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细胞分裂素与醌信号协同诱导寄生植物独脚金属线的前休眠细胞。

Cytokinins Induce Prehaustoria Coordinately with Quinone Signals in the Parasitic Plant Striga hermonthica.

机构信息

Graduate School of Science and Technology, Nara Institute of Science and Technology, 8916-5 Takayama-cho, Ikoma, Nara, 630-0192 Japan.

出版信息

Plant Cell Physiol. 2022 Oct 31;63(10):1446-1456. doi: 10.1093/pcp/pcac130.

Abstract

Orobanchaceae parasitic plants are major threats to global food security, causing severe agricultural damage worldwide. Parasitic plants derive water and nutrients from their host plants through multicellular organs called haustoria. The formation of a prehaustorium, a primitive haustorial structure, is provoked by host-derived haustorium-inducing factors (HIFs). Quinones, including 2,6-dimethoxy-p-benzoquinone (DMBQ), are of the most potent HIFs for various species in Orobanchaceae, but except non-photosynthetic holoparasites, Phelipanche and Orobanche spp. Instead, cytokinin (CK) phytohormones were reported to induce prehaustoria in Phelipanche ramosa. However, little is known about whether CKs act as HIFs in the other parasitic species to date. Moreover, the signaling pathways for quinones and CKs in prehaustorium induction are not well understood. This study shows that CKs act as HIFs in the obligate parasite Striga hermonthica but not in the facultative parasite Phtheirospermum japonicum. Using chemical inhibitors and marker gene expression analysis, we demonstrate that CKs activate prehaustorium formation through a CK-specific signaling pathway that overlaps with the quinone HIF pathway at downstream in S. hermonthica. Moreover, host root exudates activated S. hermonthica CK biosynthesis and signaling genes, and DMBQ and CK inhibitors perturbed the prehaustorium-inducing activity of exudates, indicating that host root exudates include CKs. Our study reveals the importance of CKs for prehaustorium formation in obligate parasitic plants.

摘要

列当科寄生植物是全球粮食安全的主要威胁,在全球范围内造成严重的农业损害。寄生植物通过称为吸器的多细胞器官从宿主植物中获取水分和养分。预吸器的形成,一种原始的吸器结构,是由宿主衍生的吸器诱导因子(HIFs)引起的。包括 2,6-二甲氧基-p-苯醌(DMBQ)在内的醌类物质是列当科中各种物种最有效的 HIFs,但除了非光合全寄生植物 Phelipanche 和 Orobanche spp. 之外。相反,细胞分裂素(CK)植物激素被报道在 Phelipanche ramosa 中诱导预吸器。然而,迄今为止,人们对 CK 是否在其他寄生物种中作为 HIFs 发挥作用知之甚少。此外,醌类物质和 CKs 在预吸器诱导中的信号通路也知之甚少。本研究表明,CKs 在专性寄生植物 Striga hermonthica 中作为 HIFs 发挥作用,但在兼性寄生植物 Phtheirospermum japonicum 中则不然。通过使用化学抑制剂和标记基因表达分析,我们证明 CK 通过 CK 特异性信号通路激活预吸器形成,该信号通路在 S. hermonthica 的下游与醌类 HIF 途径重叠。此外,宿主根分泌物激活了 S. hermonthica CK 生物合成和信号基因,DMBQ 和 CK 抑制剂扰乱了分泌物的预吸器诱导活性,表明宿主根分泌物包括 CK。我们的研究揭示了 CK 对专性寄生植物预吸器形成的重要性。

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