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RNA 解旋酶 32 对于拟南芥雌性配子体的发育是必需的。

RNA HELICASE 32 is essential for female gametophyte development in Arabidopsis.

机构信息

Engineering Research Center of Crop Genetic Improvement and Germplasm Innovation in Henan Province, College of Life Sciences, Henan Normal University, Xinxiang, Henan 453007, China.

Institute of Farmland Irrigation, Chinese Academy of Agricultural Sciences, Xinxiang, Henan 453007, China.

出版信息

Plant Sci. 2024 Oct;347:112183. doi: 10.1016/j.plantsci.2024.112183. Epub 2024 Jul 5.

DOI:10.1016/j.plantsci.2024.112183
PMID:38972549
Abstract

The normal progression of mitotic cycles and synchronized development within female reproductive organs are pivotal for sexual reproduction in plants. Nevertheless, our understanding of the genetic regulation governing mitotic cycles during the haploid phase of higher plants remains limited. In this study, we characterized RNA HELICASE 32 (RH32), which plays an essential role in female gametogenesis in Arabidopsis. The rh32 heterozygous mutant was semi-sterile, whereas the homozygous mutant was nonviable. The rh32 mutant allele could be transmitted through the male gametophyte, but not the female gametophyte. Phenotypic analysis revealed impaired mitotic progression, synchronization, and cell specification in rh32 female gametophytes, causing the arrest of embryo sacs. In the delayed pollination test, none of the retarded embryo sacs developed into functional female gametophytes, and the vast majority of rh32 female gametophytes were defective in the formation of the large central vacuole. RH32 is strongly expressed in the embryo sac. Knock-down of RH32 resulted in the accumulation of unprocessed 18 S pre-rRNA, implying that RH32 is involved in ribosome synthesis. Based on these findings, we propose that RH32 plays a role in ribosome synthesis, which is critical for multiple processes in female gametophyte development.

摘要

有丝分裂周期的正常进展和雌性生殖器官内的同步发育对于植物的有性繁殖至关重要。然而,我们对高等植物单倍体阶段有丝分裂周期的遗传调控的理解仍然有限。在这项研究中,我们对 RNA 解旋酶 32(RH32)进行了表征,该基因在拟南芥的雌性配子体发生中起着重要作用。rh32 杂合突变体是半不育的,而纯合突变体是不能存活的。rh32 突变等位基因可以通过雄性配子体传递,但不能通过雌性配子体传递。表型分析显示,rh32 雌性配子体中有丝分裂进程、同步和细胞特化受损,导致胚囊停滞。在延迟授粉试验中,没有一个延迟的胚囊发育成功能性雌性配子体,而且大多数 rh32 雌性配子体在形成大中央液泡方面存在缺陷。RH32 在胚囊中强烈表达。RH32 的敲低导致未加工的 18S 前 rRNA 的积累,这表明 RH32 参与核糖体的合成。基于这些发现,我们提出 RH32 参与核糖体的合成,这对雌性配子体发育的多个过程至关重要。

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