The dominant male sterility gene Ms2 in wheat has been widely used in recurrent selection and variety improvement. Identification of genes associated with the male sterility in Ms2-carrying wheat will help us understand how Ms2 functions. Using a pair of isogenic lines of Ms2, subtractive hybridization was conducted with cDNA from bulked spikelets at meiophase of sterile plants as the tester and cDNA from the same tissues of fertile plants as the driver. Two major bands at 270 bp and 450 bp were obtained by suppression PCR (polymerase chain reaction) of the subtractive cDNA. A total of 882 recombinants from PCR product cloning were isolated for reverse Northern analysis. The results demonstrated that up to 90% of the inserts in the library were up-regulated in the sterile spikelets. Twenty-one unique inserts from this library were sequenced. Similarity search showed that eighteen of them were homologous to ESTs (expression sequence tags) derived from spike or anther tissues at meiophase. The chromosome locations of nine of the ESTs were determined using C.S. (Chinese spring) nulli-tetrasomic lines, one of which was assigned to chromosome group 4 that includes chromosome 4D where Ms2 is located. In addition, four additional ESTs could also be assigned to this group according to their homology to BACs (bacterial artificial chromosomes) or PAC (P1 artificial chromosomes) of rice chromosome 3. The expression patterns of eight of the inserts examined displayed increased expression in spikelets and anthers of the sterile plants.
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Cytotechnology
April 2025
University Centre for Research and Development, University Institute of Pharmaceutical Sciences, Chandigarh University, Gharuan, Mohali, 140413 India.
When juxtaposed with 2D cell culture models, multicellular tumor spheroids demonstrate a capacity to faithfully replicate certain features inherent to solid tumors. These include spatial architecture, physiological responses, the release of soluble mediators, patterns of gene expression, and mechanisms of drug resistance. The morphological and behavioural similarities between 3D-cultured cells and cells within tumor masses highlight the potential of these models in studying cancer biology and drug responses.
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Electrical and Computer Engineering Department, Integrated Circuits and Bioengineering Laboratory, Carnegie Mellon University, Pittsburgh, PA, United States.
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October 2024
Date Palm Research Center of Excellence, King Faisal University, PO Box 31982, Al-Ahsa, Saudi Arabia.
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July 2024
Department of Entomology, College of Plant Protection, South China Agricultural University, Guangzhou 510642, China.
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July 2024
State Key Laboratory of Animal Nutrition and Feeding, Institute of Animal Sciences, Chinese Academy of Agricultural Sciences, Beijing, China.
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