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植物中铁吸收、转运及分子调控策略的研究进展

Research progress on iron absorption, transport, and molecular regulation strategy in plants.

作者信息

Ning Xinyi, Lin Mengfei, Huang Guohua, Mao Jipeng, Gao Zhu, Wang Xiaoling

机构信息

Institute of Biological Resources, Jiangxi Academy of Sciences, Nanchang, China.

College of Environmental And Chemical Engineering, Nanchang Hangkong University, Nanchang, China.

出版信息

Front Plant Sci. 2023 Jul 3;14:1190768. doi: 10.3389/fpls.2023.1190768. eCollection 2023.

Abstract

Iron is a trace element essential for normal plant life activities and is involved in various metabolic pathways such as chlorophyll synthesis, photosynthesis, and respiration. Although iron is highly abundant in the earth's crust, the amount that can be absorbed and utilized by plants is very low. Therefore, plants have developed a series of systems for absorption, transport, and utilization in the course of long-term evolution. This review focuses on the findings of current studies of the Fe absorption mechanism I, Fe chelate absorption mechanism II and plant-microbial interaction iron absorption mechanism, particularly effective measures for artificially regulating plant iron absorption and transportation to promote plant growth and development. According to the available literature, the beneficial effects of using microbial fertilizers as iron fertilizers are promising but further evidence of the interaction mechanism between microorganisms and plants is required.

摘要

铁是植物正常生命活动所必需的微量元素,参与叶绿素合成、光合作用和呼吸作用等多种代谢途径。尽管铁在地壳中含量极为丰富,但植物能够吸收和利用的量却非常低。因此,植物在长期进化过程中形成了一系列吸收、运输和利用铁的系统。本综述重点关注当前对铁吸收机制I、铁螯合物吸收机制II和植物-微生物相互作用铁吸收机制的研究结果,特别是人工调节植物铁吸收和运输以促进植物生长发育的有效措施。根据现有文献,使用微生物肥料作为铁肥的有益效果前景广阔,但需要进一步证明微生物与植物之间相互作用机制的证据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5bb6/10351017/635391944314/fpls-14-1190768-g001.jpg

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