Departamento de Biologia, Universidade Federal de Lavras (UFLA), Lavras, Minas Gerais, CEP 37200-000, Brazil.
Campus Cidade Universitária, Universidade Federal de Jataí (UFJ), Jataí, Goiás, CEP 75801-615, Brazil.
Protoplasma. 2023 Sep;260(5):1287-1302. doi: 10.1007/s00709-023-01849-3. Epub 2023 Mar 9.
Infection by the root-knot nematode (RKN), Meloidogyne incognita, impacts crop productivity worldwide, including parsley cultures (Petroselinum crispum). Meloidogyne infection involves a complex relationship between the pathogen and the host plant tissues, leading to the formation of galls and feeding sites that disorganize the vascular system, affecting the development of cultures. Herein, we sought to evaluate the impact of RKN on the agronomic traits, histology, and cell wall components of parsley, with emphasis on giant cell formation. The study consisted of two treatments: (i) control, where 50 individuals of parsley grew without M. incognita inoculation; and (ii) inoculated plants, where 50 individuals were exposed to juveniles (J2) of M. incognita. Meloidogyne incognita infection affected the development of parsley, reducing the growth of some agronomical characteristics such as root weight and shoot weight and height. Giant cell formation was noticed at 18 days after inoculation, promoting disorganization of the vascular system. Epitopes of HGs detected in giant cells reveal the continuous capacity of giant cells to elongate under the stimulus of RKN, essential processes for feeding site establishment. In addition, the detection of epitopes of HGs with low and high methyl-esterified groups indicates the PMEs activity despite biotic stress.
根结线虫(RKN)感染会影响全球作物的生产力,包括欧芹(Petroselinum crispum)。根结线虫的感染涉及病原体与宿主植物组织之间的复杂关系,导致形成根瘤和取食部位,破坏维管束系统,影响作物的发育。在此,我们试图评估 RKN 对欧芹农艺性状、组织学和细胞壁成分的影响,重点关注巨型细胞的形成。该研究包括两个处理:(i)对照,50 株欧芹在没有接种 M. incognita 的情况下生长;(ii)接种植物,50 株暴露于 M. incognita 的幼虫(J2)。M. incognita 感染影响了欧芹的发育,降低了一些农艺特性的生长,如根重和茎重以及高度。接种后 18 天注意到巨型细胞的形成,促进了维管束系统的紊乱。在巨型细胞中检测到 HG 的表位揭示了巨型细胞在 RKN 刺激下持续伸长的能力,这是建立取食部位的必要过程。此外,尽管存在生物胁迫,但检测到低和高甲酯化组 HG 的表位表明 PMEs 活性。