Ning Kexin, Li Xuezhi, Yan Jin, Liu Junjie, Gao Zhihua, Tang Wenqiang, Sun Yu
Key Laboratory of Molecular and Cellular Biology of Ministry of Education, Hebei Research Center of the Basic Discipline of Cell Biology, Hebei Collaboration Innovation Center for Cell Signaling, Hebei Key Laboratory of Molecular and Cellular Biology, College of Life Sciences, Hebei Normal University, Shijiazhuang, China.
School of Information Technology, Hebei University of Economics and Business, Shijiazhuang, China.
Plant Cell Environ. 2025 Feb;48(2):978-991. doi: 10.1111/pce.15178. Epub 2024 Oct 7.
Pollen development and germination are critical for successful generation of offspring in plants, yet they are highly susceptible to heat stress (HS). However, the molecular mechanism underlying this process has not been fully elucidated. In this study, we highlight the essential roles of two mRNA capping enzymes, named Arabidopsis mRNA capping phosphatase (ARCP) 1 and 2, in regulating male and female gamete development. The transmission efficiencies of gametes carrying arcp1 arcp2 from arcp1 arcp2 and arcp1 arcp2 mutants are 30% and zero, respectively. These mutants exhibited a significant increase in misshaped pollen, with germination rates approximately half of those in wild type. ARCP1/2 exhibit RNA triphosphatase and RNA guanylyltransferase activities, which are required for proper pollen development. Through RNA-seq analysis, genes involved in pollen development/germination and HS response were identified as downregulated genes in pollen from arcp1 arcp2 mutant. Furthermore, ARCP2 protein is degraded under HS condition, and inducing the expression of ARCP2 can increase the pollen germination rate under elevated temperature. We propose that HS triggers the degradation of mRNA capping enzymes, which in turn disrupts the transcriptome that required for pollen development and pollen germination and ultimately leads to male sterility.
花粉发育和萌发对于植物成功产生后代至关重要,但它们对热胁迫(HS)高度敏感。然而,这一过程背后的分子机制尚未完全阐明。在本研究中,我们强调了两种mRNA加帽酶,即拟南芥mRNA加帽磷酸酶(ARCP)1和2,在调节雄配子和雌配子发育中的重要作用。来自arcp1 arcp2和arcp1 arcp2突变体的携带arcp1 arcp2的配子的传递效率分别为30%和零。这些突变体中畸形花粉显著增加,萌发率约为野生型的一半。ARCP1/2具有RNA三磷酸酶和RNA鸟苷酸转移酶活性,这是花粉正常发育所必需的。通过RNA测序分析,参与花粉发育/萌发和热胁迫响应的基因被鉴定为arcp1 arcp2突变体花粉中的下调基因。此外,ARCP2蛋白在热胁迫条件下会降解,诱导ARCP2的表达可以提高高温下的花粉萌发率。我们提出,热胁迫触发mRNA加帽酶的降解,进而破坏花粉发育和花粉萌发所需的转录组,最终导致雄性不育。