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Agronomic traits, secondary metabolites and element concentrations of Lavandula angustifolia leaves as a response to single or reiterated drought stress: How effective is the previously experienced stress?


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Ahanger, M. A., Morad-Talab, N., Abd-Allah, E. F., Ahmad, P., and Hajiboland, R. (2016). Plant growth under drought stress: Significance of mineral nutrients. In P. Ahmad (Ed.), Water stress and crop plants: A sustainable approach, vol. 2 (pp. 649–668). Chichester, West Sussex, UK: John Wiley & Sons, Ltd. AhangerM. A. Morad-TalabN. Abd-AllahE. F. AhmadP. HajibolandR. 2016 Plant growth under drought stress: Significance of mineral nutrients In AhmadP. (Ed.), Water stress and crop plants: A sustainable approach 2 649 668 Chichester, West Sussex, UK John Wiley & Sons, Ltd 10.1002/9781119054450.ch37 Search in Google Scholar

Al-Gabbiesh, A., Kleinwächter, M., and Selmar, D. (2015). Influencing the contents of secondary metabolites in spice and medicinal plants by deliberately applying drought stress during their cultivation. Jordan Journal of Biological Sciences, 147(3379), 1–10. Al-GabbieshA. KleinwächterM. SelmarD. 2015 Influencing the contents of secondary metabolites in spice and medicinal plants by deliberately applying drought stress during their cultivation Jordan Journal of Biological Sciences 147 3379 1 10 10.12816/0026941 Search in Google Scholar

Alpert, P., Ben-Gai, T., Baharad, A., Benjamini, Y., Yekutieli, D., Colacino, M., Diodato, L., Ramis, C., Homar, V., Romero, R., Michaelides, S., and Manes, A. (2002). The paradoxical increase of Mediterranean extreme daily rainfall in spite of decrease in total values. Geophysical Research Letters, 29(11), 31-1–31-4. AlpertP. Ben-GaiT. BaharadA. BenjaminiY. YekutieliD. ColacinoM. DiodatoL. RamisC. HomarV. RomeroR. MichaelidesS. ManesA. 2002 The paradoxical increase of Mediterranean extreme daily rainfall in spite of decrease in total values Geophysical Research Letters 29 11 31-1 31-4 10.1029/2001GL013554 Search in Google Scholar

Amini, H., Arzani, A., and Karami, M. (2014). Effect of water deficiency on seed quality and physiological traits of different safflower genotypes. Turkish Journal of Biology, 38(2), 271–282. AminiH. ArzaniA. KaramiM. 2014 Effect of water deficiency on seed quality and physiological traits of different safflower genotypes Turkish Journal of Biology 38 2 271 282 10.3906/biy-1308-22 Search in Google Scholar

Anjum, S. A., Xie, X. Y., Wang, L. C., Saleem, M. F., Man, C., and Lei, W. (2011). Morphological, physiological and biochemical responses of plants to drought stress. African Journal of Agricultural Research, 6(9), 2026–2032. AnjumS. A. XieX. Y. WangL. C. SaleemM. F. ManC. LeiW. 2011 Morphological, physiological and biochemical responses of plants to drought stress African Journal of Agricultural Research 6 9 2026 2032 Search in Google Scholar

Asensi-Fabado, M. A., Oliván, A., and Munné-Bosch, S. (2013). A comparative study of the hormonal response to high temperatures and stress reiteration in three Labiatae species. Environmental and Experimental Botany, 94, 57–65. Asensi-FabadoM. A. OlivánA. Munné-BoschS. 2013 A comparative study of the hormonal response to high temperatures and stress reiteration in three Labiatae species Environmental and Experimental Botany 94 57 65 10.1016/j.envexpbot.2012.05.001 Search in Google Scholar

Atkinson, N. J., and Urwin, P. E. (2012). The interaction of plant biotic and abiotic stresses: From genes to the field. Journal of Experimental Botany, 63(10), 3523–3543. AtkinsonN. J. UrwinP. E. 2012 The interaction of plant biotic and abiotic stresses: From genes to the field Journal of Experimental Botany 63 10 3523 3543 10.1093/jxb/ers10022467407 Search in Google Scholar

Bennett, R. N., and Wallsgrove, R. M. (1994). Secondary metabolites in plant defence mechanisms. New Phytologist, 127(4), 617–633. BennettR. N. WallsgroveR. M. 1994 Secondary metabolites in plant defence mechanisms New Phytologist 127 4 617 633 10.1111/j.1469-8137.1994.tb02968.x33874382 Search in Google Scholar

Bhusal, N., Han, S. G., and Yoon, T. M. (2019). Impact of drought stress on photosynthetic response, leaf water potential, and stem sap flow in two cultivars of bi-leader apple trees (Malus domestica Borkh.). Scientia Horticulturae, 246, 535–543. BhusalN. HanS. G. YoonT. M. 2019 Impact of drought stress on photosynthetic response, leaf water potential, and stem sap flow in two cultivars of bi-leader apple trees (Malus domestica Borkh.) Scientia Horticulturae 246 535 543 10.1016/j.scienta.2018.11.021 Search in Google Scholar

