HAWAIIAN SKIRT regulates the quiescent center‐independent meristem activity in Arabidopsis roots

分生组织 胚胎干细胞 生物 细胞生物学 拟南芥 有丝分裂 细胞生长 人口 细胞分裂素 侧根 中柱周期 调节器 祖细胞 细胞 干细胞 遗传学 基因 生长素 突变体 人口学 社会学
作者
Eun‐Sol Kim,Goh Choe,José Sebastián,Kook Hui Ryu,Linyong Mao,Zhangjun Fei,Ji‐Young Lee
出处
期刊:Physiologia Plantarum [Wiley]
卷期号:157 (2): 221-233 被引量:6
标识
DOI:10.1111/ppl.12443
摘要

Root apical meristem (RAM) drives post-embryonic root growth by constantly supplying cells through mitosis. It is composed of stem cells and their derivatives, the transit-amplifying (TA) cells. Stem cell organization and its maintenance in the RAM are well characterized, however, their relationships with TA cells remain unclear. SHORTROOT (SHR) is critical for root development. It patterns cell types and promotes the post-embryonic root growth. Defective root growth in the shr has been ascribed to the lack of quiescent center (QC), which maintains the surrounding stem cells. However, our recent investigation indicated that SHR maintains TA cells independently of QC by modulating PHABULOSA (PHB) through miRNA165/6. PHB controls TA cell activity by modulating cytokinin levels and type B Arabidopsis Response Regulator activity, in a dosage-dependent manner. To further understand TA cell regulation, we conducted a shr suppressor screen. With an extensive mutagenesis screen followed by genome sequencing of a pooled F2 population, we discovered two suppressor alleles with mutations in HAWAIIAN SKIRT (HWS). HWS, encoding an F-box protein with kelch domain, is expressed, partly depending on SHR, in the root cap and in the pericycle of the differentiation zone. Interestingly, root growth in the shr hws was more active than the wild-type roots for the first 7 days after germination, without recovering QC. Contrary to shr phb, shr hws did not show a recovery of cytokinin signaling. These indicate that HWS affects QC-independent TA cell activities through a pathway distinctive from PHB.
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