一种兼性根寄生植物 Phtheirospermum japonicum 的分化支系 KAI2 受体对绞股蓝内酯的高灵敏度感知

Saori Takei, Masahiko Otani, Tomoya Ishikawa, Taiki Suzuki, Shoma Okabe, Kotaro Nishiyama, Naoto Kawakami, Yoshiya Seto
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引用次数: 0

摘要

日本蕨(Phtheirospermum japonicum)是大戟科植物,属于面根寄生植物,可以在不寄生宿主的情况下生存。相比之下,同属木犀科的 Striga 和 Orobanche 等强制性根寄生植物在没有寄主的情况下无法生存。必须根寄生植物的萌芽通常是由宿主根部产生的低浓度糙伏内酯(SL)诱导的。研究发现,KAI2/HTL 家族蛋白参与了非寄生植物对 karrikin(KAR)的感知,KAR 是一种来源于烟雾的萌发诱导剂,也是一种未确定的内源配体。有根寄生植物拥有独特的 KAI2 分支基因,统称为 KAI2d。其中许多基因已被证明具有 SL 受体的功能。耐人寻味的是,KAI2d支系基因在日本蝇中也是保守的,尽管这种植物的发芽不需要SL。日本豚草中 KAI2d 蛋白的生化和生理功能仍不清楚。在此,我们报告了其中一些蛋白在日本豚草中可作为 SL 受体发挥作用。此外,我们发现其中的一个蛋白 PjKAI2d4 在拟南芥中表达时对 SLs 高度敏感,它与在 Striga 和 Orobanche 中发现的敏感 SL 受体相似。这些结果表明,KAI2d族SL受体不仅在强制性寄生植物中起着关键作用,而且在兼性寄生植物中也起着关键作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Highly sensitive strigolactone perception by a divergent clade KAI2 receptor in a facultative root parasitic plant, Phtheirospermum japonicum
Phtheirospermum japonicum, a member of the Orobanchaceae family, is a facultative root parasitic plant that can survive without parasitizing the host. In contrast, obligate root parasitic plants such as Striga and Orobanche, which are also members of the Orobanchaceae family, cannot survive in the absence of the host. The germination of obligate root parasitic plants is typically induced by host root-derived strigolactones (SLs) at very low concentrations. The KAI2/HTL family proteins have been found to be involved in the perception of karrikin (KAR), a smoke-derived germination inducer and unidentified endogenous ligand, in non-parasitic plants. Obligate root parasitic plants possess uniquely diverged KAI2 clade genes, which are collectively referred to as KAI2d. Many of those have been shown to function as SL receptors. Intriguingly, the KAI2d clade genes are also conserved in P. japonicum, even though this plant does not require SLs for germination. The biochemical and physiological functions of the KAI2d proteins in P. japonicum remain unclear. Here, we report that some of these proteins can function as SL receptors in P. japonicum. Moreover, we found that one of them, PjKAI2d4, is highly sensitive to SLs when expressed in Arabidopsis, and it is similar to the sensitive SL receptors found in Striga and Orobanche. These results suggest that the KAI2d clade SL receptors play a crucial role not only in obligate parasites but also in facultative parasitic plants.
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