Department of Bacteriology, University of Wisconsin, Madison, Wisconsin 53706, USA.
Department of Agronomy, University of Wisconsin, Madison, Wisconsin 53706, USA.
Plant Physiol. 2022 Oct 27;190(3):1699-1714. doi: 10.1093/plphys/kiac356.
The transcription factor NODULE INCEPTION (NIN) has been studied extensively for its multiple roles in root nodule symbiosis within plants of the nitrogen-fixing clade (NFC) that associate with soil bacteria, such as rhizobia and Frankia. However, NIN homologs are present in plants outside the NFC, suggesting a role in other developmental processes. Here, we show that the biofuel crop Populus sp., which is not part of the NFC, contains eight copies of NIN with diversified protein sequence and expression patterns. Lipo-chitooligosaccharides (LCOs) are produced by rhizobia and a wide range of fungi, including mycorrhizal ones, and act as symbiotic signals that promote lateral root formation. RNAseq analysis of Populus sp. treated with purified LCO showed induction of the PtNIN2 subfamily. Moreover, the expression of PtNIN2b correlated with the formation of lateral roots and was suppressed by cytokinin treatment. Constitutive expression of PtNIN2b overcame the inhibition of lateral root development by cytokinin under high nitrate conditions. Lateral root induction in response to LCOs likely represents an ancestral function of NIN retained and repurposed in nodulating plants, as we demonstrate that the role of NIN in LCO-induced root branching is conserved in both Populus sp. and legumes. We further established a visual marker of LCO perception in Populus sp. roots, the putative sulfotransferase PtSS1 that can be used to study symbiotic interactions with the bacterial and fungal symbionts of Populus sp.
转录因子 NODULE INCEPTION(NIN)在植物根瘤共生中的多个角色已被广泛研究,它与土壤细菌(如根瘤菌和 Frankia)相关的固氮类群(NFC)植物中的共生作用。然而,NIN 同源物存在于 NFC 之外的植物中,这表明它在其他发育过程中发挥作用。在这里,我们展示了生物燃料作物杨树属,它不属于 NFC,含有八个 NIN 拷贝,具有多样化的蛋白质序列和表达模式。脂寡糖(LCOs)由根瘤菌和广泛的真菌(包括菌根真菌)产生,作为促进侧根形成的共生信号。用纯化的 LCO 处理杨树属的 RNAseq 分析显示 PtNIN2 亚家族的诱导。此外,PtNIN2b 的表达与侧根的形成相关,并被细胞分裂素处理所抑制。在高硝酸盐条件下,PtNIN2b 的组成型表达克服了细胞分裂素对侧根发育的抑制。LCO 诱导的侧根形成可能代表了 NIN 在结瘤植物中保留和重新利用的一个古老功能,正如我们所证明的,NIN 在 LCO 诱导的根分枝中的作用在杨树属和豆科植物中是保守的。我们进一步在杨树属的根中建立了 LCO 感知的可视化标记,即假定的磺基转移酶 PtSS1,可用于研究与杨树属的细菌和真菌共生体的共生相互作用。