Michelotti V, Giorgetti L, Geri C, Cionini G, Pugliesi C, Fambrini M
Dipartimento di Biologia delle Piante Agrarie, Sezione di Genetica, Via Matteotti 1B, Università di Pisa, I-56124 Pisa, Italy.
Cell Biol Int. 2007 Oct;31(10):1280-7. doi: 10.1016/j.cellbi.2007.03.031. Epub 2007 Mar 31.
In plant, post-embryonic development relies on the activities of indeterminate cell populations termed meristems, spatially clustered cell lineages, wherein a subset divides indeterminately. For correct growth, the plant must maintain a constant flow of cells through the meristem, where the input of dividing pluripotent cells offsets the output of differentiating cells. KNOTTED1-like homeobox (KNOX) genes are expressed in specific patterns in the plant meristems and play important roles in maintaining meristematic cell identity. We have analyzed the expression pattern of HtKNOT1, a class I KNOX gene of Helianthus tuberosus, in stems, inflorescence meristems, floral meristems and floral organs. HtKNOT1 is expressed in cambial cells, phloem cells and xylematic parenchyma within apical stem internodes, while in basal internodes HtKNOT1 expression was restricted to the presumptive initials and recently derived phloem cells. In the reproductive phase, HtKNOT1 mRNAs were detected in both the inflorescence and floral meristems as well within lateral organ primordia (i.e. floral bracts, petals, stamens and carpels). In more differentiated flowers, the expression of HtKNOT1 was restricted to developing ovules and pollen mother cells. HtKNOT1 may play a dual role being required to maintain the meristem initials as well as initiating differentiation and/or conferring new cell identity. In particular, it is possible that HtKNOT1 cooperates at floral level with additional factors that more specifically control floral organs and pollen development in H. tuberosus.
在植物中,胚后发育依赖于被称为分生组织的不确定细胞群体的活动,分生组织是空间上聚集的细胞谱系,其中一部分细胞进行不确定的分裂。为了实现正确的生长,植物必须维持细胞持续流经分生组织,在那里,具有多能性的分裂细胞的输入抵消了分化细胞的输出。类KNOTTED1同源异型盒(KNOX)基因在植物分生组织中以特定模式表达,并在维持分生组织细胞特性方面发挥重要作用。我们分析了菊芋的I类KNOX基因HtKNOT1在茎、花序分生组织、花分生组织和花器官中的表达模式。HtKNOT1在茎尖节间的形成层细胞、韧皮部细胞和木质薄壁组织中表达,而在基部节间,HtKNOT1的表达仅限于推测的起始细胞和最近衍生的韧皮部细胞。在生殖阶段,在花序和花分生组织以及侧生器官原基(即花苞片、花瓣、雄蕊和心皮)中均检测到HtKNOT1 mRNA。在分化程度更高的花中,HtKNOT1的表达仅限于发育中的胚珠和花粉母细胞。HtKNOT1可能发挥双重作用,既需要维持分生组织起始细胞,又要启动分化和/或赋予新的细胞特性。特别是,HtKNOT1有可能在花的水平上与其他更具体地控制菊芋花器官和花粉发育的因子协同作用。