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1.
Sci Rep ; 7(1): 11012, 2017 09 08.
Article in English | MEDLINE | ID: mdl-28887557

ABSTRACT

Purple acid phosphatases (PAPs) play important roles in phosphate (Pi) acquisition and utilization. These PAPs hydrolyze organic Phosphorus (P) containing compounds in rhizosphere as well as inside the plant cell. However, roles of PAPs in one of the most widely cultivated legumes, chickpea (Cicer arietnum L.), have not been unraveled so far. In the present study, we identified 25 putative PAPs in chickpea (CaPAPs) which possess functional PAP motifs and domains. Differential regulation of CaPAPs under different nutrient deficiencies revealed their roles under multiple nutrient stresses including Pi deficiency. Interestingly, most of the CaPAPs were prominently expressed in flowers and young pods indicating their roles in flower and seed development. Association mapping of SNPs underlying CaPAPs with seed traits revealed significant association of low Pi inducible CaPAP7 with seed weight and phytate content. Biochemical characterization of recombinant CaPAP7 established it to be a functional acid phosphatase with highest activity on most abundant organic-P substrate, phytate. Exogenous application of recombinant CaPAP7 enhanced biomass and Pi content of Arabidopsis seedlings supplemented with phytate as sole P source. Taken together, our results uncover the PAPs in chickpea and potential roles of CaPAP7 in seed phytate accumulation.


Subject(s)
Acid Phosphatase/metabolism , Cicer/enzymology , Cicer/metabolism , Glycoproteins/metabolism , Phytic Acid/metabolism , Seeds/metabolism , Arabidopsis/genetics , Arabidopsis/growth & development , Arabidopsis/metabolism , Gene Expression , Recombinant Proteins/metabolism
2.
Sci Rep ; 7: 43397, 2017 03 06.
Article in English | MEDLINE | ID: mdl-28262713

ABSTRACT

Apposite development of anther and its dehiscence are important for the reproductive success of the flowering plants. Recently, bHLH142, a bHLH transcription factor encoding gene of rice has been found to show anther-specific expression and mutant analyses suggest its functions in regulating tapetum differentiation and degeneration during anther development. However, our study on protein level expression and gain-of-function phenotype revealed novel aspects of its regulation and function during anther development. Temporally dissimilar pattern of bHLH142 transcript and polypeptide accumulation suggested regulation of its expression beyond transcriptional level. Overexpression of bHLH142 in transgenic rice resulted in indehiscent anthers and aborted pollen grains. Defects in septum and stomium rupture caused anther indehiscence while pollen abortion phenotype attributed to abnormal degeneration of the tapetum. Furthermore, RNA-Seq-based transcriptome analysis of tetrad and mature pollen stage anthers of wild type and bHLH142OEplants suggested that it might regulate carbohydrate and lipid metabolism, cell wall modification, reactive oxygen species (ROS) homeostasis and cell death-related genes during rice anther development. Thus, bHLH142 is an anther-specific gene whose expression is regulated at transcriptional and post-transcriptional/translational levels. It plays a role in pollen maturation and anther dehiscence by regulating expression of various metabolic pathways-related genes.


Subject(s)
Basic Helix-Loop-Helix Transcription Factors/genetics , Flowers/genetics , Gene Expression Regulation, Plant , Oryza/genetics , Plant Proteins/genetics , Pollen/genetics , Basic Helix-Loop-Helix Transcription Factors/metabolism , Carbohydrate Metabolism/genetics , Cell Death , Cell Wall/genetics , Cell Wall/metabolism , Flowers/growth & development , Flowers/metabolism , Gene Expression Regulation, Developmental , Lipid Metabolism/genetics , Oryza/growth & development , Oryza/metabolism , Phenotype , Plant Cells/metabolism , Plant Proteins/metabolism , Plants, Genetically Modified , Pollen/growth & development , Pollen/metabolism , Reactive Oxygen Species/metabolism
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