Overview of Root-Knot Nematodes and Giant Cells

被引:106
作者
Escobar, Carolina [1 ]
Barcala, Marta [1 ]
Cabrera, Javier [1 ]
Fenoll, Carmen [1 ]
机构
[1] Univ Castilla La Mancha, Dept Environm Sci, Lab Plant Physiol, Toledo, Spain
来源
PLANT NEMATODE INTERACTIONS: A VIEW ON COMPATIBLE INTERRELATIONSHIPS, VOL 73 | 2015年 / 73卷
关键词
PLANT-PARASITIC NEMATODES; GREEN-FLUORESCENT PROTEIN; MELOIDOGYNE-INCOGNITA; ARABIDOPSIS-THALIANA; RESISTANCE GENES; FEEDING SITES; FUNCTIONAL-CHARACTERIZATION; ROTYLENCHULUS-RENIFORMIS; CONFERS RESISTANCE; GELATINOUS MATRIX;
D O I
10.1016/bs.abr.2015.01.001
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Root-knot nematodes (RKNs) are ubiquitous parasites with an amazing capacity to interact with a very large variety of plant species. They are sedentary endoparasitic nematodes that depend on the induction of a permanent feeding site in living roots to complete their life cycle. RKNs interfere with the genetic programmes of their hosts to transform root vascular cells into giant cells (GCs) through the injection of nematode effectors from their oesophageal glands. Dramatic rearrangements in GCs cytoskeleton, alteration of cell cycle mechanisms, such as mitosis and endoreduplication, readjustment of enzymes involved in carbohydrate synthesis and degradation are among those processes modified in GCs. GCs act as sinks to provide nutrients for life cycle completion from J2 larvae to adult females. The female produces an egg offspring protected by a gelatinous matrix and the free-living stage, J2, hatch from these eggs, completing the nematode life cycle. The model species Arabidopsis thaliana allowed easy in vivo observations of the interaction by video-enhanced contrast light microscopy on infected roots, and the wide range of existing genetic and molecular tools of this plant model has extended its use. Holistic approaches to tackle gene expression combined with cell biology techniques, as isolation of GCs by laser capture microdissection, allowed GC-specific transcriptomic analysis, generating vast lists of differentially expressed genes. However, the design of consistent functional hypothesis about these genes and their products will require the development of in silico analysis tools for comparisons among the transcriptomes of plantenematode compatible interactions. The understanding of the processes subjacent to GC differentiation and maintenance, as well as a deeper knowledge of RKN mode of parasitism, will provide tools for new control methods of these devastating agricultural pests.
引用
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页码:1 / 32
页数:32
相关论文
共 151 条
[11]  
BERG R.H., 2008, CELL BIOL PLANT NEMA, P115
[12]   EFFECT OF MELOIDOGYNE-JAVA']JAVANICA ON RHIZOSPHERE MICROFLORA AND FUSARIUM WILT OF TOMATO [J].
BERGESON, GB ;
VANGUNDY, SD ;
THOMASON, IJ .
PHYTOPATHOLOGY, 1970, 60 (08) :1245-+
[13]  
Bird A. F., 1959, Nematologica, V4, P322
[14]   ULTRASTRUCTURE AND HISTOCHEMISTRY OF A NEMATODE-INDUCED GIANT CELL [J].
BIRD, AF .
JOURNAL OF BIOPHYSICAL AND BIOCHEMICAL CYTOLOGY, 1961, 11 (03) :701-+
[15]  
Bird David McK., 2009, V15, P1, DOI 10.1007/7089_2008_31
[16]   STUDIES ON THE NUTRIENT-UPTAKE BY THE BEET CYST-NEMATODE HETERODERA-SCHACHTII BY IN-SITU MICROINJECTION OF FLUORESCENT-PROBES INTO THE FEEDING STRUCTURES IN ARABIDOPSIS-THALIANA [J].
BOCKENHOFF, A ;
GRUNDLER, FMW .
PARASITOLOGY, 1994, 109 :249-&
[17]   Altered sucrose synthase and invertase expression affects the local and systemic sugar metabolism of nematode-infected Arabidopsis thaliana plants [J].
Cabello, Susana ;
Lorenz, Cindy ;
Crespo, Sara ;
Cabrera, Javier ;
Ludwig, Roland ;
Escobar, Carolina ;
Hofmann, Julia .
JOURNAL OF EXPERIMENTAL BOTANY, 2014, 65 (01) :201-212
[18]   Phenotyping nematode feeding sites: three-dimensional reconstruction and volumetric measurements of giant cells induced by root-knot nematodes in Arabidopsis [J].
Cabrera, Javier ;
Diaz-Manzano, Fernando E. ;
Barcala, Marta ;
Arganda-Carreras, Ignacio ;
de Almeida-Engler, Janice ;
Engler, Gilbert ;
Fenoll, Carmen ;
Escobar, Carolina .
NEW PHYTOLOGIST, 2015, 206 (02) :868-880
[19]   NEMATIC: a simple and versatile tool for the in silico analysis of plant-nematode interactions [J].
Cabrera, Javier ;
Bustos, Regla ;
Favery, Bruno ;
Fenoll, Carmen ;
Escobar, Carolina .
MOLECULAR PLANT PATHOLOGY, 2014, 15 (06) :627-636
[20]   A role for LATERAL ORGAN BOUNDARIES-DOMAIN 16 during the interaction Arabidopsis-Meloidogyne spp. provides a molecular link between lateral root and root-knot nematode feeding site development [J].
Cabrera, Javier ;
Diaz-Manzano, Fernando E. ;
Sanchez, Maria ;
Rosso, Marie-Noelle ;
Melillo, Teresa ;
Goh, Tatsuaki ;
Fukaki, Hidehiro ;
Cabello, Susana ;
Hofmann, Julia ;
Fenoll, Carmen ;
Escobar, Carolina .
NEW PHYTOLOGIST, 2014, 203 (02) :632-645