter LHT1 leads to growth inhibition and low yields in rice. (Q64963196) (← links)
- Altered xylem-phloem transfer of amino acids affects metabolism and leads to increased seed yield and oil content in Arabidopsis (Q82449222) (← links)
- Role of ureides in source-to-sink transport of photoassimilates in non-fixing soybean (Q90439269) (← links)
- Genome-wide identification of the amino acid permease genes and molecular characterization of their transcriptional responses to various nutrient stresses in allotetraploid rapeseed (Q91736431) (← links)
- Genome-wide identification, characterization and expression analysis of the amino acid permease gene family in tea plants (Camellia sinensis) (Q91808426) (← links)
- Rice OsLHT1 Functions in Leaf-to-Panicle Nitrogen Allocation for Grain Yield and Quality (Q98735667) (← links)