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Medicago truncatula IPD3 is a member of the common symbiotic signaling pathway required for rhizobial and mycorrhizal symbioses

机译:ca藜苜蓿IPD3是根瘤菌和菌根共生酶所需的常见共生信号通路的成员

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摘要

Legumes form endosymbiotic associations with nitrogen-fixing bacteria and arbuscular mycorrhizal (AM) fungi which facilitate nutrient uptake. Both symbiotic interactions require a molecular signal exchange between the plant and the symbiont, and this involves a conserved symbiosis (Sym) signaling pathway. In order to identify plant genes required for intracellular accommodation of nitrogen-fixing bacteria and AM fungi, we characterized Medicago truncatula symbiotic mutants defective for rhizobial infection of nodule cells and colonization of root cells by AM hyphae. Here, we describe mutants impaired in the interacting protein of DMI3 (IPD3) gene, which has been identified earlier as an interacting partner of the calcium/calmodulin-dependent protein, a member of the Sym pathway. The ipd3 mutants are impaired in both rhizobial and mycorrhizal colonization and we show that IPD3 is necessary for appropriate Nod-factor-induced gene expression. This indicates that IPD3 is a member of the common Sym pathway. We observed differences in the severity of ipd3 mutants that appear to be the result of the genetic background. This supports the hypothesis that IPD3 function is partially redundant and, thus, additional genetic components must exist that have analogous functions to IPD3. This explains why mutations in an essential component of the Sym pathway have defects at late stages of the symbiotic interactions.
机译:豆类与固氮细菌和丛枝菌根(AM)真菌形成共生共生体,促进营养吸收。两种共生相互作用都需要在植物和共生体之间进行分子信号交换,这涉及保守的共生(Sym)信号传导途径。为了鉴定固氮细菌和AM真菌在细胞内适应所需的植物基因,我们鉴定了苜蓿t​​藜共生突变体对根瘤菌侵染根瘤细胞和AM菌丝定植根细胞有缺陷。在这里,我们描述了DMI3(IPD3)基因的相互作用蛋白中受损的突变体,该突变体已被更早地确定为钙/钙调蛋白依赖性蛋白(Sym途径的成员)的相互作用伴侣。 ipd3突变体在根瘤菌和菌根定植中均受损,并且我们显示IPD3对于适当的Nod因子诱导的基因表达是必需的。这表明IPD3是常见Sym途径的成员。我们观察到ipd3突变体的严重性差异似乎是遗传背景的结果。这支持IPD3功能部分冗余的假设,因此,必须存在具有与IPD3类似功能的其他遗传成分。这解释了为什么Sym途径必不可少的突变在共生相互作用的后期具有缺陷。

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