Walker Elsbeth L, Connolly Erin L
Department of Biology, University of Massachusetts, Amherst, MA 01003, United States.
Curr Opin Plant Biol. 2008 Oct;11(5):530-5. doi: 10.1016/j.pbi.2008.06.013. Epub 2008 Aug 21.
Iron is an essential nutrient for plants, yet it often limits plant growth. On the contrary, overaccumulation of iron within plant cells leads to oxidative stress. As a consequence, iron-uptake systems are carefully regulated to ensure that iron homeostasis is maintained. In response to iron limitation, plants induce expression of sets of activities that function at the root-soil interface to solubilize iron and subsequently transfer it across the plasma membrane of root cells. Recent advances have revealed key players in the signaling pathways that function to induce these iron-uptake responses. Transcription factors belonging to the basic helix-loop-helix, ABI3/VP1(B3), and NAC families appear to function either directly or indirectly in the upregulation of iron deficiency responses.
铁是植物必需的营养元素,但它常常限制植物生长。相反,植物细胞内铁的过度积累会导致氧化应激。因此,铁吸收系统受到严格调控以确保维持铁稳态。响应铁限制,植物会诱导一系列在根 - 土界面发挥作用的活性物质的表达,以溶解铁并随后将其转运穿过根细胞的质膜。最近的进展揭示了在诱导这些铁吸收反应的信号通路中的关键参与者。属于基本螺旋 - 环 - 螺旋、ABI3/VP1(B3)和NAC家族的转录因子似乎直接或间接地在缺铁反应的上调中发挥作用。