Division of Biological Science, Graduate School of Science, Nagoya University, Chikusa, Nagoya 464-8602, Japan.
Science. 2017 Jan 20;355(6322):284-286. doi: 10.1126/science.aai9057.
Plants achieve mineral ion homeostasis by means of a hydrophobic barrier on endodermal cells called the Casparian strip, which restricts lateral diffusion of ions between the root vascular bundles and the soil. We identified a family of sulfated peptides required for contiguous Casparian strip formation in Arabidopsis roots. These peptide hormones, which we named Casparian strip integrity factor 1 (CIF1) and CIF2, are expressed in the root stele and specifically bind the endodermis-expressed leucine-rich repeat receptor kinase GASSHO1 (GSO1)/SCHENGEN3 and its homolog, GSO2. A mutant devoid of CIF peptides is defective in ion homeostasis in the xylem. CIF genes are environmentally responsive. Casparian strip regulation is not merely a passive process driven by root developmental cues; it also serves as an active strategy to cope with adverse soil conditions.
植物通过位于内皮层细胞上的疏水性屏障即凯氏带实现矿质离子稳态,凯氏带限制了离子在根维管束和土壤之间的侧向扩散。我们鉴定了一个在拟南芥根中连续形成凯氏带所必需的硫酸化肽家族。这些肽激素,我们称之为凯氏带完整性因子 1(CIF1)和 CIF2,在根中柱表达,并特异性结合内皮层表达的富含亮氨酸重复受体激酶 GASSHO1(GSO1)/SCHENGEN3 及其同源物 GSO2。缺乏 CIF 肽的突变体在木质部的离子稳态中存在缺陷。CIF 基因对环境有响应。凯氏带的调节不仅仅是由根发育信号驱动的被动过程;它也是一种应对不利土壤条件的主动策略。