Caliskan, O., Radusiene, J., Temizel, K. E., Staunis, Z., Cirak, C., Kurt, D., and Odabas, M. S. (2017). The effects of salt and drought stress on phenolic accumulation in greenhouse-grown Hypericum pruinatum. Italian Journal of Agronomy, 12(3), 271–275. CaliskanO. RadusieneJ. TemizelK. E. StaunisZ. CirakC. KurtD. OdabasM. S. 2017 The effects of salt and drought stress on phenolic accumulation in greenhouse-grown Hypericum pruinatum Italian Journal of Agronomy 12 3 271 275 10.4081/ija.2017.918 Search in Google Scholar

Celikcan, F., Kocak, M. Z., and Kulak, M. (2021). Vermicompost applications on growth, nutrition uptake and secondary metabolites of Ocimum basilicum L. under water stress: A comprehensive analysis. Industrial Crops and Products, 171, 113973, doi: 10.1016/j.indcrop.2021.113973. CelikcanF. KocakM. Z. KulakM. 2021 Vermicompost applications on growth, nutrition uptake and secondary metabolites of Ocimum basilicum L. under water stress: A comprehensive analysis Industrial Crops and Products 171 113973, 10.1016/j.indcrop.2021.113973 Open DOISearch in Google Scholar

Chen, K., and Arora, R. (2013). Priming memory invokes seed stress-tolerance. Environmental and Experimental Botany, 94, 33–45. ChenK. AroraR. 2013 Priming memory invokes seed stress-tolerance Environmental and Experimental Botany 94 33 45 10.1016/j.envexpbot.2012.03.005 Search in Google Scholar

Chinnusamy, V., Schumaker, K., and Zhu, J. K. (2004). Molecular genetic perspectives on cross-talk and specificity in abiotic stress signalling in plants. Journal of Experimental Botany, 55(395), 225–236. ChinnusamyV. SchumakerK. ZhuJ. K. 2004 Molecular genetic perspectives on cross-talk and specificity in abiotic stress signalling in plants Journal of Experimental Botany 55 395 225 236 10.1093/jxb/erh00514673035 Search in Google Scholar

Chrysargyris, A., Laoutari, S., Litskas, V. D., Stavrinides, M. C., and Tzortzakis, N. (2016). Effects of water stress on lavender and sage biomass production, essential oil composition and biocidal properties against Tetranychusurticae (Koch). Scientia Horticulturae, 213, 96–103. ChrysargyrisA. LaoutariS. LitskasV. D. StavrinidesM. C. TzortzakisN. 2016 Effects of water stress on lavender and sage biomass production, essential oil composition and biocidal properties against Tetranychusurticae (Koch) Scientia Horticulturae 213 96 103 10.1016/j.scienta.2016.10.024 Search in Google Scholar

Cushman, J. C., and Borland, A. (2002). Induction of Crassulacean acid metabolism by water limitation. Plant, Cell & Environment, 25(2), 295–310. CushmanJ. C. BorlandA. 2002 Induction of Crassulacean acid metabolism by water limitation Plant, Cell & Environment 25 2 295 310 10.1046/j.0016-8025.2001.00760.x11841671 Search in Google Scholar

Da Silva, E. C., Nogueira, R. J. M. C., Da Silva, M. A., and De Albuquerque, M. B. (2011). Drought stress and plant nutrition. Plant Stress, 5(1), 32–41. Da SilvaE. C. NogueiraR. J. M. C. Da SilvaM. A. De AlbuquerqueM. B. 2011 Drought stress and plant nutrition Plant Stress 5 1 32 41 Search in Google Scholar

Danh, L. T., Triet, N. D. A., Zhao, J., Mammucari, R., and Foster, N. (2013). Comparison of chemical composition, antioxidant and antimicrobial activity of lavender (Lavandula angustifolia L.) Essential oils extracted by supercritical CO2, hexane and hydrodistillation. Food and Bioprocess Technology, 6(12), 3481–3489. DanhL. T. TrietN. D. A. ZhaoJ. MammucariR. FosterN. 2013 Comparison of chemical composition, antioxidant and antimicrobial activity of lavender (Lavandula angustifolia L.) Essential oils extracted by supercritical CO2, hexane and hydrodistillation Food and Bioprocess Technology 6 12 3481 3489 10.1007/s11947-012-1026-z Search in Google Scholar

