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The recent evolution of a symbiotic ion channel in the legume family altered ion conductance and improved functionality in calcium signaling.

机译:豆科植物中共生离子通道的最新发展改变了离子电导率并改善了钙信号传导的功能。

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Arbuscular mycorrhiza and the rhizobia-legume symbiosis are two major root endosymbioses that facilitate plant nutrition. In Lotus japonicus, two symbiotic cation channels, CASTOR and POLLUX, are indispensable for the induction of nuclear calcium spiking, one of the earliest plant responses to symbiotic partner recognition. During recent evolution, a single amino acid substitution in DOES NOT MAKE INFECTIONS1 (DMI1), the POLLUX putative ortholog in the closely related Medicago truncatula, rendered the channel solo sufficient for symbiosis; castor, pollux, and castor pollux double mutants of L. japonicus were rescued by DMI1 alone, while both Lj-CASTOR and Lj-POLLUX were required for rescuing a dmi1 mutant of M. truncatula. Experimental replacement of the critical serine by an alanine in the selectivity filter of Lj-POLLUX conferred a symbiotic performance indistinguishable from DMI1. Electrophysiological characterization of DMI1 and Lj-CASTOR (wild-type and mutants) by planar lipid bilayer experiments combined with calcium imaging in Human Embryonic Kidney-293 cells expressing DMI1 (the wild type and mutants) suggest that the serine-to-alanine substitution conferred reduced conductance with a long open state to DMI1 and improved its efficiency in mediating calcium oscillations. We propose that this single amino acid replacement in the selectivity filter made DMI1 solo sufficient for symbiosis, thus explaining the selective advantage of this allele at the mechanistic level.
机译:丛枝菌根和根瘤菌-豆科植物共生是促进植物营养的两个主要根部共生酶。在日本莲花中,两个共生阳离子通道CASTOR和POLLUX对于诱导核钙峰值是必不可少的,这是植物对共生伴侣识别的最早反应之一。在最近的进化过程中,紧密相关的梅花苜蓿中的POLLUX推定的直系同源物,即DOUBLE MAKE INFECTIONS1(DMI1)中的单个氨基酸取代,使得该通道的独奏足以共生。单独用DMI1拯救了日本刺槐的蓖麻,座ux和蓖麻座double双突变体,而挽救截短衣原体的dmi1突变体既需要Lj-CASTOR也需要Lj-POLLUX。在Lj-POLLUX选择性过滤器中用丙氨酸对关键丝氨酸进行实验性替换,赋予了与DMI1难以区别的共生性能。 DMI1和Lj-CASTOR(野生型和突变体)的电生理表征通过平面脂质双层实验结合钙成像在表达DMI1的人胚肾293细胞(野生型和突变体)中表明了丝氨酸到丙氨酸的取代降低了对DMI1的长期开放状态的电导,并提高了其介导钙振荡的效率。我们建议选择性过滤器中的此单个氨基酸替换使DMI1独奏足以共生,从而在机制水平上解释了该等位基因的选择性优势。

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