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Biology subjects

Ghaffari, M. R.

Publications and source records attributed to Ghaffari, M. R..

2 recordsLinked to original sources

Comparative Transcriptome Analysis of Hypocotyls During the Developmental Transition of C3 cotyledons to C4 Leaves in Halimocnemis mollissima: Exploring Root-Shoot Signalings Involved in the Establishing of C4 traits

Identification of signaling pathways that control C4 photosynthesis development is essential for introducing the C4 pathway into C3 crops. Species with dual photosynthesis in their life cycle are interesting models to study such regulatory mechanisms. The species used here Halimocnemis mollissima Bunge, belonging to the Caroxyleae tribe, displays C3 photosynthesis in its cotyledons and a NAD-ME subtype of C4 photosynthesis in the First leaves (FLs) onwards. We explored the long-distance signaling pathways that are probably implicated in the shoot-root coordination associated with the manifestation of the C4 traits, including efficient resource usage by comparing the mRNA content of hypocotyls before and after the C4 first leaves formation. Histological examination showed the presence of C3 anatomy in cotyledons and C4 anatomy in the FLs. Our transcriptome analyses verified the performance of the NAD-ME subtype of C4 in FLs and revealed differential transcript abundance of several potential mobile regulators and their associated receptors or transporters in two developmentally different hypocotyls of H. mollissima Bunge. These differentially expressed genes (DEGs) belong to diverse functional groups, including various transcription factor (TF) families, phytohormones metabolism, and signaling peptides, part of which could be related to hypocotyl development. Our findings support the higher nitrogen and water use efficiency associated with C4 photosynthetic and provide insights into the coordinated above- and under-ground tissue communication during the developmental transition of C3 to C4 photosynthesis in this species.

plant biology↗

Application of DNA barcodes and spatial analysis in conservation genetics and modeling of Iranian Salicornia genetic resources

Iran is one of the origins of some Salicornia species. Nevertheless, so far, comprehensive research has not been conducted on genetic potential, distribution, selection of populations, and the economic utilization of Salicornia in Iran. In the current study, Salicornia was collected based on the previous research locations available on 26 different geographical locations of provinces in Iran. Subsequently, an accurate model was provided for identifying of Salicornia species biodiversity by performing spatial analysis and modeling of distributed areas. The results provided valuable information on the diversity of specific geographical regions, conservation status of existing species, prioritization of conservation areas, and selection of areas for Agro-Ecological, leading to the development of industrial agriculture. Further, we validated genes in the field of DNA barcoding in Salicornia plants using matK, rbcL, trnH-psbA, ycf and ITS2 identifying species groups. Together, integrating our results will provide useful information for the management and utilization of Salicornia genetic resources in Iran.

ecology↗