D’auria, F. D., Tecca, M., Strippoli, V., Salvatore, G., Battinelli, L., and Mazzanti, G. (2005). Antifungal activity of Lavandula angustifolia essential oil against Candida albicans yeast and mycelial form. Medical Mycology, 43(5), 391–396. D’auriaF. D. TeccaM. StrippoliV. SalvatoreG. BattinelliL. MazzantiG. 2005 Antifungal activity of Lavandula angustifolia essential oil against Candida albicans yeast and mycelial form Medical Mycology 43 5 391 396 10.1080/1369378040000481016178366 Search in Google Scholar

De Almeida, L. F. R., Portella, R. D. O., Bufalo, J., Marques, M. O. M., Facanali, R., and Frei, F. (2016). Non-oxygenated sesquiterpenes in the essential oil of Copaifera langsdorffii Desf. increase during the day in the dry season. PLoS ONE, 11(2), e0149332, doi: 10.1371/journal.pone.0149332. De AlmeidaL. F. R. PortellaR. D. O. BufaloJ. MarquesM. O. M. FacanaliR. FreiF. 2016 Non-oxygenated sesquiterpenes in the essential oil of Copaifera langsdorffii Desf. increase during the day in the dry season PLoS ONE 11 2 e0149332 10.1371/journal.pone.0149332 475757026886431 Open DOISearch in Google Scholar

De Freitas Guedes, F. A., Menezes-Silva, P. E., Damatta, F. M., and Alves-Ferreira, M. (2019). Using transcriptomics to assess plant stress memory. Theoretical and Experimental Plant Physiology, 31(1), 47–58. De Freitas GuedesF. A. Menezes-SilvaP. E. DamattaF. M. Alves-FerreiraM. 2019 Using transcriptomics to assess plant stress memory Theoretical and Experimental Plant Physiology 31 1 47 58 10.1007/s40626-018-0135-0 Search in Google Scholar

Détár, E., Németh, É. Z., Gosztola, B., Demján, I., and Pluhár, Z. (2020). Effects of variety and growth year on the essential oil properties of lavender (Lavandula angustifolia Mill.) and lavandin (Lavandula × intermedia Emeric ex Loisel.). Biochemical Systematics and Ecology, 90, 104020, doi: 10.1016/j.bse.2020.104020. DétárE. NémethÉ. Z. GosztolaB. DemjánI. PluhárZ. 2020 Effects of variety and growth year on the essential oil properties of lavender (Lavandula angustifolia Mill.) and lavandin (Lavandula × intermedia Emeric ex Loisel.) Biochemical Systematics and Ecology 90 104020, 10.1016/j.bse.2020.104020 Open DOISearch in Google Scholar

Du, B., and Rennenberg, H. (2018). Physiological responses of lavender (Lavandula angustifolia Mill.) to water deficit and recovery. South African Journal of Botany, 119, 212–218. DuB. RennenbergH. 2018 Physiological responses of lavender (Lavandula angustifolia Mill.) to water deficit and recovery South African Journal of Botany 119 212 218 10.1016/j.sajb.2018.09.002 Search in Google Scholar

Dubrovsky, J. G. (1996). Seed hydration memory in Sonoran Desert cacti and its ecological implication. American Journal of Botany, 83(5), 624–632. DubrovskyJ. G. 1996 Seed hydration memory in Sonoran Desert cacti and its ecological implication American Journal of Botany 83 5 624 632 10.1002/j.1537-2197.1996.tb12748.x Search in Google Scholar

Evandri, M. G., Battinelli, L., Daniele, C., Mastrangelo, S., Bolle, P., and Mazzanti, G. (2005). The antimutagenic activity of Lavandula angustifolia (lavender) essential oil in the bacterial reverse mutation assay. Food and Chemical Toxicology, 43(9), 1381–1387. EvandriM. G. BattinelliL. DanieleC. MastrangeloS. BolleP. MazzantiG. 2005 The antimutagenic activity of Lavandula angustifolia (lavender) essential oil in the bacterial reverse mutation assay Food and Chemical Toxicology 43 9 1381 1387 10.1016/j.fct.2005.03.01315907354 Search in Google Scholar

Farahani, H. A., Valadabadi, S. A., Daneshian, J., Shiranirad, A. H., and Khalvati, M. A. (2009). Medicinal and aromatic plants farming under drought conditions. Journal of Horticulture and Forestry, 1(6), 86–92. FarahaniH. A. ValadabadiS. A. DaneshianJ. ShiraniradA. H. KhalvatiM. A. 2009 Medicinal and aromatic plants farming under drought conditions Journal of Horticulture and Forestry 1 6 86 92 Search in Google Scholar

Farooq, M., Hussain, M., Wahid, A., and Siddique, K. H. M. (2012). Drought stress in plants: An overview. In R. Aroca (Ed.), Plant responses to drought stress (pp. 1–33). Berlin, Heidelberg, Germany: Springer. FarooqM. HussainM. WahidA. SiddiqueK. H. M. 2012 Drought stress in plants: An overview In ArocaR. (Ed.), Plant responses to drought stress 1 33 Berlin, Heidelberg, Germany Springer 10.1007/978-3-642-32653-0_1 Search in Google Scholar

