Results 121 to 130 of about 791 (157)
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Dynamics of Multiplication of Radopholus Similis 1)

Nematologica, 1966
Comparison of the populations of the burrowing nematode (Radopholus similis (Cobb)) in the rootlets of infected citrus trees with those in rootlets of test plants in gnotobiotic cultures gave insight into the reproductive potential and population growth of the parasite.
E.P. Ducharme, W.C. Price
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Cryopreservation of Radopholus similis, a tropical plant-parasitic nematode

Cryobiology, 2007
For obligate plant-parasitic nematodes, cryopreservation has advantages over the usual preservation methods on whole plants or axenic culture systems, because the latter two are labourious and time and space consuming. In addition, cross contamination among different isolates can occur easily.
Annemie, Elsen   +6 more
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Burrowing Nematode Radopholus similis (Cobb)

2017
Radopholus similis is an important pathogenic nematode of bananas and ornamentals. R. similis has a wide host range. It was introduced to China through importing of garden plants. At present, there is few reports about R. similis in Mainland China. But the risk of R.
Birun Lin, Huifang Shen
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The Potential Geographic Distribution of Radopholus similis in China

Agricultural Sciences in China, 2007
The burrowing nematode (Radopholus similis) is one of the main quarantine pests in China, and the risk of invasion posed by this nematode is becoming more and more serious with regard to the international trade being intensified day by day. It is urgent to analyse the potential geographic distribution of R. similis in China.
Yun-sheng WANG   +4 more
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Evaluation of Indian Musa Germplasm for Resistance to Radopholus similis in Greenhouse

Indian Journal of Nematology, 2021
Fifty nine wild and cultivated banana genotypes (Musa spp.) including 10 diploids (AA, AB and BB genome) and 49 triploids (AAA, AAB, ABB) belonging to the Eumusa section, were evaluated for their host reaction against the burrowing nematode (Radopholus similis) under greenhouse conditions.
A. Nithya Devi   +4 more
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Radopholus similis (Cobb, 1893) Thorne ,1949

2020
First observed in Fiji in 1893, the burrowing nematode, Radopholus similis infects the roots of many commercial crops such as banana, ginger and citrus. A draft genome is available and sequence analysis suggests that it is closely related to cyst nematodes than to root knot or other migratory endoparasitic nematodes such as Pratylenchus. Recent work on
Perrine-Walker, Francine, Pattison, Tony
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Distribution Geographique De Radopholus similis

2009
Une enquête faunistique sur la cohabitation de deux nématodes endoparasites migrateurs : R. similis et P. coffeae, a été réalisée dans le Sud-Est de la Côte d\'Ivoire. Sur chaque site, l\'unité de production représentée par un carré de culture de 2 à 3 ha a servi de base pour l\'échantillonnage des racines à raison de 10 bananiers/carré.
Gnonhouri, P, Adiko, A
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In vitro screening for resistance to Radopholus similis in Musa spp.

Plant Science, 2002
Abstract The burrowing nematode, Radopholus similis , is the most important nematode pest of banana and plantain worldwide, causing severe yield losses in commercial and local consumption cultivars. Chemical control is currently the most-used method to manage the nematodes, although nematicides are dangerous, toxic and expensive. Therefore, nematode
Annemie Elsen   +5 more
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Radopholus similis (burrowing nematode)

PlantwisePlus Knowledge Bank, 2022
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An agricultural control of Radopholus similis in banana plantations

2018
Radopholus similis is the major parasitic nematode of banana and plantain plants worldwide. R. Similis feeds on the root tissues and causes damages going from simple root lesions, reducing the crop yield, to the fall of seedlings. Hence, R. similis is one of the most regulated plant pests.
Tankam Chedjou, Israël   +4 more
openaire   +1 more source

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