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水稻调节因子HDR1与激酶OsK4相互作用以控制光周期开花。

The Oryza sativa Regulator HDR1 Associates with the Kinase OsK4 to Control Photoperiodic Flowering.

作者信息

Sun Xuehui, Zhang Zhiguo, Wu Jinxia, Cui Xuean, Feng Dan, Wang Kai, Xu Ming, Zhou Li, Han Xiao, Gu Xiaofeng, Lu Tiegang

机构信息

Biotechnology Research Institute/National Key Facility for Genetic Resources and Gene Improvement, The Chinese Academy of Agricultural Sciences, Beijing, P. R. China.

出版信息

PLoS Genet. 2016 Mar 8;12(3):e1005927. doi: 10.1371/journal.pgen.1005927. eCollection 2016 Mar.

Abstract

Rice is a facultative short-day plant (SDP), and the regulatory pathways for flowering time are conserved, but functionally modified, in Arabidopsis and rice. Heading date 1 (Hd1), an ortholog of Arabidopsis CONSTANS (CO), is a key regulator that suppresses flowering under long-day conditions (LDs), but promotes flowering under short-day conditions (SDs) by influencing the expression of the florigen gene Heading date 3a (Hd3a). Another key regulator, Early heading date 1 (Ehd1), is an evolutionarily unique gene with no orthologs in Arabidopsis, which acts as a flowering activator under both SD and LD by promoting the rice florigen genes Hd3a and RICE FLOWERING LOCUST 1 (RFT1). Here, we report the isolation and characterization of the flowering regulator Heading Date Repressor1 (HDR1) in rice. The hdr1 mutant exhibits an early flowering phenotype under natural LD in a paddy field in Beijing, China (39°54'N, 116°23'E), as well as under LD but not SD in a growth chamber, indicating that HDR1 may functionally regulate flowering time via the photoperiod-dependent pathway. HDR1 encodes a nuclear protein that is most active in leaves and floral organs and exhibits a typical diurnal expression pattern. We determined that HDR1 is a novel suppressor of flowering that upregulates Hd1 and downregulates Ehd1, leading to the downregulation of Hd3a and RFT1 under LDs. We have further identified an HDR1-interacting kinase, OsK4, another suppressor of rice flowering under LDs. OsK4 acts similarly to HDR1, suppressing flowering by upregulating Hd1 and downregulating Ehd1 under LDs, and OsK4 can phosphorylate HD1 with HDR1 presents. These results collectively reveal the transcriptional regulators of Hd1 for the day-length-dependent control of flowering time in rice.

摘要

水稻是一种兼性短日植物(SDP),拟南芥和水稻中控制开花时间的调控途径是保守的,但功能有所改变。抽穗期1(Hd1)是拟南芥CONSTANS(CO)的直系同源基因,是一个关键调控因子,在长日条件下(LDs)抑制开花,但在短日条件下(SDs)通过影响成花素基因抽穗期3a(Hd3a)的表达促进开花。另一个关键调控因子,早熟抽穗期1(Ehd1),是一个在进化上独特的基因,在拟南芥中没有直系同源基因,它通过促进水稻成花素基因Hd3a和水稻开花位点T1(RFT1)在短日和长日条件下均作为开花激活因子。在此,我们报道了水稻中开花调控因子抽穗期抑制因子1(HDR1)的分离和特性分析。hdr1突变体在中国北京的稻田自然长日条件下(北纬39°54′,东经116°23′)以及在生长室的长日而非短日条件下表现出早花表型,表明HDR1可能通过光周期依赖途径在功能上调控开花时间。HDR1编码一种核蛋白,在叶片和花器官中活性最高,并呈现典型的昼夜表达模式。我们确定HDR1是一种新型的开花抑制因子,它上调Hd1并下调Ehd1,导致长日条件下Hd3a和RFT1的下调。我们进一步鉴定了一个与HDR1相互作用的激酶OsK4,它是长日条件下水稻开花的另一个抑制因子。OsK4的作用与HDR1相似,在长日条件下通过上调Hd1和下调Ehd1抑制开花,并且当HDR1存在时OsK4可以磷酸化HD1。这些结果共同揭示了Hd1在水稻中对开花时间进行日长依赖性控制的转录调控因子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7397/4783006/19e29c831047/pgen.1005927.g001.jpg

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