Fleta-Soriano, E., and Munné-Bosch, S. (2016). Stress memory and the inevitable effects of drought: A physiological perspective. Frontiers in Plant Science, 7, 143, doi: 10.3389/fpls.2016.00143. Fleta-SorianoE. Munné-BoschS. 2016 Stress memory and the inevitable effects of drought: A physiological perspective Frontiers in Plant Science 7 143 10.3389/fpls.2016.00143 475329726913046 Open DOISearch in Google Scholar

Gao, S., Wang, Y., Yu, S., Huang, Y., Liu, H., Chen, W., and He, X. (2020). Effects of drought stress on growth, physiology and secondary metabolites of two Adonis species in Northeast China. Scientia Horticulturae, 259, 108795, doi: 10.1016/j.scienta.2019.108795. GaoS. WangY. YuS. HuangY. LiuH. ChenW. HeX. 2020 Effects of drought stress on growth, physiology and secondary metabolites of two Adonis species in Northeast China Scientia Horticulturae 259 108795, 10.1016/j.scienta.2019.108795 Open DOISearch in Google Scholar

García-Caparrós, P., Romero, M. J., Llanderal, A., Cermeño, P., Lao, M. T., and Segura, M. L. (2019). Effects of drought stress on biomass, essential oil content, nutritional parameters, and costs of production in six Lamiaceae species. Water, 11(3), 573, doi: 10.3390/w11030573. García-CaparrósP. RomeroM. J. LlanderalA. CermeñoP. LaoM. T. SeguraM. L. 2019 Effects of drought stress on biomass, essential oil content, nutritional parameters, and costs of production in six Lamiaceae species Water 11 3 573 10.3390/w11030573 Open DOISearch in Google Scholar

Ghelardini, C., Galeotti, N., Salvatore, G., and Mazzanti, G. (1999). Local anaesthetic activity of the essential oil of Lavandula angustifolia. Planta Medica, 65(8), 700–703. GhelardiniC. GaleottiN. SalvatoreG. MazzantiG. 1999 Local anaesthetic activity of the essential oil of Lavandula angustifolia Planta Medica 65 8 700 703 10.1055/s-1999-1404510630108 Search in Google Scholar

Giovannini, D., Gismondi, A., Basso, A., Canuti, L., Braglia, R., Canini, A., Mariani, F., and Cappelli, G. (2016). Lavandula angustifolia Mill. essential oil exerts antibacterial and anti-inflammatory effect in macrophage mediated immune response to Staphylococcus aureus. Immunological Investigations 45(1), 11–28. GiovanniniD. GismondiA. BassoA. CanutiL. BragliaR. CaniniA. MarianiF. CappelliG. 2016 Lavandula angustifolia Mill. essential oil exerts antibacterial and anti-inflammatory effect in macrophage mediated immune response to Staphylococcus aureus Immunological Investigations 45 1 11 28 10.3109/08820139.2015.108539226730790 Search in Google Scholar

Gorgini Shabankareh, H., Khorasaninejad, S., Soltanloo, H., and Shariati, V. (2021). Physiological response and secondary metabolites of three lavender genotypes under water deficit. Scientific Reports, 11(1), 19164, doi: 10.1038/s41598-021-98750-x. Gorgini ShabankarehH. KhorasaninejadS. SoltanlooH. ShariatiV. 2021 Physiological response and secondary metabolites of three lavender genotypes under water deficit Scientific Reports 11 1 19164, 10.1038/s41598-021-98750-x 847650334580379 Open DOISearch in Google Scholar

Grant, W., Zerihun, D., Mark, R., and Soheil, M. (2011). Biosynthesis and therapeutic properties of Lavandula essential oil constituents. Planta Medica, 77(1), 7–15. GrantW. ZerihunD. MarkR. SoheilM. 2011 Biosynthesis and therapeutic properties of Lavandula essential oil constituents Planta Medica 77 1 7 15 10.1055/s-0030-125013620665367 Search in Google Scholar

Gull, A., Lone, A. A., and Wani, N. U. I. (2019). Biotic and abiotic stresses in plants. In A. De Oliveira (Ed.), Abiotic and biotic stress in plants (pp. 1–19). Rijeka, Croatia: IntechOpen. GullA. LoneA. A. WaniN. U. I. 2019 Biotic and abiotic stresses in plants In De OliveiraA. (Ed.), Abiotic and biotic stress in plants 1 19 Rijeka, Croatia IntechOpen 10.5772/intechopen.85832 Search in Google Scholar

