Centre for Research in Agricultural Genomics, Centro de Investigaciones Científicas-Institut de Recerca i Tecnologia Agroalimentàries-Universidad Autónoma de Barcelona-Universidad de Barcelona, Campus Universidad Autónoma de Barcelona, 08193 Barcelona, Spain
Department BioSciences, University of Milan, 20133 Milan, Italy.
Plant Physiol. 2020 Aug;183(4):1663-1680. doi: 10.1104/pp.20.00562. Epub 2020 Jun 18.
In plants, correct formation of reproductive organs is critical for successful seedset and perpetuation of the species. Plants have evolved different molecular mechanisms to coordinate flower and seed development at the proper time of the year. Among the plant-specific RELATED TO ABI3 AND VP1 (RAV) family of transcription factors, only TEMPRANILLO1 (TEM1) and TEM2 have been shown to affect reproductive development in Arabidopsis (). They negatively regulate the floral transition through direct repression of and , encoding major components of the florigen. Here we identify genes from rice (), and unravel their regulatory roles in key steps of reproductive development. Our data strongly suggest that, like TEMs, OsRAV9/OsTEM1 has a conserved function as a repressor of photoperiodic flowering upstream of the floral activators and , through a mechanism reminiscent of that one underlying floral transition in temperate cereals. Furthermore, and may have acquired a new function in the differentiation of the carpel and the control of seed size, acting downstream of floral homeotic factors. Alternatively, this function may have been lost in Arabidopsis. Our data reveal conservation of gene function in the regulation of flowering time in monocotyledonous and dicotyledonous plants, but also unveil roles in the development of rice gynoecium.
在植物中,生殖器官的正确形成对于成功的种子设置和物种的延续至关重要。植物已经进化出不同的分子机制,以在一年中的适当时间协调花和种子的发育。在植物特异性的 RELATED TO ABI3 AND VP1 (RAV) 转录因子家族中,只有 TEMPRANILLO1 (TEM1) 和 TEM2 被证明会影响拟南芥的生殖发育 (). 它们通过直接抑制和编码成花素的主要成分来负调控花的转变。在这里,我们从水稻中鉴定了基因,并揭示了它们在生殖发育关键步骤中的调节作用。我们的数据强烈表明,与 TEM 一样,OsRAV9/OsTEM1 作为光周期开花的抑制剂,在上游的和,具有保守功能,通过类似于温带谷物中花转变的机制。此外,和可能在心皮的分化和种子大小的控制中获得了一个新的功能,作用于花同源异型因子的下游。或者,这个功能在拟南芥中已经丢失了。我们的数据揭示了在调控单子叶植物和双子叶植物开花时间方面的基因功能保守性,但也揭示了在水稻雌蕊发育中的作用。