Pulse Brain · Growing Health Evidence Index
Peer-reviewed

Manganese in Plants: From Acquisition to Subcellular Allocation

Santiago Alejandro, Stefanie Höller, Bastian Meier, Edgar Peiter

Frontiers in Plant Science · 2020

Read source ↗ All evidence

Summary

Manganese (Mn) is an important micronutrient for plant growth and development and sustains metabolic roles within different plant cell compartments. The metal is an essential cofactor for the oxygen-evolving complex (OEC) of the photosynthetic machinery, catalyzing the water-splitting reaction in photosystem II (PSII). Despite the importance of Mn for photosynthesis and other processes, the physiological relevance of Mn uptake and compartmentation in plants has been underrated. The subcellular Mn homeostasis to maintain compartmented Mn-dependent metabolic processes like glycosylation, ROS scavenging, and photosynthesis is mediated by a multitude of transport proteins from diverse gene families. However, Mn homeostasis may be disturbed under suboptimal or excessive Mn availability. Mn defi

Source type
Peer-reviewed study
DOI
10.3389/fpls.2020.00300
Catalogue ID
SNmohku210-kjzu0b
Pulse AI · ask about this record

Dig deeper with Pulse AI.

Pulse AI has read the whole catalogue. Ask about this record, its theme, or how the findings apply to UK farming and policy — every answer cites the underlying studies.