Xu Min, Zhu Ling, Shou Huixia, Wu Ping
State Key Laboratory of Plant Physiology and Biochemistry, College of Life Sciences, Zhejiang University, Hangzhou, Zhejiang, PR China.
Plant Cell Physiol. 2005 Oct;46(10):1674-81. doi: 10.1093/pcp/pci183. Epub 2005 Aug 6.
Auxin transport affects a variety of important growth and developmental processes in plants, including the regulation of shoot and root branching. The asymmetrical localization of auxin influx and efflux carriers within the plasma membrane establishes the auxin gradient and facilitates its transport. REH1, a rice EIR1 (Arabidopsis ethylene insensitive root 1)-like gene, is a putative auxin efflux carrier. Phylogenetic analysis of 32 members of the PIN family, taken from across different species, showed that in terms of evolutionary relationship, OsPIN1 is closer to the PIN1 family than to the PIN2 family. It is, therefore, renamed as OsPIN1 in this study. OsPIN1 was expressed in the vascular tissues and root primordial in a manner similar to AtPIN1. Adventitious root emergence and development were significantly inhibited in the OsPIN1 RNA interference (RNAi) transgenic plants, which was similar to the phenotype of NPA (N-1-naphthylphalamic acid, an auxin-transport inhibitor)-treated wild-type plants. alpha-naphthylacetic acid (alpha-NAA) treatment was able to rescue the mutated phenotypes occurring in the RNAi plants. Overexpression or suppression of the OsPIN1 expression through a transgenic approach resulted in changes of tiller numbers and shoot/root ratio. Taken together, these data suggest that OsPIN1 plays an important role in auxin-dependent adventitious root emergence and tillering.
生长素运输影响植物多种重要的生长和发育过程,包括地上部和根部分支的调控。质膜内生长素流入和流出载体的不对称定位建立了生长素梯度并促进其运输。REH1是一个水稻EIR1(拟南芥乙烯不敏感根1)样基因,是一个假定的生长素流出载体。对来自不同物种的32个PIN家族成员进行系统发育分析表明,就进化关系而言,OsPIN1与PIN1家族比与PIN2家族更接近。因此,本研究中将其重命名为OsPIN1。OsPIN1在维管组织和根原基中的表达方式与AtPIN1相似。OsPIN1 RNA干扰(RNAi)转基因植物中不定根的发生和发育受到显著抑制,这与用生长素运输抑制剂N-1-萘基邻氨甲酰苯甲酸(NPA)处理的野生型植物的表型相似。α-萘乙酸(α-NAA)处理能够挽救RNAi植物中出现的突变表型。通过转基因方法过表达或抑制OsPIN1的表达会导致分蘖数和地上部/根部比值的变化。综上所述,这些数据表明OsPIN1在生长素依赖的不定根发生和分蘖中起重要作用。