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Dealing with iron metabolism in rice: from breeding for stress toleranceto biofortification

机译:处理水稻中的铁代谢:从育种中获得抗逆性生物强化

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摘要

Iron is a well-known metal. Used by humankind since ancient times in many different ways, this element is present in all living organisms, where, unfortunately, it represents a two-way problem. Being an essential block in the composition of different proteins and metabolic pathways, iron is a vital component for animals and plants. That is why iron deficiency has a severe impact on the lives of different organisms, including humans, becoming a major concern, especially in developing countries where access to adequate nutrition is still difficult. On the other hand, this metal is also capable of causing damage when present in excess, becoming toxic to cells and affecting the whole organism. Because of its importance, iron absorption, transport and storage mechanisms have been extensively investigated in order to design alternatives that may solve this problem. As the understanding of the strategies that plants use to control iron homeostasis is an important step in the generation of improved plants that meet both human agricultural and nutritional needs, here we discuss some of the most important points about this topic.
机译:铁是众所周知的金属。自古以来,人类就以多种不同方式使用该元素,该元素存在于所有活生物体中,但不幸的是,它代表了双向问题。铁是构成不同蛋白质和代谢途径的重要组成部分,是动植物的重要成分。这就是为什么缺铁会对包括人类在内的不同生物的生命产生严重影响的原因,特别是在仍然难以获得充足营养的发展中国家中,引起人们的关注。另一方面,过量存在时,这种金属也能够造成损害,对细胞有毒并影响整个生物。由于其重要性,已经广泛研究了铁的吸收,运输和存储机制,以设计可解决此问题的替代方案。由于了解植物用于控制铁稳态的策略是产生满足人类农业和营养需求的改良植物的重要一步,因此在此我们讨论有关此主题的一些最重要的观点。

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