Centre for Integrative Legume Research, School of Agriculture and Food Sciences, The University of Queensland, St Lucia, Brisbane, Queensland, 4072, Australia.
Plant Biology Division, Noble Research Institute LLC, Ardmore, Oklahoma, 73401, USA.
Sci Rep. 2017 Aug 24;7(1):9384. doi: 10.1038/s41598-017-09296-w.
CLE peptide hormones are critical regulators of many cell proliferation and differentiation mechanisms in plants. These 12-13 amino acid glycosylated peptides play vital roles in a diverse range of plant tissues, including the shoot, root and vasculature. CLE peptides are also involved in controlling legume nodulation. Here, the entire family of CLE peptide-encoding genes was identified in Medicago truncatula (52) and Lotus japonicus (53), including pseudogenes and non-functional sequences that were identified. An array of bioinformatic techniques were used to compare and contrast these complete CLE peptide-encoding gene families with those of fellow legumes, Glycine max and Phaseolus vulgaris, in addition to the model plant Arabidopsis thaliana. This approach provided insight into the evolution of CLE peptide families and enabled us to establish putative M. truncatula and L. japonicus orthologues. This includes orthologues of nodulation-suppressing CLE peptides and AtCLE40 that controls the stem cell population of the root apical meristem. A transcriptional meta-analysis was also conducted to help elucidate the function of the CLE peptide family members. Collectively, our analyses considerably increased the number of annotated CLE peptides in the model legume species, M. truncatula and L. japonicus, and substantially enhanced the knowledgebase of this critical class of peptide hormones.
CLE 肽激素是植物中许多细胞增殖和分化机制的关键调节剂。这些 12-13 个氨基酸的糖基化肽在包括芽、根和脉管系统在内的各种植物组织中发挥着重要作用。CLE 肽还参与控制豆科植物的结瘤。在这里,鉴定了蒺藜苜蓿(52)和百脉根(53)中整个 CLE 肽编码基因家族,包括鉴定出的假基因和无功能序列。一系列生物信息学技术被用于比较和对比这些完整的 CLE 肽编码基因家族与其他豆科植物,如大豆和菜豆,以及模式植物拟南芥。这种方法深入了解了 CLE 肽家族的进化,并使我们能够建立推定的蒺藜苜蓿和百脉根的直系同源物。这包括抑制结瘤的 CLE 肽和控制根分生组织干细胞群体的 AtCLE40 的直系同源物。还进行了转录组元分析,以帮助阐明 CLE 肽家族成员的功能。总的来说,我们的分析大大增加了模式豆科植物蒺藜苜蓿和百脉根中注释的 CLE 肽数量,并大大增强了这一关键肽激素类别的知识库。