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Strategies for increasing the selenium content of wheat.

机译:提高小麦硒含量的策略。

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Selenium (Se) is essential for humans and animals but has no known function in plants. Excess accumulation is toxic to both plants and animals. Dietary intake of Se is low in a large number of people worldwide. This is due to low bioavailability of Se in some soils and consequently low concentrations of Se in plant tissues. Both selenate and selenite are taken up by plants and subsequently translocated around the plant. Selenate, an analogue of sulphate, is transported by the sulphate transporter family. Some plants are able to accumulate high internal concentrations of Se (hyperaccumulators); however, genetic variation in accumulation ability amongst non-accumulators such as cereals, is relatively small. Within plant tissues, Se enters the pathways for sulphate assimilation and metabolism and will replace cysteine and methionine in proteins, often with detrimental effect. Alternatively, Se may be accumulated as methylated derivatives or lost from the plant following volatilisation. Agronomic biofortification of crops with Se-containing fertilisers, which is practised in some countries, provides the best short-term solution for improving Se content of wheat. Longer-term genetic improvement, particularly by targeting substrate discrimination of transporters between selenate and sulphate, for example, may provide a means to enhance uptake and promote accumulation. All rights reserved, Elsevier.
机译:硒(Se)对人类和动物必不可少,但在植物中没有已知的功能。过多的积累对动植物都有毒。全世界许多人的饮食中硒的摄入量都很低。这是由于某些土壤中硒的生物利用度较低,因此植物组织中硒的浓度较低。硒酸盐和亚硒酸盐都被植物吸收,随后在植物周围转移。硒酸盐是硫酸盐的类似物,由硫酸盐转运蛋白家族转运。一些植物能够积累高浓度的硒(超蓄积元素)。但是,谷物等非蓄积体中蓄积能力的遗传变异相对较小。在植物组织中,硒进入硫酸盐吸收和代谢的途径,并会替代蛋白质中的半胱氨酸和蛋氨酸,通常具有有害作用。或者,Se可以作为甲基化衍生物积累或在挥发后从植物中损失。在某些国家/地区,采用含硒肥料对农作物进行农艺生物强化,为提高小麦的硒含量提供了最佳的短期解决方案。长期的遗传改良,特别是通过针对硒酸盐和硫酸盐之间的转运蛋白进行底物区分,可以提供增强摄取和促进积累的手段。保留所有权利,Elsevier。

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