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Microbial-enhanced Selenium and Iron Biofortification of Wheat (Triticum aestivum L.) - Applications in Phytoremediation and Biofortification

机译:小麦的微生物增强硒和铁生物化(Triticum aestivum L.) - 植物化和生物侵蚀的应用

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摘要

Selenium (Se) is an essential trace element for humans and other mammals. Most dietary Se is derived from crops. To develop a Se biofortification strategy for wheat, the effect of selenate fertilization and bacterial inoculation on Se uptake and plant growth was investigated. YAM2, a bacterium with 99% similarity to Bacillus pichinotyi, showed many plant growth promoting characteristics. Inoculation with YAM2 enhanced wheat growth, both in the presence and absence of selenate: YAM2-inoculated plants showed significantly higher dry weight, shoot length and spike length compared to un-inoculated plants. Selenate also stimulated wheat growth; Un-inoculated Se-treated plants showed a significantly higher dry weight and shoot length compared to control plants without Se. Bacterial inoculation significantly enhanced Se concentration in wheat kernels (167%) and stems (252%), as well as iron (Fe) levels in kernels (70%) and stems (147%), compared to un-inoculated plants. Inoculated Se-treated plants showed a significant increase in acid phosphatase activity, which may have contributed to the enhanced growth. In conclusion; Inoculation with Bacillus sp. YAM2 is a promising Se biofortification strategy for wheat and potentially other crops.
机译:硒(SE)是人类和其他哺乳动物的必需痕量元素。大多数膳食SE来自作物。为小麦开发SE生物侵蚀策略,研究了硒酸盐施肥和细菌接种对SE吸收和植物生长的影响。 YAM2,一种与Bichinotyi的99%相似的细菌,显示出许多植物生长促进特征。与亚硒酸酯的存在和不存在的亚氨酸盐的接种增强了小麦生长:与未接种的植物相比,粘液2-接种植物显着更高的干重,枝条长度和尖峰长度。硒酸盐也刺激了小麦生长;与对照植物没有SE的对照植物相比,未接种的SE治疗植物显示出明显较高的干重和芽长度。与未接种的植物相比,细菌接种在小麦核(167%)和茎(252%)中的浓度(167%)和茎(252%)和茎(147%)中的铁(Fe)水平显着增强。接种的Se治疗植物显示出酸性磷酸酶活性的显着增加,这可能导致增强的生长。综上所述;用芽孢杆菌液体接种。 YAM2是小麦和潜在其他作物的有前途的硒生物侵犯策略。

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