McSteen Paula, Malcomber Simon, Skirpan Andrea, Lunde China, Wu Xianting, Kellogg Elizabeth, Hake Sarah
Department of Biology, Pennsylvania State University, University Park, Pennsylvania 16802, USA.
Plant Physiol. 2007 Jun;144(2):1000-11. doi: 10.1104/pp.107.098558. Epub 2007 Apr 20.
Organogenesis in plants is controlled by meristems. Axillary meristems, which give rise to branches and flowers, play a critical role in plant architecture and reproduction. Maize (Zea mays) and rice (Oryza sativa) have additional types of axillary meristems in the inflorescence compared to Arabidopsis (Arabidopsis thaliana) and thus provide an excellent model system to study axillary meristem initiation. Previously, we characterized the barren inflorescence2 (bif2) mutant in maize and showed that bif2 plays a key role in axillary meristem and lateral primordia initiation in the inflorescence. In this article, we cloned bif2 by transposon tagging. Isolation of bif2-like genes from seven other grasses, along with phylogenetic analysis, showed that bif2 is a co-ortholog of PINOID (PID), which regulates auxin transport in Arabidopsis. Expression analysis showed that bif2 is expressed in all axillary meristems and lateral primordia during inflorescence and vegetative development in maize and rice. Further phenotypic analysis of bif2 mutants in maize illustrates additional roles of bif2 during vegetative development. We propose that bif2/PID sequence and expression are conserved between grasses and Arabidopsis, attesting to the important role they play in development. We provide further support that bif2, and by analogy PID, is required for initiation of both axillary meristems and lateral primordia.
植物的器官发生受分生组织控制。腋生分生组织可产生分枝和花,在植物结构和繁殖中起着关键作用。与拟南芥相比,玉米和水稻在花序中具有额外类型的腋生分生组织,因此为研究腋生分生组织的起始提供了一个优秀的模型系统。此前,我们对玉米中的不孕花序2(bif2)突变体进行了表征,并表明bif2在花序中的腋生分生组织和侧生原基起始中起关键作用。在本文中,我们通过转座子标签法克隆了bif2。从其他七种禾本科植物中分离出bif2样基因,并进行系统发育分析,结果表明bif2是拟南芥中调节生长素运输的PID的共直系同源基因。表达分析表明,bif2在玉米和水稻花序及营养发育过程中的所有腋生分生组织和侧生原基中均有表达。对玉米中bif2突变体的进一步表型分析揭示了bif2在营养发育过程中的其他作用。我们认为,bif2/PID的序列和表达在禾本科植物和拟南芥之间是保守的,证明了它们在发育中所起的重要作用。我们进一步支持bif2以及类推的PID是腋生分生组织和侧生原基起始所必需的。