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Flores-Tornero, M.

Publications and source records attributed to Flores-Tornero, M..

2 recordsLinked to original sources

High throughput isolation of male gametophyte cells of Solanum lycopersicum var. Micro-Tom by fluorescence-activated cell sorting.

Efficient isolation of male gametes has enabled unprecedented advances in omics research, crucial for elucidating the molecular mechanisms governing male gametogenesis and fertilization. In this study, we developed a method for isolating generative and sperm cells from the economically important crop Solanum lycopersicum. A double fluorescent marker line was generated in the tomato variety Micro-Tom, employing mTurquoise and mScarlet-I fluorescent proteins under the control of promoters exhibiting preferential activity in generative and sperm cells, respectively. Then we developed a protocol that combines male gamete release from pollen of this line and SYTOX Red live/dead cell stain to obtain viable cells by Fluorescence-activated cell sorting. This allows the isolation of generative cells from mature pollen grains, and of sperm cells from pollen tubes after semi-in vivo growth, both in high quantity and purity. Additionally, an unexpected mScarlet-I signal in the vegetative nucleus, that persists until the sperm cells are formed, allows the sorting of vegetative nuclei. We anticipate that our novel double-marker line will accelerate research into tomato male gametogenesis, thereby enhancing efforts to improve the resilience of fertilization processes to climate change.

plant biology↗

OsbHLH089 and OsbHLH094 Modulate OsSLR1 Levels to Maintain Male Reproductive Fitness in Rice

DELLA proteins are a unique class of transcriptional regulators in plants, playing critical roles in diverse biological processes. Far from being only negative regulators of the Gibberellin (GA) signalling pathway, DELLAs act as central signalling hubs due to their versatile binding capacity and responsiveness to GA fluctuations. This adaptability allows DELLAs to interact with a wide array of proteins but also makes their functional study challenging: disruptions in DELLA function lead to pleiotropic effects across multiple pathways. To address this complexity, understanding DELLA interactors provides valuable insights into DELLAs nuanced functions and regulation. Building on this approach, we investigated novel OsSLR1 interactors, OsbHLH089 and OsbHLH094, members of the basic-helix-loop-helix transcription factor family. Our findings reveal that OsbHLH089 and OsbHLH094 are expressed in mature pollen grains, with the Osbhlh089/94 double mutant displaying smaller, indehiscent anthers and non-viable pollen, indicating their redundant role in pollen development during its late stages. Through ChIP-Seq and RNA-Seq analyses, we identified five target genes repressed by OsbHLH089 and OsbHLH094 (OsTDL1A, OsSPS1, OsDGD2{beta}, OspPGM, and OsDPE2) that are essential for pollen and anther development. Interestingly, we also observed the binding of these TFs to the OsSLR1 promoter. Notably, while other target genes were repressed, OsSLR1 was induced, with a significant protein accumulation in the double mutant compared to the Kitaake background in the late stages of pollen development. This suggests that OsSLR1 accumulation may compromise pollen viability, further highlighting the critical regulatory role of OsbHLH089 and OsbHLH094 in repressing OsSLR1 levels for proper pollen and anther development.

plant biology↗