Eminent high essential oil yielding and photosynthesis efficient genotype selection across multi-environments in the palmarosa {Cymbopogon martinii (Roxb.) Wats.}
Tài liệu tham khảo
Burdock, 2010, 733
Singh, 2017, Performance evaluation for essential oil yield, quality and trend analysis of different palmarosa (Cymbopogon martinii) varieties for tarai region of uttarakhand, Int. J. Trop. Agric., 35, 171
Singh, 2018, Stable variety selection over locations and recommendations for rose-scented geranium (Pelargonium graveolens L' Herit. ex Aiton.), J. Essent. Oil Res., 30, 32, 10.1080/10412905.2017.1383315
Dubey, 2000, Biotransformation of geranyl acetate to geraniol during palmarosa (Cymbopogon martini, Roxb. Wats. var. motia) inflorescence development, Phytochemistry, 57, 675, 10.1016/S0031-9422(01)00122-4
Nilofer, A.K. Singh, A. Singh, S. Singh, Impact of sowing and harvest times and irrigation regimes on the sennoside content of Cassia angustifolia Vahl. Indus, Crop Prod. 125 (2018) 482–490, doi:10.1016/j.indcrop.2018.09.025.
Paulus, 2013, Content and chemical composition of essential oil of cidró depending on seasonality and harvest time, Hortic. Bras., 31, 203, 10.1590/S0102-05362013000200005
Sgarbossa, 2019, Effect of season and irrigation on the chemical composition of Aloysiatriphylla essential oil, Rev. Ceres, 66, 85, 10.1590/0034-737x201966020002
Srivastava, 2022, Chemical investigation and biological activities of Patchouli (Pogostemon cablin (Blanco) Benth) essential oil. Indus, Crop Prod., 188, 10.1016/j.indcrop.2022.115504
Valmorbide, 2006, Rendimento e composiçãoquímica de óleosessenciais de Mentha piperita L. cultivadae msoluçãonutritiva com different esconcentrações de potássio, Rev. Bras. Plantas Med., 8, 56
Figueiredo, 2008, Factors affecting secondary metabolite production in plants: volatile components and essential oils, Flavour Fragrance J., 23, 213, 10.1002/ffj.1875
Agarwal, 2010, Pharmacognostical and biological studies on Senna & its products: an overview, Int. J. Pharma Bio Sci., 1
Heidarpour, 2013, Changes in content and constituents of essential oil in different plant parts of Lovage (Levisticum officinale Koch. cv. Budakalaszi) cultivated in Iran, J. Essen. Oil. Bear. Plant., 16, 318, 10.1080/0972060X.2013.764187
Mehalaine, 2018, Effect of climatic factors on essential oil accumulation in two Lamiaceae species from Algerian semiarid lands, vols. 57–60
Smitha, 2015, Variations in essential oil yield, geraniol and geranyl acetate contents in palmarosa (Cymbopogon martinii, Roxb. Wats. var. motia) influenced by inflorescence development, Ind. Crop. Prod., 66, 150, 10.1016/j.indcrop.2014.12.062
Bräutigam, 2016, Photorespiration connects C3 and C4 photosynthesis, J. Exp. Bot., 67, 2953, 10.1093/jxb/erw056
Pushnik, 1995, The effect of elevated carbon dioxide on a Sierra-Nevadan dominant species: Pinus ponderosa, J. Biogeogr., 22, 249, 10.2307/2845918
Gupta, 2015, Stable genotype selection in Khus (Veteveria zizanioides L. Nash), J. Herbs, Spices, Med. Plants, 21, 392, 10.1080/10496475.2014.995329
Pozo, 2005, Acclimatory responses of stomatal conductance and photosynthesis to elevated CO2 and temperature in wheat crops grown at varying levels of N supply in a Mediterranean environment, Planet Science, 169, 908, 10.1016/j.plantsci.2005.06.009
Murray, 1994, Effects of elevated CO2 nutrition and climatic warming on bud phenology in Sitka spruce (Picea sitchensis) and their impact on the risk of frost damage, Tree Physiol., 14, 691, 10.1093/treephys/14.7-8-9.691
Duke, 1991
Alexander, 2020, A review of C4 plants in southwest asia: an ecological, geographical and taxonomical analysis of a region with high diversity of C4 eudicots, Front. Plant Sci., 11
Kumar, 2023, Precision agriculture innovation focuses on sustainability using GGE biplot and AMMI analysis to evaluate GE interaction for quality essential oil yield in Eucalyptus citriodora Hook, Biochem. Systemat. Ecol., 107, 10.1016/j.bse.2023.104603
