Capoen Ward, Den Herder Jeroen, Sun Jongho, Verplancke Christa, De Keyser Annick, De Rycke Riet, Goormachtig Sofie, Oldroyd Giles, Holsters Marcelle
Department of Plant Systems Biology, Flanders Institute for Biotechnology, 9052 Gent, Belgium.
Plant Cell. 2009 May;21(5):1526-40. doi: 10.1105/tpc.109.066233. Epub 2009 May 26.
Nodulation factor (NF) signal transduction in the legume-rhizobium symbiosis involves calcium oscillations that are instrumental in eliciting nodulation. To date, Ca2+ spiking has been studied exclusively in the intracellular bacterial invasion of growing root hairs in zone I. This mechanism is not the only one by which rhizobia gain entry into their hosts; the tropical legume Sesbania rostrata can be invaded intercellularly by rhizobia at cracks caused by lateral root emergence, and this process is associated with cell death for formation of infection pockets. We show that epidermal cells at lateral root bases respond to NFs with Ca2+ oscillations that are faster and more symmetrical than those observed during root hair invasion. Enhanced jasmonic acid or reduced ethylene levels slowed down the Ca2+ spiking frequency and stimulated intracellular root hair invasion by rhizobia, but prevented nodule formation. Hence, intracellular invasion in root hairs is linked with a very specific Ca2+ signature. In parallel experiments, we found that knockdown of the calcium/calmodulin-dependent protein kinase gene of S. rostrata abolished nodule development but not the formation of infection pockets by intercellular invasion at lateral root bases, suggesting that the colonization of the outer cortex is independent of Ca2+ spiking decoding.
豆科植物与根瘤菌共生过程中的结瘤因子(NF)信号转导涉及钙振荡,这对引发结瘤至关重要。迄今为止,Ca2+ 尖峰仅在根毛生长区I的细胞内细菌入侵过程中进行了研究。这种机制并非根瘤菌进入宿主的唯一途径;热带豆科植物喙荚田菁的根瘤菌可在侧根出现导致的裂缝处通过细胞间入侵,且该过程与形成感染囊的细胞死亡有关。我们发现,侧根基部的表皮细胞对NFs的反应是产生Ca2+ 振荡,其速度比根毛入侵过程中观察到的更快且更对称。茉莉酸增强或乙烯水平降低会减缓Ca2+ 尖峰频率,并刺激根瘤菌对根毛的细胞内入侵,但会阻止根瘤形成。因此,根毛中的细胞内入侵与非常特定的Ca2+ 信号相关。在平行实验中,我们发现敲除喙荚田菁的钙/钙调蛋白依赖性蛋白激酶基因会消除根瘤发育,但不会影响侧根基部通过细胞间入侵形成感染囊,这表明外皮层的定殖独立于Ca2+ 尖峰解码。