Jan, R., Asaf, S., Numan, M., and Kim, K. M. (2021). Plant secondary metabolite biosynthesis and transcriptional regulation in response to biotic and abiotic stress conditions. Agronomy, 11(5), 968, doi: 10.3390/agronomy11050968. JanR. AsafS. NumanM. KimK. M. 2021 Plant secondary metabolite biosynthesis and transcriptional regulation in response to biotic and abiotic stress conditions Agronomy 11 5 968 10.3390/agronomy11050968 Open DOISearch in Google Scholar

Jogawat, A., Yadav, B., Lakra, N., Singh, A. K., and Narayan, O. P. (2021). Crosstalk between phytohormones and secondary metabolites in the drought stress tolerance of crop plants: A review. Physiologia Plantarum, 172(2), 1106–1132. JogawatA. YadavB. LakraN. SinghA. K. NarayanO. P. 2021 Crosstalk between phytohormones and secondary metabolites in the drought stress tolerance of crop plants: A review Physiologia Plantarum 172 2 1106 1132 10.1111/ppl.1332833421146 Search in Google Scholar

Kaçar, B., and Inal, A. (2010). Bitki analizleri. Ankara, Türkiye (Turkey): Nobel YayınDağıtım. KaçarB. InalA. 2010 Bitki analizleri Ankara, Türkiye (Turkey) Nobel YayınDağıtım Search in Google Scholar

Khare, S., Singh, N. B., Singh, A., Hussain, I., Niharika, K., Yadav, V., and Amist, N. (2020). Plant secondary metabolites synthesis and their regulations under biotic and abiotic constraints. Journal of Plant Biology, 63(3), 203–216. KhareS. SinghN. B. SinghA. HussainI. NiharikaK. YadavV. AmistN. 2020 Plant secondary metabolites synthesis and their regulations under biotic and abiotic constraints Journal of Plant Biology 63 3 203 216 10.1007/s12374-020-09245-7 Search in Google Scholar

Kulak, M. (2020). Recurrent drought stress effects on essential oil profile of Lamiaceae plants: An approach regarding stress memory. Industrial Crops and Products, 154, 112695, doi: 10.1016/j.indcrop.2020.112695. KulakM. 2020 Recurrent drought stress effects on essential oil profile of Lamiaceae plants: An approach regarding stress memory Industrial Crops and Products 154 112695, 10.1016/j.indcrop.2020.112695 Open DOISearch in Google Scholar

Kulak, M., Jorrín-Novo, J. V., Romero-Rodriguez, M. C., Yildirim, E. D., Gul, F., and Karaman, S. (2021). Seed priming with salicylic acid on plant growth and essential oil composition in basil (Ocimum basilicum L.) plants grown under water stress conditions. Industrial Crops and Products, 161, 113235, doi: 10.1016/j.indcrop.2020.113235. KulakM. Jorrín-NovoJ. V. Romero-RodriguezM. C. YildirimE. D. GulF. KaramanS. 2021 Seed priming with salicylic acid on plant growth and essential oil composition in basil (Ocimum basilicum L.) plants grown under water stress conditions Industrial Crops and Products 161 113235, 10.1016/j.indcrop.2020.113235 Open DOISearch in Google Scholar

Larkunthod, P., Nounjan, N., Siangliw, J. L., Toojinda, T., Sanitchon, J., Jongdee, B., and Theerakulpisut, P. (2018). Physiological responses under drought stress of improved drought-tolerant rice lines and their parents. Notulae Botanicae Horti Agrobotanici Cluj-Napoca, 46(2), 679–687. LarkunthodP. NounjanN. SiangliwJ. L. ToojindaT. SanitchonJ. JongdeeB. TheerakulpisutP. 2018 Physiological responses under drought stress of improved drought-tolerant rice lines and their parents Notulae Botanicae Horti Agrobotanici Cluj-Napoca 46 2 679 687 10.15835/nbha46211188 Search in Google Scholar

Lima, A. T., and Meiado, M. V. (2018). Effect of hydration and dehydration cycles on Mimosa tenuiflora seeds during germination and initial development. South African Journal of Botany, 116, 164–167. LimaA. T. MeiadoM. V. 2018 Effect of hydration and dehydration cycles on Mimosa tenuiflora seeds during germination and initial development South African Journal of Botany 116 164 167 10.1016/j.sajb.2018.03.017 Search in Google Scholar

Lukić, N., Kukavica, B., Davidović-Plavšić, B., Hasanagić, D., and Walter, J. (2020). Plant stress memory is linked to high levels of anti-oxidative enzymes over several weeks. Environmental and Experimental Botany, 178, 104166, doi: 10.1016/j.envexpbot.2020.104166. LukićN. KukavicaB. Davidović-PlavšićB. HasanagićD. WalterJ. 2020 Plant stress memory is linked to high levels of anti-oxidative enzymes over several weeks Environmental and Experimental Botany 178 104166, 10.1016/j.envexpbot.2020.104166 Open DOISearch in Google Scholar

