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15 results for “Litchi chinensis Sonn.”
Data from: Identifying litchi (Litchi chinensis Sonn.) cultivars and their genetic relationships using single nucleotide polymorphism (SNP) markers
Litchi is an important fruit tree in tropical and subtropical areas of the world. However, there is widespread confusion regarding litchi cultivar nomenclature and detailed information of genetic relationships among litchi germplasm is unclear. In the present study, the potential of single nucleotide polymorphism (SNP) for the identification of 96 representative litchi accessions and their genetic relationships in China was evaluated using 155 SNPs that were evenly spaced across litchi genome. Ninety SNPs with minor allele frequencies above 0.05 and a good genotyping success rate were used for further analysis. A relatively high level of genetic variation was observed among litchi accessions, as quantified by the expected heterozygosity (He = 0.305). The SNP based multilocus matching identified two synonymous groups, 'Heiye' and 'Wuye', and 'Chengtuo' and 'Baitangli 1'. A subset of 14 SNPs was sufficient to distinguish all the non-redundant litchi genotypes, and these SNPs were proven to be highly stable by repeated analyses of a selected group of cultivars. Unweighted pair-group method of arithmetic averages (UPGMA) cluster analysis divided the litchi accessions analyzed into four main groups, which corresponded to the traits of extremely early-maturing, early-maturing, middle-maturing, and late-maturing, indicating that the fruit maturation period should be considered as the primary criterion for litchi taxonomy. Two subpopulations were detected among litchi accessions by STRUCTURE analysis, and accessions with extremely early- and late-maturing traits showed membership coefficients above 0.99 for Cluster 1 and Cluster 2, respectively. Accessions with early- and middle-maturing traits were identified as admixture forms with varying levels of membership shared between the two clusters, indicating their hybrid origin during litchi domestication. The results of this study will benefit litchi germplasm conservation programs and facilitate maximum genetic gains in litchi breeding programs.
FIGURES 43‒50 in Immatures of Cerambycinae (Coleoptera, Cerambycidae) collected in Litchi chinensis Sonn. (Sapindaceae) in Brazil
FIGURES 43‒50. Retrachydes thoracicus (Olivier, 1790). Larva: 43, head and thorax (dorsal); 44, 47, 48, 49, right mandible (ventral, external, dorsal, internal); 45, 46, 50, left mandible (dorsal, external, internal).
FIGURES 29‒39 in Immatures of Cerambycinae (Coleoptera, Cerambycidae) collected in Litchi chinensis Sonn. (Sapindaceae) in Brazil
FIGURES 29‒39. Retrachydes thoracicus (Olivier, 1790). Larva: 29, 30, head (dorsal, ventral); 31, 32, antenna (dorsal, ventral); 33, clypeus and labrum; 34, 37, maxillae and labium (ventral, dorsal); 35, spiracle thoracic; 36, epipharynx; 38, anterior region of labium (dorsal); 39, leg.
FIGURES 26‒28 in Immatures of Cerambycinae (Coleoptera, Cerambycidae) collected in Litchi chinensis Sonn. (Sapindaceae) in Brazil
FIGURES 26‒28. Coleoxestia waterhousei (Gounelle, 1909). Adult: 26, habitus (dorsal). Larva: 27, inside larval chamber. Pupa: 28, inside pupal chamber.
FIGURES 16‒23 in Immatures of Cerambycinae (Coleoptera, Cerambycidae) collected in Litchi chinensis Sonn. (Sapindaceae) in Brazil
FIGURES 16‒23. Coleoxestia waterhousei (Gounelle, 1909). Larva: 16, 20, 21, 23, left mandible (dorsal, ventral, external, internal); 17‒19, 22 right mandible (dorsal, external, ventral, internal).
FIGURES 11‒15 in Immatures of Cerambycinae (Coleoptera, Cerambycidae) collected in Litchi chinensis Sonn. (Sapindaceae) in Brazil
FIGURES 11‒15. Coleoxestia waterhousei (Gounelle, 1909). Larva: 11‒13, habitus (dorsal, ventral, lateral); 14‒15, head and thorax (ventral, dorsal).
FIGURES 1‒10 in Immatures of Cerambycinae (Coleoptera, Cerambycidae) collected in Litchi chinensis Sonn. (Sapindaceae) in Brazil
FIGURES 1‒10. Coleoxestia waterhousei (Gounelle, 1909). Larva: 1, 2, head (dorsal, ventral); 3, 4, antenna (dorsal, ventral); 5, 6, maxilla and labium (ventral, dorsal); 7, clypeus and labrum; 8, epipharynx; 9, spiracle thoracic; 10, leg.
FIGURES 40‒42 in Immatures of Cerambycinae (Coleoptera, Cerambycidae) collected in Litchi chinensis Sonn. (Sapindaceae) in Brazil
FIGURES 40‒42. Retrachydes thoracicus (Olivier, 1790). Larva: 40‒42, habitus (dorsal, ventral, lateral).
Data from: Identifying litchi (Litchi chinensis Sonn.) cultivars and their genetic relationships using single nucleotide polymorphism (SNP) markers
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FIGURES 51‒53 in Immatures of Cerambycinae (Coleoptera, Cerambycidae) collected in Litchi chinensis Sonn. (Sapindaceae) in Brazil
FIGURES 51‒53. Retrachydes thoracicus (Olivier, 1790). Pupa: 51, dorsal. 52, ventral. 53, lateral.
FIGURES 24‒25 in Immatures of Cerambycinae (Coleoptera, Cerambycidae) collected in Litchi chinensis Sonn. (Sapindaceae) in Brazil
FIGURES 24‒25. Coleoxestia waterhousei (Gounelle, 1909). Pupa: 24, 25, habitus (dorsal, ventral)
Genome-wide identification and expression analysis of MADS-box family genes in litchi (Litchi chinensis Sonn.) and their involvement in floral organogenesis I
GEO Series GSE182439. Litchi chinensis. 18 samples. Type: Expression profiling by high throughput sequencing.
Genome-wide identification and expression analysis of MADS-box family genes in litchi (Litchi chinensis Sonn.) and their involvement in floral organogenesis II
GEO Series GSE182444. Litchi chinensis. 30 samples. Type: Expression profiling by high throughput sequencing.
Genome-wide identification and expression analysis of MADS-box family genes in litchi (Litchi chinensis Sonn.) and their involvement in floral organogenesis
GEO Series GSE182447. Litchi chinensis. 48 samples. Type: Expression profiling by high throughput sequencing.
Transcriptomics‐based analysis of the causes of “sugar receding” in ‘Feizixiao’ litchi (Litchi chinensis Sonn.) pulp
GEO Series GSE218876. Litchi chinensis. 9 samples. Type: Expression profiling by high throughput sequencing.
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