Single-cell RNA sequencing profiles of the developmental landscape of Manihot esculenta Crantz leaves

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This study created a single-cell transcriptome atlas of 11,177 cassava leaf cells, identifying 15 clusters corresponding to mesophyll, epidermis, and vascular tissues, and mapped cell differentiation trajectories.

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Abstract

Manihot esculenta Crantz (cassava) is an important crop with high photosynthetic rate and high yield. It is classified as a C3-C4 plant based on its photosynthetic and structural characteristics. To investigate the structural and photosynthetic characteristics of cassava leaves at the cellular level, a single-cell transcriptome atlas of cassava leaves was created. A total of 11,177 high-quality leaf cells were divided into 15 cell clusters. Based on leaf cell marker genes, we identified three major tissues of cassava leaves, which were mesophyll, epidermis, and vascular tissue, and analyzed their distinctive properties and metabolic activity. To supplement the genes for identifying the types of leaf cells, we screened 120 candidate marker genes. We constructed a leaf cell development trajectory map and discovered six genes related to cell differentiation fate. The structural and photosynthetic properties of cassava leaves analyzed at the single cellular level provide a theoretical foundation for further enhancing cassava yield and nutrition.

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europepmc
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