BIOLOGIA PLANTARUM
ISSN:0006-3134

BIOLOGIA PLANTARUM

BIOL PLANTARUM
学科领域:生物学
是否预警:不在预警名单内
是否OA:
录用周期:约2.0个月
新锐分区:生物学4区
年发文量:17
影响因子:0.9
JCR分区:Q4

基本信息

《 植物 生物 学 》 ( BIOLOGIA PLANTARUM ) 是 一 本 实验 植物 学 国际 期刊 。它 发表 植物 生理 学 、 植物 生物 化学 和 生物 物理 学 、 生理 解剖 学 、 生态 生理 学 、 遗传 学 、 分子 生物 学 、 细胞 生物 学 、 进化 和 病理 生理 学 方面 的 原创 科学 论文 和 简短 通讯 、 专业 主题 评论 和 书评 。所有 的 论文 都 应该 对 当前 的 植物 科学 水平 做出 实质 性 的 贡献 , 并 将 原创 性 与 潜在 的 普遍 兴趣 结合 起来 。该 杂志 主要 关注 模式 植物 和 作物 , 以及 研究 不足 的 物种 。
0006-3134SCIE/Scopus收录/DOAJ开放期刊
0.9
0.9
2026年3月发布
点击查看历史分区趋势    >
大类学科小类学科Top期刊综述期刊
生物学4区
PLANT SCIENCES 植物科学
4区
N/A
WOS期刊SCI分区  2024-2025最新升级版
按JIF指标学科分区收集子录JIF分区JIF排名百分位
学科:PLANT SCIENCES
SCIE
Q4
211/273
按JCR指标学科分区收集子录JCR分区JCR排名百分位
学科:PLANT SCIENCES
SCIE
Q4
226/275
70
17
44%0约2.0个月EUR790生物-植物科学
0%
时间预警情况
2026年03月发布的新锐学术版不在预警名单中
2025年03月发布的2025版不在预警名单中
2024年02月发布的2024版不在预警名单中
2023年01月发布的2023版不在预警名单中
2021年12月发布的2021版不在预警名单中
2020年12月发布的2020版不在预警名单中
88.24%100%-
CiteScore:1.70
SJR:0.282
SNIP:0.237
学科类别分区排名百分位
大类:Agricultural and Biological Sciences
小类:Horticulture
Q3
68 / 126
大类:Agricultural and Biological Sciences
小类:Plant Science
Q3
333 / 534

