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The highly conserved plant microRNA, miR156, affects plant development, metabolite composition, and stress response. Our previous research revealed the role of miR156 in abiotic stress response in Medicago sativa exerted by downregulating SQUAMOSA-PROMOTER BINDING PROTEIN-LIKE transcription factors. Here we investigated the involvement and possible mechanism of action of the miR156/SPL module in flooding tolerance in alfalfa. For that, we used miR156 overexpressing, SPL13RNAi, flood-tolerant (AAC-Trueman) and -sensitive (AC-Caribou) alfalfa cultivars exposed to flooding. We also used Arabidopsis ABA insensitive (abi1-2, abi5-8) mutants and transgenic lines with either overexpressed (KIN10-OX1, KIN10-OX2) or silenced (KIN10RNAi-1, KIN10RNAi-2) catalytic subunit of SnRK1 to investigate a possible role of ABA and SnRK1 in regulating miR156 expression under flooding. Physiological analysis, hormone profiling and global transcriptome changes revealed a role for miR156/SPL module in flooding tolerance. We also identified nine novel alfalfa SPLs (SPL1, SPL1a, SPL2a, SPL7, SPL7a, SPL8, SPL13a, SPL14, SPL16) responsive to flooding. Our results also showed a possible ABA-dependent SnRK1 upregulation to enhance miR156 expression, resulting in downregulation of SPL4, SPL7a, SPL8, SPL9, SPL13, and SPL13a. We conclude that these effects induce flooding adaptive responses in alfalfa and modulate stress physiology by affecting the transcriptome, ABA metabolites and secondary metabolism.
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http://dx.doi.org/10.1038/s41598-021-82450-7 | DOI Listing |
Physiol Plant
August 2025
College of Life Science, Northeast Forestry University, Harbin, China.
Anthocyanins are crucial compounds known for their antioxidant and health benefits. The Aft tomato (Solanum lycopersicum) line LA1996 can generate anthocyanins in fruits upon light exposure. Despite the identification of various regulatory genes, such as microRNAs and transcription factors involved in anthocyanin biosynthesis across different plant species, the function of the miR156/SPL module in Aft tomato fruit pigmentation is not well understood.
View Article and Find Full Text PDFPlant Biotechnol J
August 2025
Apple Technology Innovation Center of Shandong Province, Shandong Collaborative Innovation Center of Fruit & Vegetable Quality and Efficient Production, National Key Laboratory of Wheat Improvement, College of Horticulture Science and Engineering, Shandong Agricultural University, Taian, Shandong, C
Fruit development typically follows pollination and fertilisation. However, parthenocarpy, the formation of seedless fruits, represents an alternative pathway. The fruit that grows from the ovary under unpollinated and/or unfertilised conditions is termed parthenocarpic.
View Article and Find Full Text PDFGenes (Basel)
June 2025
Agriculture and Agri-Food Canada, 1391 Sandford Street, London, ON N5V 4T3, Canada.
Background: Aluminum (Al) toxicity severely limits (alfalfa) production on acidic soils, resulting in major yield losses worldwide. The highly conserved miRNA156 (miR156) functions by downregulating at least 11 SQUAMOSA promoter-binding protein-like (SPL) transcription factors in alfalfa, including SPL13, but its role in Al stress remains unclear. This study aimed to investigate the miR156/SPL regulatory network's function in alfalfa under Al stress.
View Article and Find Full Text PDFCell Rep
July 2025
Chongqing Key Laboratory of Tree Germplasm Innovation and Utilization, Integrative Science Center of Germplasm Creation in Western China (Chongqing) Science City, School of Life Sciences, Southwest University, Chongqing 400715, China; Key Laboratory of Eco-environments of Three Gorges Reservoir Regi
In natural forests and plantations, trees often encounter neighbor proximity that hinders wood production. However, the mechanisms by which shade regulates cambial activity during secondary growth remain elusive. Here, we show that high stand density and simulated shade (low R/FR ratios) inhibit cambial division and differentiation in Populus trees.
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