scholarly journals Correction to: Understanding population structure and detection of QTLs for curding related traits in Indian cauliflower by genotyping by sequencing analysis

Author(s):  
K. N. Rakshita ◽  
Shrawan Singh ◽  
Veerender Kumar Verma ◽  
Brij Bihari Sharma ◽  
Navinder Saini ◽  
...  
2016 ◽  
Vol 9 (2) ◽  
Author(s):  
Anil Kumar ◽  
Divya Sharma ◽  
Apoorv Tiwari ◽  
J.P. Jaiswal ◽  
N.K. Singh ◽  
...  

PLoS ONE ◽  
2018 ◽  
Vol 13 (8) ◽  
pp. e0201889 ◽  
Author(s):  
Bjarne Larsen ◽  
Kyle Gardner ◽  
Carsten Pedersen ◽  
Marian Ørgaard ◽  
Zoë Migicovsky ◽  
...  

Plant Disease ◽  
2019 ◽  
Vol 103 (8) ◽  
pp. 1923-1930 ◽  
Author(s):  
Nicholas C. Carleson ◽  
Valerie J. Fieland ◽  
Carolyn F. Scagel ◽  
Jerry E. Weiland ◽  
Niklaus J. Grünwald

Phytophthora plurivora is a recently described plant pathogen, formerly recognized as P. citricola. Recent sampling of Pacific Northwest nurseries frequently encountered this pathogen, and it has been shown to be among the most damaging Phytophthora pathogens on ornamentals. We characterized the population structure of P. plurivora in a survey of four Oregon nurseries across three different counties with focus on Rhododendron hosts. Isolates were identified to the species level by Sanger sequencing and/or a PCR-RFLP assay of the internal transcribed spacer (ITS) region. We used genotyping-by-sequencing to determine genetic diversity. Variants were called de novo, resulting in 284 high-quality variants for 61 isolates after stringent filtering. Based on Fst and AMOVA, populations were moderately differentiated among nurseries. Overall, population structure suggested presence of one dominant clonal lineage in all nurseries, as well as isolates of cryptic diversity mostly found in one nursery. Within the clonal lineage, there was a broad range of sensitivity to mefenoxam and phosphorous acid. Sensitivity of the two fungicides was correlated. P. plurivora was previously assumed to spread clonally, and the low genotypic diversity observed within and among isolates corroborated this hypothesis. The broad range of fungicide sensitivity within the P. plurivora population found in PNW nurseries has implications for managing disease caused by this important nursery pathogen. These findings provide the first perspective into P. plurivora population structure and phenotypic plasticity in Pacific Northwest nurseries.


Genes ◽  
2020 ◽  
Vol 11 (10) ◽  
pp. 1116
Author(s):  
Doie Park ◽  
Geleta Dugassa Barka ◽  
Eun-Young Yang ◽  
Myeong-Cheoul Cho ◽  
Jae Bok Yoon ◽  
...  

Diabetes mellitus, a group of metabolic disorders characterized by hyperglycemia, is one of the most serious and common diseases around the world and is associated with major complications such as diabetic neuropathy, retinopathy, and cardiovascular diseases. A widely used treatment for non-insulin-dependent diabetes is α-glucosidase inhibitors (AGIs) such as acarbose, which hinders hydrolytic cleavage of disaccharides and retard glucose absorption. The ability to inhibit α-glucosidase activity has been reported in leaf and fruit of pepper (Capsicum annuum L.). In this study, we aimed to identify quantitative trait loci (QTLs) controlling α-glucosidase inhibitory activity (AGI activity) in pepper leaf and fruit using enzyme assay and genotyping-by-sequencing (GBS) analysis. The AGI activity at three stages of leaf and one stage of fruit development was analyzed by 96 F2 individuals. GBS analysis identified 17,427 SNPs that were subjected to pepper genetic linkage map construction. The map, consisting of 763 SNPs, contained 12 linkage groups with a total genetic distance of 2379 cM. QTL analysis revealed seven QTLs (qAGI1.1, qAGI11.1, qAGI5.1, qAGI9.1, qAGI12.1, qAGI5.2, and qAGI12.2) controlling AGI activity in pepper leaf and fruit. The QTLs for AGI activity varied by plant age and organ. This QTL information is expected to provide a significant contribution to developing pepper varieties with high AGI activity.


2017 ◽  
Vol 67 (1) ◽  
pp. 76-86 ◽  
Author(s):  
V. Rafiei ◽  
Z. Banihashemi ◽  
R. M. Jiménez-Díaz ◽  
J. A. Navas-Cortés ◽  
B. B. Landa ◽  
...  

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