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Organelle antioxidants improve microspore embryogenesis in wheat and triticale

机译:细胞器抗氧化剂改善小麦和黑小麦的小孢子胚胎发生

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摘要

Low frequency of green plant production and albinism limits the use of isolated microspore culture (IMC) in cereal breeding programs. The present study was conducted in triticale and bread wheat IMC to increase the production of green plants and minimize albinism. NPB-99 + 10% Ficoll induction medium was supplemented with mitochondrial or plastid antioxidants, in a completely random design, to evaluate their contribution to successful microspore embryogenesis and green plant production. Each group of antioxidants was tested independently: first in triticale and then validated in various spring wheat genotypes. While the response differed by wheat genotype, induction medium supplemented with proline (10 mM) yielded a greater number of embryos/embryo-like structures and green plants in both triticale and wheat. No differences were found with respect to albinism in triticale or wheat except for the cv. Sadash. Among plastid antioxidants tested, glutathione (2 μM) proved to be the best antioxidant to increase embryo and green plant production. Salicylic acid also helped to reduce the number of albino plants in triticale and the wheat genotype SWS366. Overall, induction medium supplemented with proline or glutathione enhanced microspore embryogenesis in both triticale and wheat and increased the number of green plants in the recalcitrant genotypes.
机译:绿色植物生产和白化病的低频率限制了谷物育种计划中孤立小孢子培养(IMC)的使用。本研究是在黑小麦和面包小麦IMC中进行的,以增加绿色植物的产量并最小化白化病。在NPB-99 + 10%Ficoll诱导培养基中,以完全随机的设计补充了线粒体或质体抗氧化剂,以评估它们对成功的小孢子胚胎发生和绿色植物生产的贡献。每组抗氧化剂均经过独立测试:首先在小黑麦中,然后在各种春小麦基因型中进行验证。虽然反应因小麦基因型而异,但补充有脯氨酸(10 mM)的诱导培养基在黑小麦和小麦中产生了大量的胚/类胚结构和绿色植物。除黑皮病外,在黑小麦或小麦中没有发现关于白化病的差异。萨达什。在测试的质体抗氧化剂中,谷胱甘肽(2μM)被证明是增加胚芽和绿色植物产量的最佳抗氧化剂。水杨酸还有助于减少黑小麦和小麦基因型SWS366中的白化病植物数量。总体而言,补充脯氨酸或谷胱甘肽的诱导培养基可增强黑小麦和小麦中的小孢子胚胎发生,并增加顽固基因型中绿色植物的数量。

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