Division of Plant Sciences and Bond Life Sciences Center, University of Missouri, Columbia, MO, 65211, USA.
Rheinische Friedrich-Wilhelms-University of Bonn, INRES - Molecular Phytomedicine, Karlrobert-Kreiten-Straße 13, D-53115, Bonn, Germany.
Plant J. 2017 Oct;92(2):211-228. doi: 10.1111/tpj.13647. Epub 2017 Aug 31.
Cyst and root-knot nematodes are obligate parasites of economic importance with a remarkable ability to reprogram root cells into unique metabolically active feeding sites. Previous studies have suggested a role for cytokinin in feeding site formation induced by these two types of nematodes, but the mechanistic details have not yet been described. Using Arabidopsis as a host plant species, we conducted a comparative analysis of cytokinin genes in response to the beet cyst nematode (BCN), Heterodera schachtii, and the root-knot nematode (RKN), Meloidogyne incognita. We identified distinct differences in the expression of cytokinin biosynthesis, catabolism and signaling genes in response to infection by BCN and RKN, suggesting differential manipulation of the cytokinin pathway by these two nematode species. Furthermore, we evaluated Arabidopsis histidine kinase receptor mutant lines ahk2/3, ahk2/4 and ahk3/4 in response to RKN infection. Similar to our previous studies with BCN, these lines were significantly less susceptible to RKN without compromising nematode penetration, suggesting a requirement of cytokinin signaling in RKN feeding site formation. Moreover, an analysis of ahk double mutants using CycB1;1:GUS/ahk introgressed lines revealed contrasting differences in the cytokinin receptors mediating cell cycle activation in feeding sites induced by BCN and RKN.
囊肿和根结线虫是具有经济重要性的专性寄生线虫,它们具有将根细胞重新编程为独特代谢活跃的取食部位的非凡能力。先前的研究表明细胞分裂素在这两种类型的线虫诱导的取食部位形成中起作用,但机制细节尚未描述。我们使用拟南芥作为宿主植物物种,对甜菜胞囊线虫(BCN)、 Heterodera schachtii 和根结线虫(RKN)、 Meloidogyne incognita 诱导的细胞分裂素基因进行了比较分析。我们发现,细胞分裂素生物合成、分解代谢和信号转导基因的表达在受到 BCN 和 RKN 感染时存在明显差异,这表明这两种线虫物种对细胞分裂素途径的不同操纵。此外,我们评估了拟南芥组氨酸激酶受体突变体 ahk2/3、ahk2/4 和 ahk3/4 对 RKN 感染的反应。与我们之前对 BCN 的研究相似,这些突变体对线虫的侵染敏感性显著降低,而不影响线虫的穿透,这表明细胞分裂素信号在 RKN 取食部位形成中是必需的。此外,使用 CycB1;1:GUS/ahk 导入系对 ahk 双突变体进行分析,揭示了在 BCN 和 RKN 诱导的取食部位中细胞周期激活的细胞分裂素受体介导的差异。