摘要
叶的极性建立直接决定叶的平展性发育,极性改变导致叶形态异常,影响植物体的各种正常生理活动。利用反向遗传学方法,从拟南芥基因激活标签突变体库中分离到一个叶片边缘锯齿状表型的突变体(命名为pCB1294),该突变体同时表现出叶表皮腺毛形态发育异常。通过Tail-PCR方法成功定位突变基因为At5g41663,该基因编码miR319b基因。Real timePCR显示,pCB1294突变体植株中miR319b基因的表达量是野生型(col)植株的11倍多。所得结果为进一步研究miRNA调控叶极性的分子机制和进一步分析miR319b与叶形态发生的关系奠定了基础。
Leaf polarity determines leaf flatness development directly, and abnormal polarity usually results in many abnormal leaves, which subsequently affects many physiological functions of plants. So the normal leaf development is important to plants. Here, an abnormal serration leaf margin mutant with abnormal leaf trichome development, named pCB1294, was isolated from an activation tagging Arabidopsis mutant pool through reverse genetics. By TailPCR, the mutant gene loci At5g41663 encoding miR319b was successfully identified. Real time PCR shows the relative expression level of miR319b gene in the pCB1294 mutant is eleven times of higher than that of the wild (col). Our study lay the foundation for further studying the genetic mechanism of leaf polarity and investigating the interaction between miR319b and leaf morphology.
出处
《植物分类与资源学报》
CAS
CSCD
北大核心
2012年第1期28-32,共5页
Plant Diversity
基金
中国科学院百人计划项目与国家自然科学基金项目(30871704
30971452
31170256)