Nguyen Tien Dung, Moon Sunok, Oo Moe Moe, Tayade Rupesh, Soh Moon-Soo, Song Jong Tae, Oh Sung Aeong, Jung Ki Hong, Park Soon Ki
School of Applied Biosciences, Kyungpook National University, Daegu, 41566, Korea.
Graduate School of Biotechnology and Crop Biotech Institute, Kyung Hee University, Yongin, 17104, Korea.
Plant Reprod. 2016 Dec;29(4):291-300. doi: 10.1007/s00497-016-0293-7. Epub 2016 Oct 31.
Rice microspore-promoters. Based on microarray data analyzed for developing anthers and pollen grains, we identified nine rice microspore-preferred (RMP) genes, designated RMP1 through RMP9. To extend their biotechnological applicability, we then investigated the activity of RMP promoters originating from monocotyledonous rice in a heterologous system of dicotyledonous Arabidopsis. Expression of GUS was significantly induced in transgenic plants from the microspore to the mature pollen stages and was driven by the RMP1, RMP3, RMP4, RMP5, and RMP9 promoters. We found it interesting that, whereas RMP2 and RMP6 directed GUS expression in microspore at the early unicellular and bicellular stages, RMP7 and RMP8 seemed to be expressed at the late tricellular and mature pollen stages. Moreover, GUS was expressed in seven promoters, RMP3 through RMP9, during the seedling stage, in immature leaves, cotyledons, and roots. To confirm microspore-specific expression, we used complementation analysis with an Arabidopsis male-specific gametophytic mutant, sidecar pollen-2 (scp-2), to verify the activity of three promoters. That mutant shows defects in microspore development prior to pollen mitosis I. These results provide strong evidence that the SIDECAR POLLEN gene, driven by RMP promoters, successfully complements the scp-2 mutation, and they strongly suggest that these promoters can potentially be applied for manipulating the expression of target genes at the microspore stage in various species.
水稻小孢子启动子。基于对发育中的花药和花粉粒进行分析的微阵列数据,我们鉴定出9个水稻小孢子偏好性(RMP)基因,命名为RMP1至RMP9。为了扩展它们在生物技术方面的适用性,我们随后在双子叶拟南芥的异源系统中研究了源自单子叶水稻的RMP启动子的活性。在转基因植物中,从微孢子到成熟花粉阶段,GUS的表达均被RMP1、RMP3、RMP4、RMP5和RMP9启动子显著诱导。我们发现有趣的是,尽管RMP2和RMP6在单细胞和双细胞早期阶段的微孢子中指导GUS表达,但RMP7和RMP8似乎在三细胞晚期和成熟花粉阶段表达。此外,在幼苗期,GUS在未成熟叶片、子叶和根中的7个启动子(RMP3至RMP9)中表达。为了证实小孢子特异性表达,我们利用拟南芥雄性特异性配子体突变体侧车花粉-2(scp-2)进行互补分析,以验证3个启动子的活性。该突变体在花粉有丝分裂I之前的小孢子发育中表现出缺陷。这些结果提供了强有力的证据,表明由RMP启动子驱动的侧车花粉基因成功地互补了scp-2突变,并且强烈表明这些启动子有可能用于在各种物种的小孢子阶段操纵靶基因的表达。