Department of Biology, Institute of Molecular Plant Biology, ETH Zurich, Universitätsstrasse 2, 8092, Zurich, Switzerland.
New Phytol. 2017 Dec;216(4):1191-1204. doi: 10.1111/nph.14751. Epub 2017 Sep 6.
Protophloem and metaphloem sieve tubes are essential for transporting carbohydrates and signalling molecules towards sink tissues. OCTOPUS (OPS) was previously identified as an important regulator of protophloem differentiation in Arabidopsis roots. Here, we investigated the role of OCTOPUS-LIKE 2 (OPL2), a gene homologous to OPS. OPL2 expression patterns were analysed, and functional equivalence of OPS and OPL2 was tested. Mutant and double mutant phenotypes were investigated. OPS and OPL2 displayed overlapping expression patterns and a high degree of functional overlap. A mutation in OPL2 revealed redundant functions of OPS and OPL2 in developmental processes in which OPS was known to play a role, notably cotyledon vascular patterning and protophloem development. Moreover, we also uncovered redundant roles for OPS and OPL2 in leaf vascular patterning and, most interestingly, metaphloem sieve tube differentiation. Our results reveal a novel OPS-like protein that, together with OPS, is an important regulator of vascular patterning, root growth and phloem development. OPS and OPL2 are the first genes identified that play a role in metaphloem sieve tube differentiation.
原套和后生韧皮部筛管对于向库组织运输碳水化合物和信号分子是必不可少的。OCTOPUS(OPS)先前被鉴定为拟南芥根中原套分化的重要调节因子。在这里,我们研究了与 OPS 同源的基因 OCTOPUS-LIKE 2(OPL2)的作用。分析了 OPL2 的表达模式,并测试了 OPS 和 OPL2 的功能等效性。研究了突变体和双突变体表型。OPS 和 OPL2 表现出重叠的表达模式和高度的功能重叠。OPL2 中的突变揭示了 OPS 和 OPL2 在 OPS 已知发挥作用的发育过程中的冗余功能,特别是子叶维管束模式形成和原套发育。此外,我们还发现 OPS 和 OPL2 在叶片维管束模式形成中存在冗余作用,最有趣的是在后生韧皮部筛管分化中也存在冗余作用。我们的研究结果揭示了一种新的 OPS 样蛋白,它与 OPS 一起是血管模式形成、根生长和韧皮部发育的重要调节因子。OPS 和 OPL2 是第一个被鉴定出在后生韧皮部筛管分化中起作用的基因。