Kumar, 2023, Geraniol-rich aromatic grasses (Cymbopogon spreng) can adapt to the environment by modifying harvest dates over the ecosystems in southern India on the Deccan plateau utilizing participatory management modeling and agronomic practices, Ind. Crop. Prod., 193, 10.1016/j.indcrop.2022.116196
Yizhao, 2016, Grassland carbon sequestration ability in China: a new perspective from terrestrial aridity zones, Rangel. Ecol. Manag., 69, 84, 10.1016/j.rama.2015.09.003
Kempton, 1984, The use of biplots in interpreting variety by environment interactions, J. Agric. Sci., 103, 123, 10.1017/S0021859600043392
Lal, 2017, Registration of a high-yielding khusilal [nor-sesquiterpene (C14) aldehydes] rich variety CIM-Samriddhi of vetiver (Chrysopogon zizanioides (L.) Nash, J. Med. Aromat. Plant Sci., 39, 139
Lal, 2018, Genotypic and morphological appearance of the traits in relation to genetic diversity of essential oil yield in ocimum genotypes grass (Chrysopogon zizanioides roberty), Acta Scient. Agri. (ISSN: 2581-365X) 2, 62
Lal, 2018, Phylogenetic relationships, path and principal component analysis for genetic variability and high oil yielding clone selection in vetiver (Veteveria zizanioides L.) nash, Journal of Plant Genetics and Breeding, 2, 105
Sarkar, 2018, Genetics, inheritance pattern and genotype selection in isabgol(Plantago ovata Forsk), SCIOL. Genet Sci, 1, 68
Joy, 2008, 1
Sharma, 1987, A genetically superior synthetic variety, 'Trishna' of palmarosa developed, Pafai J., 9, 21
Sharma, 1997, Tripta. A superior variety of palmarosa, Pafai J., 18, 17
Sharma, 2005, Improved varieties and genetic research in medicinal and aromatic plants (MAPs), 53
Lal, 2010, High oil yielding variety “CIMAP Harsh” of palmarosa {Cymbopogon martinii Roxb. (Wats.) var. Motia, J. Med. Aromat. Plant Sci., 32, 148
Tyagi, 2005, Improved varieties and genetic research in medicinal and aromatic plants (MAPs), 53
Clevenger, 1928, Apparatus for the determinations of volatile oils, J. Am. Pharmaceut. Assoc., 17, 345
Pragadheesh, 2015, Role of substituents in cyclodextrin derivatives for enantio selective gas chromatographic separation of chiral terpenoids in the essential oils of Mentha spicata, J. Chromatogr. B, 1002, 30, 10.1016/j.jchromb.2015.07.034
Singh, 2014, 253
Yan, 2001, GGE biplot–A Windows application for graphical analysis of multi-environment trial data and other types of two-way data, Agron. J., 93, 1111, 10.2134/agronj2001.9351111x
Yan, 2002, Singular-value partitioning in biplot analysis of multi-environment trial data, Agron. J., 94, 990
Yan, 2006, Biplot analysis of multi-environment trial data: principals and applications, Can. J. Plant Sci., 86, 623, 10.4141/P05-169
Gemechu, 2009, Comparison of two approaches for estimation of genetic variation for two economic traits in faba bean genotypes grown under waterlogged verisols, East Afr. J. Sci., 3, 95
Kumar, 2022, An assessment, prospects, and obstacles of industrially important medicinal crop Indian Senna (Cassia angustifolia Vahl.): a review. Indus, Crop Prod., 187, 1, 10.1016/j.indcrop.2022.115472
Kumar, 2022
Lin, 1986, Stability analysis: where do we stand?, Crop Sci., 26, 894, 10.2135/cropsci1986.0011183X002600050012x
Ceccarelli, 1989, Wide adaptation. How wide?, Euphytica, 40, 197, 10.1007/BF00024512
Yan, 2007, GGE Biplot vs. AMMI analysis of genotype-by-environment data, Crop Sci., 47, 643, 10.2135/cropsci2006.06.0374
Gauch, 2008, Statistical analysis of yield trials by AMMI and GGE: further considerations, Crop Sci., 48, 866, 10.2135/cropsci2007.09.0513
Pareek, 1994, Germplasm collection and evaluation of vetiver, 275
Husain, 1994, Genetic resources of important medicinal and aromatic plants in South Asia, 574
Lal, 2020, Genetics of essential oil yield and their component traits in vetiver genotypes (Chrysopogon zizanioides (L.) Roberty), J. Med. Plants. Studies. Part A., 8, 56
Lal, 2020, On carbon sequestration efficient clones/genotypes selection for high essential oil yield over environments in Khus (Chrysopogon zizanioides (L.) Roberty), Ind. Crop. Prod., 145, 1, 10.1016/j.indcrop.2020.112139
