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1.
BMC Plant Biol ; 20(1): 483, 2020 Oct 22.
Article in English | MEDLINE | ID: mdl-33092522

ABSTRACT

BACKGROUND: Sugar beet (Beta vulgaris subsp. vulgaris) is an economically important crop that provides nearly one third of the global sugar production. The beet cyst nematode (BCN), Heterodera schachtii, causes major yield losses in sugar beet and other crops worldwide. The most effective and economic approach to control this nematode is growing tolerant or resistant cultivars. To identify candidate genes involved in susceptibility and resistance, the transcriptome of sugar beet and BCN in compatible and incompatible interactions at two time points was studied using mRNA-seq. RESULTS: In the susceptible cultivar, most defense-related genes were induced at 4 dai while suppressed at 10 dai but in the resistant cultivar Nemakill, induction of genes involved in the plant defense response was observed at both time points. In the compatible interaction, alterations in phytohormone-related genes were detected. The effect of exogenous application of Methyl Jasmonate and ET-generator ethephon on susceptible plants was therefore investigated and the results revealed significant reduction in plant susceptibility. Genes putatively involved in the resistance of Nemakill were identified, such as genes involved in phenylpropanoid pathway and genes encoding CYSTM domain-containing proteins, F-box proteins, chitinase, galactono-1,4-lactone dehydrogenase and CASP-like protein. Also, the transcriptome of the BCN was analyzed in infected root samples and several novel potential nematode effector genes were found. CONCLUSIONS: Our data provides detailed insights into the plant and nematode transcriptional changes occurring during compatible and incompatible interactions between sugar beet and BCN. Many important genes playing potential roles in susceptibility or resistance of sugar beet against BCN, as well as some BCN effectors with a potential role as avr proteins were identified. In addition, our findings indicate the effective role of jasmonate and ethylene in enhancing sugar beet defense response against BCN. This research provides new molecular insights into the plant-nematode interactions that can be used to design novel management strategies against BCN.


Subject(s)
Beta vulgaris/parasitology , Host-Parasite Interactions , Plant Diseases/parasitology , Tylenchoidea/physiology , Animals , Beta vulgaris/genetics , Disease Resistance/genetics , Genes, Plant/genetics , Host-Parasite Interactions/genetics , Plant Roots/metabolism , Plant Roots/parasitology , Sequence Analysis, DNA , Transcriptome/genetics
2.
Syst Parasitol ; 85(2): 173-87, 2013 Jun.
Article in English | MEDLINE | ID: mdl-23673695

ABSTRACT

Longidorus aetnaeus Roca, Lamberti, Agostinelli & Vinciguerra, 1986 is reported for the first time from Iran and Ajaria (Georgia). Morphological and morphometric data are provided for two Iranian and one Ajarian populations. The D2-D3 region of 28S rDNA for both Iranian populations was sequenced for the first time and the data reported. A detailed study of juveniles of L. aetnaeus from Iran, Georgia and Bulgaria demonstrated that this species develops through three juvenile stages. Furthermore, phylogenetic studies inferred from sequences for the D2-D3 region of 28S rRNA gene revealed that L. aetnaeus is most closely related to L. leptocephalus.


Subject(s)
Nematoda/classification , Nematoda/isolation & purification , Animals , Biometry , Cluster Analysis , DNA, Helminth/chemistry , DNA, Helminth/genetics , DNA, Ribosomal/chemistry , DNA, Ribosomal/genetics , Georgia , Iran , Microscopy , Molecular Sequence Data , Nematoda/anatomy & histology , Nematoda/genetics , Phylogeny , RNA, Ribosomal, 28S/genetics , Sequence Analysis, DNA
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