Chorispora bungeana - Unknown
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Internal ID UUID644010f4cd3df510266053
Scientific name Chorispora bungeana
Authority Fisch. & C.A.Mey.
First published in Enum. Pl. Nov. 1: 96 (1841)

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Synonyms Top

Scientific name Authority First published in
Chorispermum exscapum Kuntze Revis. Gen. Pl. 1: 26 (1891)
Chorispora exscapa Bunge Fl. Ross. (Ledeb.) 1(1): 169. 1841
Chorispora tianschanica C.H.An Fl. Xinjiangensis 2(2): 378 (1995)
Chorispora tianshanica Z.X.An

Common names Top

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Language Common/alternative name
Russian Хориспора Бунге
Chinese 高山离子芥

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Germination/Propagation Top

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Sow seeds at 20°C, expecting germination within 3 months without further temperature treatment.
very thick seed coat; hard to germinate; may benefit from leaching effect of rain

Distribution (via POWO/KEW) Top

Legend for the distribution data:
- Doubtful data
- Extinct
- Introduced
- Native
  • Asia-temperate
    • China
      • Xinjiang
    • Middle Asia
      • Kazakhstan
      • Kirgizstan
      • Tadzhikistan
      • Uzbekistan
    • Mongolia
      • Mongolia
    • Siberia
      • Altay
      • West Siberia
    • Western Asia
      • Afghanistan

Links to other databases Top

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Database ID/link to page
World Flora Online wfo-0000603391
Tropicos 4103636
KEW urn:lsid:ipni.org:names:281233-1
The Plant List kew-2719489
Plantarium 10294
Open Tree Of Life 331182
Observations.org 116493
NCBI Taxonomy 238895
IPNI 281233-1
GBIF 3044376
EOL 2886538
Elurikkus 355955

Genomes (via NCBI) Top

No reference genome is available on NCBI yet. We are constantly monitoring for new data.

Scientific Literature Top

Below are displayed the latest 15 articles published in PMC (PubMed Central®) and other sources (DOI number only)!
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Title Authors Publication Released IDs
Identification of Salt-Sensitive and Salt-Tolerant Genes through Weighted Gene Co-Expression Networks across Multiple Datasets: A Centralization and Differential Correlation Analysis Sonsungsan P, Suratanee A, Buaboocha T, Chadchawan S, Plaimas K Genes (Basel) 28-Feb-2024
PMCID:PMC10970189
doi:10.3390/genes15030316
PMID:38540375
Functional and Transcriptome Analysis Reveal Specific Roles of Dimocarpus longan DlRan3A and DlRan3B in Root Hair Development, Reproductive Growth, and Stress Tolerance Tian Q, Xie X, Lai R, Cheng C, Zhang Z, Chen Y, XuHan X, Lin Y, Lai Z Plants (Basel) 07-Feb-2024
PMCID:PMC10891736
doi:10.3390/plants13040480
PMID:38498444
Multiple Ways of Nitric Oxide Production in Plants and Its Functional Activity under Abiotic Stress Conditions Allagulova CR, Lubyanova AR, Avalbaev AM Int J Mol Sci 19-Jul-2023
PMCID:PMC10380521
doi:10.3390/ijms241411637
PMID:37511393
Calcium signalling in weeds under herbicide stress: An outlook Hamouzová K, Sen MK, Bharati R, Košnarová P, Chawdhery MR, Roy A, Soukup J Front Plant Sci 24-Mar-2023
PMCID:PMC10080077
doi:10.3389/fpls.2023.1135845
PMID:37035053
The regulation of plant cell wall organisation under salt stress Dabravolski SA, Isayenkov SV Front Plant Sci 10-Mar-2023
PMCID:PMC10036381
doi:10.3389/fpls.2023.1118313
PMID:36968390
Phytohormones regulate the non-redundant response of ω-3 fatty acid desaturases to low temperatures in Chorispora bungeana Shi Y, Yang S, Zhao Z, An L Sci Rep 16-Feb-2023
PMCID:PMC9935925
doi:10.1038/s41598-023-29910-4
PMID:36797352
Epigenetic stress memory: A new approach to study cold and heat stress responses in plants Ramakrishnan M, Zhang Z, Mullasseri S, Kalendar R, Ahmad Z, Sharma A, Liu G, Zhou M, Wei Q Front Plant Sci 08-Dec-2022
PMCID:PMC9772030
doi:10.3389/fpls.2022.1075279
PMID:36570899
Epigenetic variation: A major player in facilitating plant fitness under changing environmental conditions Rajpal VR, Rathore P, Mehta S, Wadhwa N, Yadav P, Berry E, Goel S, Bhat V, Raina SN Front Cell Dev Biol 18-Oct-2022
PMCID:PMC9628676
doi:10.3389/fcell.2022.1020958
PMID:36340045
Overexpression of MePMEI1 in Arabidopsis enhances Pb tolerance Zhou Y, Li R, Wang S, Ding Z, Zhou Q, Liu J, Wang Y, Yao Y, Hu X, Guo J Front Plant Sci 16-Sep-2022
PMCID:PMC9523724
doi:10.3389/fpls.2022.996981
PMID:36186034
Cold adaptation strategies in plants—An emerging role of epigenetics and antifreeze proteins to engineer cold resilient plants Satyakam, Zinta G, Singh RK, Kumar R Front Genet 25-Aug-2022
PMCID:PMC9459425
doi:10.3389/fgene.2022.909007
PMID:36092945
Transcriptome Analysis of Near-Isogenic Lines Provides Novel Insights into Genes Associated with Seed Low-Temperature Germination Ability in Maize (Zea mays L.) Li X, Hu H, Hu X, Wang G, Du X, Li L, Wang F, Fu J, Wang G, Wang J, Gu R Plants (Basel) 25-Mar-2022
PMCID:PMC9002958
doi:10.3390/plants11070887
PMID:35406867
Reprogramming of the Hevea brasiliensis Epigenome and Transcriptome in Response to Cold Stress Tang X, Zhang Y, Yuan HM, Zhai J, Huang X Front Plant Sci 21-Mar-2022
PMCID:PMC8979024
doi:10.3389/fpls.2022.831839
PMID:35386670
Genome-Wide Identification of the PMEI Gene Family in Tea Plant and Functional Analysis of CsPMEI2 and CsPMEI4 Through Ectopic Overexpression Li B, Wang H, He S, Ding Z, Wang Y, Li N, Hao X, Wang L, Yang Y, Qian W Front Plant Sci 27-Jan-2022
PMCID:PMC8829431
doi:10.3389/fpls.2021.807514
PMID:35154201
Two Carbohydrate-Based Natural Extracts Stimulate in vitro Pollen Germination and Pollen Tube Growth of Tomato Under Cold Temperatures Laggoun F, Ali N, Tourneur S, Prudent G, Gügi B, Kiefer-Meyer MC, Mareck A, Cruz F, Yvin JC, Nguema-Ona E, Mollet JC, Jamois F, Lehner A Front Plant Sci 07-Oct-2021
PMCID:PMC8529017
doi:10.3389/fpls.2021.552515
PMID:34691089
Genome-Wide Analysis and Expression Profiling of the Phospholipase D Gene Family in Solanum tuberosum Li L, Zhang C, Zhang M, Yang C, Bao Y, Wang D, Chen Q, Chen Y Biology (Basel) 02-Aug-2021
PMCID:PMC8389595
doi:10.3390/biology10080741
PMID:34439973

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