Łyczko, J., Jałoszyński, K., Surma, M., Masztalerz, K., and Szumny, A. (2019). HS-SPME analysis of true lavender (Lavandula angustifolia Mill.) leaves treated by various drying methods. Molecules, 24(4), 764, doi: 10.3390/molecules24040764. ŁyczkoJ. JałoszyńskiK. SurmaM. MasztalerzK. SzumnyA. 2019 HS-SPME analysis of true lavender (Lavandula angustifolia Mill.) leaves treated by various drying methods Molecules 24 4 764 10.3390/molecules24040764 641297830791551 Open DOISearch in Google Scholar

Mahajan, M., Kuiry, R., and Pal, P. K. (2020). Understanding the consequence of environmental stress for accumulation of secondary metabolites in medicinal and aromatic plants. Journal of Applied Research on Medicinal and Aromatic Plants, 18, 100255, doi: 10.1016/j.jarmap.2020.100255. MahajanM. KuiryR. PalP. K. 2020 Understanding the consequence of environmental stress for accumulation of secondary metabolites in medicinal and aromatic plants Journal of Applied Research on Medicinal and Aromatic Plants 18 100255 10.1016/j.jarmap.2020.100255 Open DOISearch in Google Scholar

Mazid, M., Khan, T. A., and Mohammad, F. (2011). Role of secondary metabolites in defense mechanisms of plants. Biology and Medicine, 3(2), 232–249. MazidM. KhanT. A. MohammadF. 2011 Role of secondary metabolites in defense mechanisms of plants Biology and Medicine 3 2 232 249 Search in Google Scholar

Mohammadi, H., Akhondzadeh, M., and Hatami, M. (2021). Exogenously applied 24-epibrassinolide modulates physiological and biochemical constituents in lavender (Lavandula angustifolia) plants under drought stress conditions. Agriculture & Forestry/Poljoprivreda i Sumarstvo, 67(2), 103–120. MohammadiH. AkhondzadehM. HatamiM. 2021 Exogenously applied 24-epibrassinolide modulates physiological and biochemical constituents in lavender (Lavandula angustifolia) plants under drought stress conditions Agriculture & Forestry/Poljoprivreda i Sumarstvo 67 2 103 120 Search in Google Scholar

Mohammadzadeh, S., and Pirzad, A. (2021). Biochemical responses of mycorrhizal-inoculated Lamiaceae (lavender, rosemary and thyme) plants to drought: A field study. Soil Science and Plant Nutrition, 67(1), 41–49. MohammadzadehS. PirzadA. 2021 Biochemical responses of mycorrhizal-inoculated Lamiaceae (lavender, rosemary and thyme) plants to drought: A field study Soil Science and Plant Nutrition 67 1 41 49 10.1080/00380768.2020.1851144 Search in Google Scholar

Munné-Bosch, S., and Alegre, L. (2013). Cross-stress tolerance and stress “memory” in plants. Environmental and Experimental Botany, 94, 1–88. Munné-BoschS. AlegreL. 2013 Cross-stress tolerance and stress “memory” in plants Environmental and Experimental Botany 94 1 88 10.1016/j.envexpbot.2013.02.002 Search in Google Scholar

Negin, B., and Moshelion, M. (2020). Remember where you came from: ABA insensitivity is epigenetically inherited in mesophyll, but not seeds. Plant Science, 295, 110455, doi: 10.1016/j.plantsci.2020.110455. NeginB. MoshelionM. 2020 Remember where you came from: ABA insensitivity is epigenetically inherited in mesophyll, but not seeds Plant Science 295 110455, 10.1016/j.plantsci.2020.110455 32534619 Open DOISearch in Google Scholar

Nosalewicz, A., Siecińska, J., Śmiech, M., Nosalewicz, M., Wiącek, D., Pecio, A., and Wach, D. (2016). Transgenerational effects of temporal drought stress on spring barley morphology and functioning. Environmental and Experimental Botany, 131, 120–127. NosalewiczA. SiecińskaJ. ŚmiechM. NosalewiczM. WiącekD. PecioA. WachD. 2016 Transgenerational effects of temporal drought stress on spring barley morphology and functioning Environmental and Experimental Botany 131 120 127 10.1016/j.envexpbot.2016.07.006 Search in Google Scholar

Pastor, V., Luna, E., Mauch-Mani, B., Ton, J., and Flors, V. (2013). Primed plants do not forget. Environmental and Experimental Botany, 94, 46–56. PastorV. LunaE. Mauch-ManiB. TonJ. FlorsV. 2013 Primed plants do not forget Environmental and Experimental Botany 94 46 56 10.1016/j.envexpbot.2012.02.013 Search in Google Scholar

