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Somashekar, H.

Publications and source records attributed to Somashekar, H..

2 recordsLinked to original sources

Callose Deficiency Modulates Plasmodesmata frequency and the intercellular space In Rice Anthers

Fertilization relies on pollen mother cells able to transit from mitosis-to-meiosis to supply gametes. This process involves remarkable changes at the molecular, cellular and physiological levels including (but not limited to) remodelling of cell wall. During meiosis onset, cellulose content at the pollen mother cell walls gradually declines with the concurrent deposition of the polysaccharide callose in anther locules. We aim to understand the biological significance of cellulose-to-callose turnover in pollen mother cells walls using electron microscopic analyses of rice flowers. Our observations indicate that in wild type anthers, the mitosis-to-meiosis transition coincides with a gradual reduction in the number of cytoplasmic connections called plasmodesmata. A mutant in the Oryza sativa callose synthase GSL5, impaired in callose accumulation in premeiotic and meiotic anthers, displayed a reduction in plasmodesmata frequency among pollen mother cells and tapetal cells suggesting a role for callose in plasmodesmata maintenance. In addition, a significant increase in cell-cell distance between pollen mother cells and impaired premeiotic cell shaping was observed in the mutant. The results suggest that cellulose-to-callose turnover during mitosis-meiosis transition is necessary to maintain cell-to-cell connections and optimal intercellular spacing among anther locular cells explaining the regulatory influence of callose metabolism during meiosis in flowering plants. HighlightsO_LICellulose-to-callose switch during meiosis onset in pollen mother cell walls correlates with changes in cytoplasmic connections called plasmodesmata, among meiocytes and between meiocytes and surrounding somatic cells. C_LIO_LIA mutant in GSL5 (glucan synthase like 5) affects callose deposition but no other cell wall component (e.g., cellulose) in premeiotic and meiotic anthers, except at dyad stage. C_LIO_LIImpaired callose synthesis is proposed to alter plasmodesmata frequency, the extracellular spacing and the shaping of pollen mother cells during mitosis-to-meiosis transition. C_LIO_LIIncrease in plasmodesmata frequency negatively correlates with cell-cell distance between pollen mother cells in both wildtype and a callose mutant. C_LI

plant biology↗

Rice GLUCAN SYNTHASE-LIKE5 promotes Callose deposition in Anthers to maintain proper Male Meiosis Initiation and Progression

Callose is a plant cell-wall polysaccharide whose deposition is spatiotemporally regulated in various developmental processes and environmental stress responses. Appearance of callose in premeiotic anthers is a prominent histological hallmark for the onset of meiosis in flowering plants, whose biological role in meiosis is unknown till date. Here we show that rice GLUCAN SYNTHASE LIKE5 (OsGSL5), a callose synthase, localizes on the plasma membrane of pollen mother cells (PMCs), and is responsible for biogenesis of callose in anther locules through premeiotic and meiotic stages. In osgsl5 mutant anthers mostly lacking callose deposition, aberrant PMCs accompanied by aggregated, unpaired or multivalent chromosomes were frequently observed, and furthermore, a considerable number of mutant PMCs untimely progress into meiosis compared to wild type PMCs. Immunostaining of meiosis-specific protein PAIR2 in premeiotic PMCs revealed precocious meiosis entry in osgsl5 anthers. The findings of this study bestows new knowledge on function of callose in controlling timing of male meiosis initiation and progression, in addition to roles in microsporogenesis, in flowering plants.

developmental biology↗