Shi Zhi-Hao, Zhang Cheng, Xu Xiao-Feng, Zhu Jun, Zhou Que, Ma Li-Juan, Niu Jin, Yang Zhong-Nan
College of Life and Environmental Sciences, Shanghai Normal University, Shanghai 200234, China.
PLoS One. 2015 Mar 30;10(3):e0117317. doi: 10.1371/journal.pone.0117317. eCollection 2015.
Callose synthesis is critical for the formation of the pollen wall pattern. CalS5 is thought to be the major synthethase for the callose wall. In the Arabidopsis anther, ARF17 regulates the expression of CalS5 and is the target of miR160. Plants expressing miR160-resistant ARF17 (35S:5mARF17 lines) with increased ARF17 mRNA levels display male sterility. Here we report a zinc finger family gene, AtTTP, which is involved in miR160 maturation and callose synthesis in Arabidopsis. AtTTP is expressed in microsporocytes, tetrads and tapetal cells in the anther. Over-expression lines of AtTTP (AtTTP-OE line) exhibited reduced male fertility. CalS5 expression was tremendously reduced and the tetrad callose wall became much thinner in the AtTTP-OE line. Northern blotting hybridization and quantitative RT-PCR analysis revealed that miR160 was decreased, while the expression of ARF17 was increased in the AtTTP-OE line. Based on these results, we propose that AtTTP associates with miR160 in order to regulate the ARF17 expression needed for callose synthesis and pollen wall formation.
胼胝质合成对于花粉壁模式的形成至关重要。CalS5被认为是胼胝质壁的主要合成酶。在拟南芥花药中,ARF17调节CalS5的表达,并且是miR160的作用靶点。表达抗miR160的ARF17(35S:5mARF17株系)且ARF17 mRNA水平升高的植株表现出雄性不育。在此我们报道一个锌指家族基因AtTTP,它参与拟南芥中miR160的成熟和胼胝质合成。AtTTP在花药中的小孢子母细胞、四分体和绒毡层细胞中表达。AtTTP的过表达株系(AtTTP-OE株系)表现出雄性育性降低。在AtTTP-OE株系中,CalS5的表达大幅降低,四分体胼胝质壁变得薄得多。Northern印迹杂交和定量RT-PCR分析表明,在AtTTP-OE株系中miR160减少,而ARF17的表达增加。基于这些结果,我们提出AtTTP与miR160结合,以调节胼胝质合成和花粉壁形成所需的ARF17表达。