Pintó-Marijuan, M., Cotado, A., Fleta-Soriano, E., and Munné-Bosch, S. (2017). Drought stress memory in the photosynthetic mechanisms of an invasive CAM species, Aptenia cordifolia. Photosynthesis Research, 131(3), 241–253. Pintó-MarijuanM. CotadoA. Fleta-SorianoE. Munné-BoschS. 2017 Drought stress memory in the photosynthetic mechanisms of an invasive CAM species, Aptenia cordifolia Photosynthesis Research 131 3 241 253 10.1007/s11120-016-0313-327757688 Search in Google Scholar

Ramos, M. C. (2001). Rainfall distribution patterns and their change over time in a Mediterranean area. Theoretical and Applied Climatology, 69(3), 163–170. RamosM. C. 2001 Rainfall distribution patterns and their change over time in a Mediterranean area Theoretical and Applied Climatology 69 3 163 170 10.1007/s007040170022 Search in Google Scholar

Rennenberg, H., Loreto, F., Polle, A., Brilli, F., Fares, S., Beniwal, R. S., and Gessler, A. J. P. B. (2006). Physiological responses of forest trees to heat and drought. Plant Biology, 8(5), 556–571. RennenbergH. LoretoF. PolleA. BrilliF. FaresS. BeniwalR. S. GesslerA. J. P. B. 2006 Physiological responses of forest trees to heat and drought Plant Biology 8 5 556 571 10.1055/s-2006-92408416773557 Search in Google Scholar

Rodríguez-Gamir, J., Xue, J., Clearwater, M. J., Meason, D. F., Clinton, P. W., and Domec, J. C. (2019). Aquaporin regulation in roots controls plant hydraulic conductance, stomatal conductance, and leaf water potential in Pinus radiata under water stress. Plant, Cell & Environment, 42(2), 717–729. Rodríguez-GamirJ. XueJ. ClearwaterM. J. MeasonD. F. ClintonP. W. DomecJ. C. 2019 Aquaporin regulation in roots controls plant hydraulic conductance, stomatal conductance, and leaf water potential in Pinus radiata under water stress Plant, Cell & Environment 42 2 717 729 10.1111/pce.1346030307040 Search in Google Scholar

Salehi, B., Mnayer, D., Özçelik, B., Altin, G., Kasapoğlu, K. N., Daskaya-Dikmen, C., Sharifi-Rad, M., Selamoglu, Z., Acharya, K., Sen, S., Matthews, K. R., Fokou, P. V. T., Sharopov, F., Setzer, W. N., Martorell, M., and Sharifi-Rad, J. (2018). Plants of the genus Lavandula: From farm to pharmacy. Natural Product Communications, 13(10), 1385–1402, doi: 10.1177/1934578×1801301037. SalehiB. MnayerD. ÖzçelikB. AltinG. KasapoğluK. N. Daskaya-DikmenC. Sharifi-RadM. SelamogluZ. AcharyaK. SenS. MatthewsK. R. FokouP. V. T. SharopovF. SetzerW. N. MartorellM. Sharifi-RadJ. 2018 Plants of the genus Lavandula: From farm to pharmacy Natural Product Communications 13 10 1385 1402 10.1177/1934578×1801301037 Open DOISearch in Google Scholar

Sepahvand, T., Etemad, V., Matinizade, M., and Shirvany, A. (2021). Symbiosis of AMF with growth modulation and antioxidant capacity of Caucasian Hackberry (Celtiscaucasica L.) seedlings under drought stress. Central Asian Journal of Environmental Science and Technology Innovation, 2(1), 20–35. SepahvandT. EtemadV. MatinizadeM. ShirvanyA. 2021 Symbiosis of AMF with growth modulation and antioxidant capacity of Caucasian Hackberry (Celtiscaucasica L.) seedlings under drought stress Central Asian Journal of Environmental Science and Technology Innovation 2 1 20 35 Search in Google Scholar

Sharafzadeh, S., and Zare, M. (2011). Effect of drought stress on qualitative and quantitative characteristics of some medicinal plants from Lamiaceae family: A review. Advances in Environmental Biology, 5(8), 2058–2062. SharafzadehS. ZareM. 2011 Effect of drought stress on qualitative and quantitative characteristics of some medicinal plants from Lamiaceae family: A review Advances in Environmental Biology 5 8 2058 2062 Search in Google Scholar

Sun, Y., Wang, C., Chen, H. Y., and Ruan, H. (2020). Response of plants to water stress: A meta-analysis. Frontiers in Plant Science, 11, 978, doi: 10.3389/fpls.2014.00086. SunY. WangC. ChenH. Y. RuanH. 2020 Response of plants to water stress: A meta-analysis Frontiers in Plant Science 11 978 10.3389/fpls.2014.00086 395218924659993 Open DOISearch in Google Scholar

