Showing posts with label HLB. Show all posts
Showing posts with label HLB. Show all posts

Wednesday, 16 April 2025

Molecular Detection of Candidatus Liberibacter asiaticus in Citrus Plants: Insights from Bangladesh | Chapter 4 | Contemporary Research and Perspectives in Biological Science Vol. 4

Citrus cultivation is vital to the agricultural landscape, offering substantial nutritional and economic advantages. However, citrus plants are highly vulnerable to numerous disorders, with Huanglongbing (HLB), commonly known as citrus greening disease, being one of the most severe threats. This devastating condition is attributed to the fastidious bacterium Candidatus Liberibacter asiaticus, which poses a significant risk to the citrus industry in Bangladesh. The primary transmission routes for this disease include insect vectors and the grafting of infected budwood. Recent advancements in diagnostic techniques have highlighted the polymerase chain reaction (PCR) method as a more reliable and sensitive approach for detecting the greening bacterium compared to traditional methods such as electron microscopy, DNA-DNA hybridization, and immunofluorescence. Research has shown that utilizing a DNA extraction kit for isolating DNA results in superior quality and quantity compared to other methods. In a study conducted at the Bangladesh Institute of Nuclear Agriculture in Mymensingh, researchers collected 10 samples from symptomatic trees, revealing that 4 samples (40%) tested positive for Candidatus Liberibacter asiaticus. The PCR analysis produced amplicons of 703 bp and 500 bp using primer pairs A2/J5 and LSS/LSS606, respectively. The findings from this study indicate that March is the optimal month for sampling when conducting PCR detection of the greening bacterium. The validated methodologies from this research will play a crucial role in implementing regulatory measures, effectively managing infected trees, and establishing a nursery system that is free from Candidatus Liberibacter asiaticus. The study concluded that the psyllid transmission of HLB is a complex and dynamic process that involves multiple interactions among biotic and abiotic factors. It is essential to focus on implementing measures to combat this severe disease, which poses a risk to all citrus varieties in this biodiversity-rich region. Failure to do so could result in significant challenges for revitalizing citrus cultivation. These efforts are essential for safeguarding the future of citrus cultivation in Bangladesh and mitigating the economic impacts associated with HLB.

 

Author (s) Details

Mohammad Mahbubul Haque
Plant Pathology Division, Bangladesh Institute of Nuclear Agriculture (BINA), Mymensingh-2202, Bangladesh.

 

Md. Nazmul Hasan Mehedi
Department of Horticulture, Patuakhali Science & Technology University (PSTU), Bangladesh.

 

Jannatul Farthouse
Plant Pathology Division, Bangladesh Institute of Nuclear Agriculture (BINA), Mymensingh-2202, Bangladesh.

 

Mahbuba Kaniz Hasna
Plant Pathology Division, Bangladesh Institute of Nuclear Agriculture (BINA), Mymensingh-2202, Bangladesh.

 

Ibrahim Khalil
Plant Pathology Division, Bangladesh Institute of Nuclear Agriculture (BINA), Mymensingh-2202, Bangladesh.

 

KM Eadun Nabi
Plant Pathology Division, Bangladesh Institute of Nuclear Agriculture (BINA), Mymensingh-2202, Bangladesh.

 

Nipa Rani Paul
Plant Pathology Division, Bangladesh Institute of Nuclear Agriculture (BINA), Mymensingh-2202, Bangladesh.

 

Fahmida Sultana Monika
Department of Plant Pathology, Bangladesh Agricultural University, Bangladesh.

 

Please see the book here:- https://doi.org/10.9734/bpi/crpbs/v4/2860

Sunday, 23 January 2022

Study about Trioza erytreae: An Approach to Feeding and Oviposition Preference on Conventional Citrus Rootstocks | Chapter 4 | New Visions in Biological Science Vol. 8

 The Mediterranean Basin is the world's second-largest citrus-producing region, with Spain as the leading producer. Huanglongbing (HLB) is the most common and deadly citrus disease in the world, with three bacteria species belonging to the Candidatus Liberibacter genus as the causative agents. Diaphorina citri and Trioza erytreae, two psyllid vectors, are the major vectors for these infections.

T. erytreae is a pest of the Rutaceae family of plants, which includes cultivated citrus. This bug has lately been discovered in nations around the Mediterranean Basin, particularly in Spain and Portugal. The threat of HLB development has heightened concerns in the citrus-growing regions of Spain and Portugal, necessitating a performance study of T. erytreae on conventional citrus rootstocks as a strategy of lowering the bug population. T. erytreae survival, development, oviposition, and feeding preferences in non-grafted conventional citrus rootstocks were investigated in this study.

The preference of T. erytreae in potted plants of several standard citrus rootstocks is investigated in this study. Carrizo citrange, Citrus macrophylla, Citrus macrophylla, Citrus macrophylla, Citrus macrophylla, Citrus macrophylla, Citrus macrophylla, Citrus macrophylla, Citrus macrophylla, Citrus macrophylla, Citrus macrophylla, Citrus macrophylla, Citrus macrophylla, Citrus macrophylla, Citrus macrophylla, Citrus macrophylla, Citrus macro The feeding preference of T. erytreae adults for different rootstocks, as well as oviposition and survival of T. erytreae adults on various citrus materials, were used to assess the psyllid's behaviour and survival. T. erytreae had a strong preference for C. macrophylla as a host and food source, while Carrizo citrange was the best rootstock for insect reproduction and survival, followed by C. macrophylla. P. trifoliata, on the other hand, was the least appealing rootstock to T. erytreae adults, resulting in significantly decreased T. erytreae survival. Our findings show that traditional citrus rootstocks like Carrizo citrange and C. macrophylla may help to boost T. erytreae populations.

Author(S) Details

Francisco J. Arenas-Arenas
Department of Agri-Food Engineering and Technology, Andalusian Institute of Agricultural and Fisheries Research and Training (IFAPA), “Las Torres” Center, Ctra. Sevilla-Cazalla de la Sierra km. 12.2, 41200 Alcalá del Río, Spain.

Juan M. Arjona-López
Department of Agri-Food Engineering and Technology, Andalusian Institute of Agricultural and Fisheries Research and Training (IFAPA), “Las Torres” Center, Ctra. Sevilla-Cazalla de la Sierra km. 12.2, 41200 Alcalá del Río, Spain.

Aurea Hervalejo
Department of Agri-Food Engineering and Technology, Andalusian Institute of Agricultural and Fisheries Research and Training (IFAPA), “Las Torres” Center, Ctra. Sevilla-Cazalla de la Sierra km. 12.2, 41200 Alcalá del Río, Spain.

Nancy Montero
Departamento de Protección Vegetal, Instituto Canario de Investigaciones Agrarias (ICIA), Ctra. El Boquerón s/n, 38270 La Laguna, Spain.

Carlos Álvarez
Departamento de Protección Vegetal, Instituto Canario de Investigaciones Agrarias (ICIA), Ctra. El Boquerón s/n, 38270 La Laguna, Spain.

Estrella Hernández-Suárez
Departamento de Protección Vegetal, Instituto Canario de Investigaciones Agrarias (ICIA), Ctra. El Boquerón s/n, 38270 La Laguna, Spain.

View Book:- https://stm.bookpi.org/NVBS-V8/article/view/5378