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Comparison of chloroplast genomes of compound-leaved maples and phylogenetic inference with other Acer species

期刊: TREE GENETICS & GENOMES, 2022; 18 (2)

Acer L. (Sapindaceae) consists of approximately 200 species, with great ornamental and commercial values. However, due to a substantial divergence in ......

JIF:2.175

The R2R3-MYB transcription factor VcMYB4a inhibits lignin biosynthesis in blueberry (Vaccinium corymbosum)

期刊: TREE GENETICS & GENOMES, 2022; 18 (3)

Lignin biosynthesis occurs via the phenylpropanoid pathway and is regulated by transcription factors (TFs) including R2R3-MYB family members. In this ......

JIF:2.175

Genome-wide genetic diversity and IBD analysis reveals historic dissemination routes of pear in China

期刊: TREE GENETICS & GENOMES, 2022; 18 (1)

Pear (Pyrus) is an important temperate fruit, which originates in the southwestern region of China and has more than 3000 year's cultivation history. ......

JIF:2.175

Comparative plastid genome analyses of Rosa: Insights into the phylogeny and gene divergence

期刊: TREE GENETICS & GENOMES, 2022; 18 (3)

The genus Rosa comprises more than 150 species spread across three subgenera, Hesperhodos, Hulthemia, and Rosa, most of which have high economic and e......

JIF:2.175

Chloroplast genomes and nuclear sequences reveal the interspecific relationships of Crataegus bretschneideri C. K. Schneid. and related species in China

期刊: TREE GENETICS & GENOMES, 2022; 18 (3)

Crataegus bretschneideri C. K. Schneid. is one of the species cultivated in China. Due to its unclear taxonomic classification status, the conservatio......

JIF:2.175

Identification and dynamic expression analysis of microRNAs associated with multi-tepal formation in Magnolia polytepala

期刊: TREE GENETICS & GENOMES, 2022; 18 (6)

Magnolia species commonly have three tepals in a single floral whorl. Magnolia polytepala, a native species in China, possesses three tepals in outer ......

JIF:2.175

Parent-offspring variation transmission in full-sib families revealed predominantly paternal inheritance of chloroplast DNA in Pinus massoniana (Pinaceae)

期刊: TREE GENETICS & GENOMES, 2021; 17 (4)

The inheritance of chloroplast genome DNA (cpDNA) differs from that of the nuclear genome. The cpDNAs of most species originate from the female parent......

Genetic diversity analysis of Chinese plum (Prunus salicina L.) based on whole-genome resequencing

期刊: TREE GENETICS & GENOMES, 2021; 17 (3)

Chinese plum (Prunus salicina L.), also known as Japanese plum, is gaining importance because of its extensive genetic diversity and nutritional attri......

Genetic relationship and parentages of historical peaches revealed by microsatellite markers

期刊: TREE GENETICS & GENOMES, 2021; 17 (4)

Pedigrees of most historical peach cultivars in the USA, including the widely known peach 'Elberta', are poorly documented or speculative, as are thei......

A comparative analysis of differential N6-methyladenosine (m6A) modification between non-transgenic and LBD15 overexpressing Poplar 84 K plants

期刊: TREE GENETICS & GENOMES, 2021; 17 (5)

N6-methyladenosine (m6A) plays an important role in the gene expression regulation. Previously, we found an ortholog of Arabidopsis LBD15 that showed ......

The transcriptomes of healthy and bitter pit-affected 'Honeycrisp' fruit reveal genes associated with disorder development and progression

期刊: TREE GENETICS & GENOMES, 2021; 17 (4)

The high-value apple cultivar 'Honeycrisp' is prone to bitter pit, a physiological disorder characterized by the development of dark, sunken lesions o......

An accumulation of genetic variation and selection across the disease-related genes during apple domestication

期刊: TREE GENETICS & GENOMES, 2021; 17 (3)

Although human-imposed selection is known to have altered plant traits during crop domestication, the effect of selection on host susceptibility or re......

Polyamine oxidase (PAO)-mediated polyamine catabolism plays potential roles in peach (Prunus persica L.) fruit development and ripening

期刊: TREE GENETICS & GENOMES, 2021; 17 (1)

Recently, there is an increased interest in the function of polyamine (PA) catabolism during fruit ripening, but little is known about its role during......

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