Szekely-Varga, Z., Gonzalez-Orenga, S., Cantor, M., Boscaiu, M., and Vicente, O. (2020b). Antioxidant responses to drought and salinity in Lavandula angustifolia Mill. Notulae Botanicae Horti Agrobotanici Cluj-Napoca, 48(4), 1980–1992. Szekely-VargaZ. Gonzalez-OrengaS. CantorM. BoscaiuM. VicenteO. 2020b Antioxidant responses to drought and salinity in Lavandula angustifolia Mill Notulae Botanicae Horti Agrobotanici Cluj-Napoca 48 4 1980 1992 10.15835/nbha48412150 Search in Google Scholar

Szekely-Varga, Z., González-Orenga, S., Cantor, M., Jucan, D., Boscaiu, M., and Vicente, O. (2020a). Effects of drought and salinity on two commercial varieties of Lavandula angustifolia Mill. Plants, 9(5), 637, doi: 10.3390/plants9050637. Szekely-VargaZ. González-OrengaS. CantorM. JucanD. BoscaiuM. VicenteO. 2020a Effects of drought and salinity on two commercial varieties of Lavandula angustifolia Mill Plants 9 5 637 10.3390/plants9050637 728498632429357 Open DOISearch in Google Scholar

Tabassum, T., Farooq, M., Ahmad, R., Zohaib, A., and Wahid, A. (2017). Seed priming and transgenerational drought memory improves tolerance against salt stress in bread wheat. Plant Physiology and Biochemistry, 118, 362–369. TabassumT. FarooqM. AhmadR. ZohaibA. WahidA. 2017 Seed priming and transgenerational drought memory improves tolerance against salt stress in bread wheat Plant Physiology and Biochemistry 118 362 369 10.1016/j.plaphy.2017.07.00728711787 Search in Google Scholar

Walter, J., Jentsch, A., Beierkuhnlein, C., and Kreyling, J. (2013). Ecological stress memory and cross stress tolerance in plants in the face of climate extremes. Environmental and Experimental Botany, 94, 3–8. WalterJ. JentschA. BeierkuhnleinC. KreylingJ. 2013 Ecological stress memory and cross stress tolerance in plants in the face of climate extremes Environmental and Experimental Botany 94 3 8 10.1016/j.envexpbot.2012.02.009 Search in Google Scholar

Walter, J., Nagy, L., Hein, R., Rascher, U., Beierkuhnlein, C., Willner, E., and Jentsch, A. (2011). Do plants remember drought? Hints towards a drought-memory in grasses. Environmental and Experimental Botany, 71(1), 34–40. WalterJ. NagyL. HeinR. RascherU. BeierkuhnleinC. WillnerE. JentschA. 2011 Do plants remember drought? Hints towards a drought-memory in grasses Environmental and Experimental Botany 71 1 34 40 10.1016/j.envexpbot.2010.10.020 Search in Google Scholar

Weisany, W., Mohammadi, M., Tahir, N. A. R., Aslanian, N., and Omer, D. A. (2021). Changes in growth and nutrient status of maize (Zea mays L.) in response to two zinc sources under drought stress. Journal of Soil Science and Plant Nutrition, 21(1), 3367–3377. WeisanyW. MohammadiM. TahirN. A. R. AslanianN. OmerD. A. 2021 Changes in growth and nutrient status of maize (Zea mays L.) in response to two zinc sources under drought stress Journal of Soil Science and Plant Nutrition 21 1 3367 3377 10.1007/s42729-021-00612-y Search in Google Scholar

Wu, X., Yuan, J., Luo, A., Chen, Y., and Fan, Y. (2016). Drought stress and re-watering increase secondary metabolites and enzyme activity in Dendrobium moniliforme. Industrial Crops and Products, 94, 385–393. WuX. YuanJ. LuoA. ChenY. FanY. 2016 Drought stress and re-watering increase secondary metabolites and enzyme activity in Dendrobium moniliforme Industrial Crops and Products 94 385 393 10.1016/j.indcrop.2016.08.041 Search in Google Scholar

Zhang, H., Zhu, J., Gong, Z., and Zhu, J. K. (2022). A biotic stress responses in plants. Nature Reviews Genetics, 23, 104–119. doi: 10.1038/s41576-021-00413-0. ZhangH. ZhuJ. GongZ. ZhuJ. K. 2022 A biotic stress responses in plants Nature Reviews Genetics 23 104 119 10.1038/s41576-021-00413-0 34561623 Open DOISearch in Google Scholar

Zuzarte, M. R., Dinis, A. M., Cavaleiro, C., Salgueiro, L. R., and Canhoto, J. M. (2010). Trichomes, essential oils and in vitro propagation of Lavandula pedunculata (Lamiaceae). Industrial Crops and Products, 32(3), 580–587. ZuzarteM. R. DinisA. M. CavaleiroC. SalgueiroL. R. CanhotoJ. M. 2010 Trichomes, essential oils and in vitro propagation of Lavandula pedunculata (Lamiaceae) Industrial Crops and Products 32 3 580 587 10.1016/j.indcrop.2010.07.010 Search in Google Scholar

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