期刊高被引文献

Fluorine: a biohazardous agent for plants and phytoremediation strategies for its removal from the environment
来源期刊:Biologia PlantarumDOI:10.32615/BP.2019.013
Meta-topolin improved micropropagation in Syzygium cumini and acclimatization to ex vitro conditions
来源期刊:Biologia PlantarumDOI:10.32615/BP.2019.020
Rare earth elements in plants
来源期刊:Biologia PlantarumDOI:10.32615/BP.2019.003
Molecular and physiological analysis of drought stress responses in Zea mays treated with plant growth promoting rhizobacteria
来源期刊:Biologia PlantarumDOI:10.32615/BP.2019.092
Comparative analysis of complete chloroplast genomes sequencesof Arctium lappa and A. tomentosum
来源期刊:Biologia PlantarumDOI:10.32615/BP.2019.101
Implication of peroxisomes and mitochondria in the halophyte Cakile maritima tolerance to salinity stress
来源期刊:Biologia PlantarumDOI:10.32615/BP.2019.014
OsCaM1-1 overexpression in the transgenic rice mitigated salt-induced oxidative damage
来源期刊:Biologia PlantarumDOI:10.32615/BP.2019.039
Genome-wide identification of circular RNAs in tomato seeds in response to high temperature
来源期刊:Biologia PlantarumDOI:10.32615/BP.2019.012
Identification and validation of reference genes for real-time qPCR normalization during Al-induced programmed cell death in peanut
来源期刊:Biologia PlantarumDOI:10.32615/BP.2019.027
Evaluation of Oryza coarctata candidate reference genes under different abiotic stresses
来源期刊:Biologia PlantarumDOI:10.32615/bp.2019.054
Overexpression of CBL interacting protein kinase 2 improves plant tolerance to salinity and mercury
来源期刊:Biologia PlantarumDOI:10.32615/BP.2019.021
Effect of aluminum and fluoride on R2R3-MYB transcription factor characterization and expression in Camellia sinensis
来源期刊:Biologia PlantarumDOI:10.32615/BP.2019.034
Changes in leaf gas exchange, chlorophyll a fluorescence, and antioxidantsin maize leaves infected by Exserohilum turcicum
来源期刊:Biologia PlantarumDOI:10.32615/bp.2019.130
Proline metabolism-related gene expression in four potato genotypes in response to drought stress
来源期刊:Biologia PlantarumDOI:10.32615/bp.2019.153
Response of two Arabidopsis ecotypes Columbia-0 and Dijon-G to necrotrophic and biotrophic pathogens
来源期刊:Biologia PlantarumDOI:10.32615/bp.2019.071
Shoot proliferation and organogenesis on Arbutus unedo: physiological analysis under water stress
来源期刊:Biologia PlantarumDOI:10.32615/BP.2019.032
Effect of NaCl on the photosynthetic pathways of halophytic leaf succulent Sedum uniflorum
来源期刊:Biologia PlantarumDOI:10.32615/BP.2019.004
Application of sucrose modulates the expressions of genes involved in proline and polyamine metabolism in maize seedlings exposed to drought
来源期刊:Biologia PlantarumDOI:10.32615/BP.2019.028
Chl a fluorescence and proteomics reveal protection of the photosynthetic apparatus to dehydration in tolerant but not in susceptible wheat cultivars
来源期刊:Biologia PlantarumDOI:10.32615/BP.2019.033
Effects hydrogen sulfide on the antioxidant system and membrane stability in mitochondria of Malus hupehensis under NaCl stress
来源期刊:Biologia PlantarumDOI:10.32615/BP.2019.026
Identification of candidate reference genes in tropical bamboos stable across species, tissues, and developmental stages
来源期刊:Biologia PlantarumDOI:10.32615/BP.2019.029
Transcriptome profiling in Salix matsudana during refilling xylem vessels after embolism
来源期刊:Biologia PlantarumDOI:10.32615/BP.2019.061
Exogenous spermidine enhances expression of Calvin cycle genes andphotosynthetic efficiency in sweet sorghum seedlings under salt stress
来源期刊:Biologia PlantarumDOI:10.32615/BP.2019.046
Gibberellin A3 mediated decreased transcriptional rate, mRNA stability and non-competitive inhibition of DNA methyltransferases in tobacco
来源期刊:Biologia PlantarumDOI:10.32615/BP.2019.040
Effects of various winter chilling regimes on flowering quality indicators of Greek olive cultivars
来源期刊:Biologia PlantarumDOI:10.32615/bp.2019.065
Overexpression of the UGT76E12 gene modulates seed germination, growth, and response to NaCl, mannitol, and abscisic acid
来源期刊:Biologia PlantarumDOI:10.32615/BP.2019.038
Differential expressions of citrus CAMTAs during fruit development and responses to abiotic stresses
来源期刊:Biologia PlantarumDOI:10.32615/BP.2019.041
The homoeologous genes encoding C24-sterol methyltransferase 1 in Triticum aestivum: structural characteristics and effects of cold stress
来源期刊:Biologia PlantarumDOI:10.32615/BP.2019.008
Virus-induced gene silencing for phenylalanine ammonia-lyase affects pepper adaption to low temperature
来源期刊:Biologia PlantarumDOI:10.32615/bp.2019.063
Multifunctional proline rich proteins and their role in regulating cellular proline content in plants under stress
来源期刊:Biologia PlantarumDOI:10.32615/BP.2019.078
Cloning, characterization, and expression of 1-deoxy-D-xylulose-5-phosphate reductoisomerase gene from Dioscorea zingiberensis
来源期刊:Biologia PlantarumDOI:10.32615/BP.2019.030
Cassava microRNAs and storage root development
来源期刊:Biologia PlantarumDOI:10.32615/BP.2019.022
The effects of gibberellic acid on Allium cepa root tip meristematic cells
来源期刊:Biologia PlantarumDOI:10.32615/BP.2019.042
Recent advances and perspectives in crop biofortification
来源期刊:Biologia PlantarumDOI:10.32615/bp.2019.056
Anthocyanin accumulation and differential gene expression in wild-typeand mutant Syzygium malaccense fruits during their growth and ripening
来源期刊:Biologia PlantarumDOI:10.32615/bp.2019.068
Apyrases in Arabidopsis thaliana
来源期刊:Biologia PlantarumDOI:10.32615/BP.2019.005
The gene OsIAA9 encoding auxin/indole-3-acetic acid proteins is a negative regulator of auxin-regulated root growth in rice
来源期刊:Biologia PlantarumDOI:10.32615/BP.2019.024
Constitutive expression of the wheat TaSOD5 gene enhances salinity tolerance of Arabidopsis thaliana
来源期刊:Biologia PlantarumDOI:10.32615/bp.2019.108
An overexpression of the AP2/ERF transcription factor from Iris typhifolia in Arabidopsis thaliana confers tolerance to salt stress
来源期刊:Biologia PlantarumDOI:10.32615/bp.2019.082
Sense- and antisense-mediated resistance against Sri Lankan cassava mosaic virus (SLCMV) in Nicotiana benthamiana
来源期刊:Biologia PlantarumDOI:10.32615/BP.2019.079
Arabidopsis KIN gamma subunit 1 has a potential to regulate activity of sucrose nonfermenting 1-related protein kinase 2s (SnRK2s) in vitro
来源期刊:Biologia PlantarumDOI:10.32615/BP.2019.007
Proteomic analysis provides integrated insight into mechanisms of Turnip mosaic virus long distance movement in Brassica rapa
来源期刊:Biologia PlantarumDOI:10.32615/BP.2019.019
Identification and validation of organ-preferential genes and analysis of corresponding upstream tissue-specific promoters in wheat
来源期刊:Biologia PlantarumDOI:10.32615/BP.2019.010
The RNA-seq transcriptome analysis identified genes related to rice seed dormancy
来源期刊:Biologia PlantarumDOI:10.32615/BP.2019.035
Overexpression of the dominant negative nbexo70d1 mutantionconfers tolerance to salt stress in transgenic tobacco
来源期刊:Biologia PlantarumDOI:10.32615/BP.2019.058
Identification of differentially expressed genes of Haloxylon ammodendronin response to salinity stress
来源期刊:Biologia PlantarumDOI:10.32615/bp.2019.066
Overexpression of a gene AhFBA from Arachis hypogaea confers salinity stress tolerance in Escherichia coli and tobacco
来源期刊:Biologia PlantarumDOI:10.32615/BP.2019.015
Effects of drought on expression patterns of genes encoding the antioxidantenzymes associated with chloroplasts in wheat
来源期刊:Biologia PlantarumDOI:10.32615/BP.2019.055
The intensity of and recovery from photoinhibition under drought in a thermotolerant common bean compared to drought tolerant genotypes
来源期刊:Biologia PlantarumDOI:10.32615/BP.2019.076
Evaluating the role of wheat histone variant genes in development and response to abiotic stress in Arabidopsis
来源期刊:Biologia PlantarumDOI:10.32615/bp.2019.113

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