Heterochromatin and numeric chromosome evolution in Bignoniaceae, with emphasis on the Neotropical clade Tabebuia alliance

JMP Cordeiro, M Kaehler, LG Souza… - Genetics and Molecular …, 2020 - SciELO Brasil
Bignoniaceae is a diverse family composed of 840 species with Pantropical distribution. The
chromosome number 2 n= 40 is predominant in most species of the family, with n= 20 …

Two jatropha karyotypes constructed from meiotic pachytene chromosomes: Pericentric distribution of heterochromatin and variation in repetitive DNAs

N Muakrong, S Kikuchi, S Fukuhara, P Tanya… - PLoS …, 2018 - journals.plos.org
Jatropha (Jatropha curcas) is an oil-bearing plant used for biodiesel production.
Construction of its standard karyotype and identification of the euchromatin/heterochromatin …

Differential amplification of the subtelomeric satellite DNA JcSAT1 in the genus Jatropha L. (Euphorbiaceae)

T Ribeiro, E Vasconcelos, JR de Mendonça Filho… - Genetica, 2024 - Springer
Satellite DNAs (satDNAs) are highly repetitive sequences that occur in virtually all eukaryotic
genomes and can undergo rapid copy number and nucleotide sequence variation among …

Karyotype differentiation in Ameroglossum (Linderniaceae) and closely related genera endemic to Brazilian inselbergs

AS Santos, EM Almeida, LP Felix… - Botanical Journal of the …, 2022 - academic.oup.com
Ameroglossum is composed of shrubs endemic to inselbergs in north-eastern Brazil,
currently circumscribed in Linderniaceae. Chromosomal counts for this family are few, but …

[HTML][HTML] Genome size and cytomolecular diversification in two species of the South African endemic genus Tulbaghia L.(Allioideae, Amaryllidaceae)

M Baez, G Souza, M Guerra - South African Journal of Botany, 2020 - Elsevier
Tulbaghia L. is a South African genus of Allioideae, Amaryllidaceae, which includes circa 25
species with similar karyotypes, all of them with 2n= 12 large chromosomes, predominantly …

Heterochromatin patterns in four diploid Zephyranthes species with different basic chromosome number (Amaryllidaceae)

AC Gianini Aquino, M González Flores… - Darwiniana, nueva …, 2023 - SciELO Argentina
HETEROCHROMATIN PATTERNS IN FOUR DIPLOID ZEPHYRANTHES SPECIES WITH
DIFFERENT BASIC CHROMOSOME NUMBER (AMARYLLIDACEAE) SciELO - Scientific …

Genomic Resources and Marker-Assisted Selection in Jatropha curcas

D Trebbi, S Ravi, C Broccanello, C Chiodi… - Jatropha, Challenges for …, 2019 - Springer
Jatropha curcas L. is currently attracting much attention as an oilseed crop, which can be
used as biofuel and feasible feedstock for animals. In order to improve conventional …

[PDF][PDF] Genetic analysis of twenty two selected genotypes of Jatropha curcas L.(physic nut) from Africa, Asia and America using SSR and AFLP markers

G Mergeai - International Journal of Genetics and Molecular …, 2020 - orbi.uliege.be
Twenty two genotypes of J. curcas L. from Africa (Senegal, Burkina Faso, Mali, Congo and
Madagascar Island), Asia (Cambodia, China and India) and America (Ecuador, Dominican …

[HTML][HTML] Genome composition and pollen viability of Jatropha (Euphorbiaceae) interspecific hybrids by Genomic In Situ Hybridization (GISH)

RC Souza, DA Marques… - … and Molecular Biology, 2020 - SciELO Brasil
Interspecific hybridization is required for the development of Jatropha curcas L. improved
cultivars, due to its narrow genetic basis. The present study aimed to analyze the parental …

Pervasive System Biology for Active Compound Valorization in Jatropha

N Carels, M Magalhães, CR Lima, B Bahadur… - Jatropha, Challenges for …, 2019 - Springer
Physic nut (Jatropha curcas L.) is a tree in the family Euphorbiaceae whose members have
been known for the production of important natural compounds for therapeutic applications …