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Jatropha curcas is a promising feedstock for biofuel production because its oil is highly suitable for processing bio-jet fuels and biodiesel. However, Jatropha exhibits a long juvenile stage in subtropical areas. miR172, a conserved small non-protein-coding RNA molecule with 21 nucleotides, regulates a wide range of developmental processes. To date, however, no studies have examined the function of miR172 in Jatropha. There are five miR172 precursors encoding two mature miR172s in Jatropha, which are expressed in all tissues, with the highest expression level in leaves, and the levels are up-regulated with age. Overexpression of JcmiR172a resulted in early flowering, abnormal flowers, and altered leaf morphology in transgenic Arabidopsis and Jatropha. The expression levels of miR172 target genes were down-regulated, and the flower identity genes were up-regulated in the JcmiR172a-overexpressing transgenic plants. Interestingly, we showed that JcmiR172 might be involved in regulation of stem vascular development through manipulating the expression of cellulose and lignin biosynthesis genes. Overexpression of JcmiR172a enhanced xylem development and reduced phloem and pith development. This study helped elucidate the functions of miR172 in perennial plants, a known age-related miRNA involved in the regulation of perennial plant phase change and organ development.
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http://dx.doi.org/10.1093/pcp/pcy175 | DOI Listing |
Physiol Plant
September 2025
CAS Key Laboratory of Tropical Plant Resources and Sustainable Use, Xishuangbanna Tropical Botanical Garden, Chinese Academy of Sciences, Menglun, China.
Balsa (Ochroma lagopus Swartz), the world's lightest wood and a crucial material in wind turbine blades, holds significant potential to contribute to carbon neutrality efforts when cultivated in tropical areas such as Xishuangbanna, China. However, balsa trees planted in Xishuangbanna exhibit early branching, resulting in reduced wood yield. Our study investigated the pivotal factors in regulating shoot apical dominance and branching by comparing an early-branching cultivar from Indonesia with a late-branching cultivar from Ecuador.
View Article and Find Full Text PDFProtoplasma
August 2025
Department of Electronics Technology, Guru Nanak Dev University, Amritsar, Punjab, 143005, India.
Exposure to electromagnetic radiation (EMR) at varied power densities can profoundly affect fertilization in plants by posing physiological stress and impairing pollen's ability to fertilize. In the present study, four sites (under exposure to EMR at varied power densities) like S-1 (1 μW/cm), S-2 (2.8 μW/cm), S-3 (5.
View Article and Find Full Text PDFSci Rep
August 2025
VN-UK Institute for Research and Executive Education, The University of Danang, Danang City, 550000, Vietnam.
Staphylococcus aureus and methicillin-resistant Staphylococcus aureus (MRSA) are increasingly prevalent pathogens associated with multidrug-resistant infections in both hospital and community. In this study, we evaluated the antibacterial activity of Jatropha podagrica Hook. extracts collected from Vietnam against S.
View Article and Find Full Text PDFInfect Drug Resist
July 2025
Department of Laboratory, Faculty of Medicine and Health Sciences, Alnasser University, Sanaa, Yemen.
Background: There is a growing interest in natural materials with antibacterial qualities as alternatives. Jatropha curcas latex has long been used to treat infections.
Objective: Compare the antimicrobial activities of both and the used antibiotics against the isolated microorganisms which cause wound burn infection.
Chem Biodivers
July 2025
Faculty of Pharmacy, Hue University of Medicine and Pharmacy, Hue University, Hue City, Vietnam.
In the search for new antimicrobial agents, this study investigated the phytochemical composition of the aerial parts of Jatropha integerrima, leading to the isolation of two new myrsinane-type diterpenoids, jatrophodiones F and G (1, 2), along with seven known compounds: jatrointelone A (3), α-tocospiro A (4), 8(14),15-sandaracopimaradien-3β-ol (5), curdione (6), 5α,8α-epidioxyergosta-6,9(11),22-trien-3β-ol (7), 7-oxo-β-sitosterol (8), and 3β-hydroxystigmast-5(6),22-diene-7-one (9). The structures of these compounds were elucidated via high-resolution electrospray ionization time-of-flight mass spectrometry and infrared, ultraviolet, and nuclear magnetic resonance spectroscopy, comparing the analyses with reported spectroscopic data. Compounds 1-3 and 5-9 exhibited moderate to strong activity against eight microorganisms, including Salmonella enterica, Escherichia coli, Pseudomonas aeruginosa, Enterococcus faecalis, Bacillus cereus, Staphylococcus aureus, Candida albicans, and Aspergillus brasiliensis, with minimum inhibitory concentrations (MICs) ranging from 32 to 256 µg/mL.
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