Soyano Takashi, Hirakawa Hideki, Sato Shusei, Hayashi Makoto, Kawaguchi Masayoshi
National Institute for Basic Biology, Okazaki, Aichi 444-8585, Japan; National Institute of Agrobiological Sciences, Tsukuba, Ibaraki 305-8602, Japan;
Kazusa DNA Research Institute, Kisarazu, Chiba 292-0818, Japan; and.
Proc Natl Acad Sci U S A. 2014 Oct 7;111(40):14607-12. doi: 10.1073/pnas.1412716111. Epub 2014 Sep 22.
Autoregulatory negative-feedback loops play important roles in fine-balancing tissue and organ development. Such loops are composed of short-range intercellular signaling pathways via cell-cell communications. On the other hand, leguminous plants use a long-distance negative-feedback system involving root-shoot communication to control the number of root nodules, root lateral organs that harbor symbiotic nitrogen-fixing bacteria known as rhizobia. This feedback system, known as autoregulation of nodulation (AON), consists of two long-distance mobile signals: root-derived and shoot-derived signals. Two Lotus japonicus CLAVATA3/endosperm surrounding region (CLE)-related small peptides, CLE root signal1 (CLE-RS1) and CLE-RS2, function as root-derived signals and are perceived by a shoot-acting AON factor, the hypernodulation aberrant root formation1 (HAR1) receptor protein, an ortholog of Arabidopsis CLAVATA1, which is responsible for shoot apical meristem homeostasis. This peptide-receptor interaction is necessary for systemic suppression of nodulation. How the onset of nodulation activates AON and how optimal nodule numbers are maintained remain unknown, however. Here we show that an RWP-RK-containing transcription factor, nodule inception (NIN), which induces nodule-like structures without rhizobial infection when expressed ectopically, directly targets CLE-RS1 and CLE-RS2. Roots constitutively expressing NIN systemically repress activation of endogenous NIN expression in untransformed roots of the same plant in a HAR1-dependent manner, leading to systemic suppression of nodulation and down-regulation of CLE expression. Our findings provide, to our knowledge, the first molecular evidence of a long-distance autoregulatory negative-feedback loop that homeostatically regulates nodule organ formation.
自调节负反馈环在精细平衡组织和器官发育中发挥着重要作用。此类环由通过细胞间通讯的短程细胞间信号通路组成。另一方面,豆科植物利用一种涉及根 - shoot通讯的长距离负反馈系统来控制根瘤的数量,根瘤是含有被称为根瘤菌的共生固氮细菌的根侧器官。这种反馈系统,称为结瘤自调节(AON),由两种长距离移动信号组成:根源信号和shoot源信号。两种百脉根CLAVATA3/胚乳周围区域(CLE)相关小肽,CLE根信号1(CLE-RS1)和CLE-RS2,作为根源信号起作用,并被一种在shoot起作用的AON因子,即超结瘤异常根形成1(HAR1)受体蛋白所感知,它是拟南芥CLAVATA1的直系同源物,负责shoot顶端分生组织的稳态。这种肽 - 受体相互作用对于结瘤的系统抑制是必需的。然而,结瘤的起始如何激活AON以及如何维持最佳的根瘤数量仍然未知。在这里,我们表明,一种含有RWP-RK的转录因子,结瘤起始(NIN),当异位表达时可诱导无根瘤菌感染的类根瘤结构,它直接靶向CLE-RS1和CLE-RS2。组成型表达NIN的根以HAR1依赖的方式系统性地抑制同一植物未转化根中内源性NIN表达的激活,导致结瘤的系统性抑制和CLE表达的下调。据我们所知,我们的发现提供了第一个长距离自调节负反馈环的分子证据,该环以稳态方式调节根瘤器官的形成。