Javascript must be enabled to continue!
A Comparative Analysis of the Chloroplast Genomes of Four Polygonum Medicinal Plants
View through CrossRef
Polygonum is a generalized genus of the Polygonaceae family that includes various herbaceous plants. In order to provide aid in understanding the evolutionary and phylogenetic relationship in Polygonum at the chloroplast (cp) genome-scale level, we sequenced and annotated the complete chloroplast genomes of four Polygonum species using next-generation sequencing technology and CpGAVAS. Then, repeat sequences, IR contractions, and expansion and transformation sites of chloroplast genomes of four Polygonum species were studied, and a phylogenetic tree was built using the chloroplast genomes of Polygonum. The results indicated that the chloroplast genome construction of Polygonum also displayed characteristic four types of results, comparable to the published chloroplast genome of recorded angiosperms. The chloroplast genomes of the four Polygonum plants are highly consistent in genome size (159,015 bp–163,461 bp), number of genes (112 genes, including 78 protein-coding genes, 30 tRNA genes, and 4 rRNA genes), gene types, gene order, codon usage, and repeat sequence distribution, which identifies the high preservation among the Polygonum chloroplast genomes. The Polygonum phylogenetic tree was recreated by a full sequence of the chloroplast genome, which illustrates that the P. bistorta, P. orientale, and P. perfoliatum are divided into the same branch, and P. aviculare belongs to Fallopia. The precise system site of lots base parts requires further verification, but the study would provide a basis for developing the available genetic resources and evolutionary relationships of Polygonum.
Title: A Comparative Analysis of the Chloroplast Genomes of Four Polygonum Medicinal Plants
Description:
Polygonum is a generalized genus of the Polygonaceae family that includes various herbaceous plants.
In order to provide aid in understanding the evolutionary and phylogenetic relationship in Polygonum at the chloroplast (cp) genome-scale level, we sequenced and annotated the complete chloroplast genomes of four Polygonum species using next-generation sequencing technology and CpGAVAS.
Then, repeat sequences, IR contractions, and expansion and transformation sites of chloroplast genomes of four Polygonum species were studied, and a phylogenetic tree was built using the chloroplast genomes of Polygonum.
The results indicated that the chloroplast genome construction of Polygonum also displayed characteristic four types of results, comparable to the published chloroplast genome of recorded angiosperms.
The chloroplast genomes of the four Polygonum plants are highly consistent in genome size (159,015 bp–163,461 bp), number of genes (112 genes, including 78 protein-coding genes, 30 tRNA genes, and 4 rRNA genes), gene types, gene order, codon usage, and repeat sequence distribution, which identifies the high preservation among the Polygonum chloroplast genomes.
The Polygonum phylogenetic tree was recreated by a full sequence of the chloroplast genome, which illustrates that the P.
bistorta, P.
orientale, and P.
perfoliatum are divided into the same branch, and P.
aviculare belongs to Fallopia.
The precise system site of lots base parts requires further verification, but the study would provide a basis for developing the available genetic resources and evolutionary relationships of Polygonum.
Related Results
A systematic comparison of eight new plastome sequences from
Ipomoea
L
A systematic comparison of eight new plastome sequences from
Ipomoea
L
Background
Ipomoea
is the largest genus in the family Convolvulaceae. The species in this genus have been widely us...
Primerjalna književnost na prelomu tisočletja
Primerjalna književnost na prelomu tisočletja
In a comprehensive and at times critical manner, this volume seeks to shed light on the development of events in Western (i.e., European and North American) comparative literature ...
The accumulation of chloroplast small RNAs in unicellular alga
Chlamydomonas reinhardtii
is affected by nitrogen deprivation
The accumulation of chloroplast small RNAs in unicellular alga
Chlamydomonas reinhardtii
is affected by nitrogen deprivation
ABSTRACT
Small RNAs generated from the chloroplast genome may play a role in gene regulation. Given that chloroplast function is affected by nitr...
An Ethno-Pharmacologic Survey of Medicinal Plants in Ethiopia: A Systematic Review for Establishing Medicinal Plant Park Research Project in the Case of West and South West Oromia Forest Ecologic Areas, West Ethiopia
An Ethno-Pharmacologic Survey of Medicinal Plants in Ethiopia: A Systematic Review for Establishing Medicinal Plant Park Research Project in the Case of West and South West Oromia Forest Ecologic Areas, West Ethiopia
Background and objective: Globally the estimate of medicinal plant species range from 35,000-50,000 species and out of this about 4000-6000 species have entered the world market of...
Hyperspectral imaging for chloroplast movement detection
Hyperspectral imaging for chloroplast movement detection
SummaryWe employed hyperspectral imaging to detect chloroplast positioning inNicotiana benthamianaandArabidopsis thalianaleaves and assess its influence on commonly used vegetation...
Comparative analysis of chloroplast genomes of 19 Saxifraga species, mostly from Europe Alps
Comparative analysis of chloroplast genomes of 19 Saxifraga species, mostly from Europe Alps
Complete chloroplast genome sequences are wildly used in the analyses of
phylogenetic relationships among angiosperms. As a species-rich genus,
species diversity centers of Saxifra...
Comparative chloroplast genomics of 34 species in subtribe Swertiinae (Gentianaceae) with implications for its phylogeny
Comparative chloroplast genomics of 34 species in subtribe Swertiinae (Gentianaceae) with implications for its phylogeny
Abstract
Background
Subtribe Swertiinae, a medicinally significant and highly speciose Subtribe of family Gentianaceae. D...
The Potential of Medicinal Plants and Bioactive Compounds in the Fight Against COVID-19
The Potential of Medicinal Plants and Bioactive Compounds in the Fight Against COVID-19
Severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2), a novel coronavirus , is causing a serious worldwide COVID-19 pandemic. The emergence of strains with rapid spread and...

