African Journal of
Agricultural Research

  • Abbreviation: Afr. J. Agric. Res.
  • Language: English
  • ISSN: 1991-637X
  • DOI: 10.5897/AJAR
  • Start Year: 2006
  • Published Articles: 6865

Full Length Research Paper

Growth of Khaya senegalensis plant under water deficit

Fábio Santos Matos*
  • Fábio Santos Matos*
  • State University of Goiás, Campus Ipameri, GO Highway 330, km 241, Beltway Zip code: 75780-000, Brazil.
  • Google Scholar
Patrícia Souza da Silveira
  • Patrícia Souza da Silveira
  • State University of Goiás, Campus Ipameri, GO Highway 330, km 241, Beltway Zip code: 75780-000, Brazil.
  • Google Scholar
Vitor Corrêa de Mattos Barretto
  • Vitor Corrêa de Mattos Barretto
  • State University of Goiás, Campus Ipameri, GO Highway 330, km 241, Beltway Zip code: 75780-000, Brazil.
  • Google Scholar
Igor Alberto Silvestre Freitas
  • Igor Alberto Silvestre Freitas
  • State University of Goiás, Campus Ipameri, GO Highway 330, km 241, Beltway Zip code: 75780-000, Brazil.
  • Google Scholar
Matheus da Silva Araujo
  • Matheus da Silva Araujo
  • State University of Goiás, Campus Ipameri, GO Highway 330, km 241, Beltway Zip code: 75780-000, Brazil.
  • Google Scholar
José Eduardo Dias Calixto Junior
  • José Eduardo Dias Calixto Junior
  • State University of Goiás, Campus Ipameri, GO Highway 330, km 241, Beltway Zip code: 75780-000, Brazil.
  • Google Scholar
Jovan Martins Rios
  • Jovan Martins Rios
  • State University of Goiás, Campus Ipameri, GO Highway 330, km 241, Beltway Zip code: 75780-000, Brazil.
  • Google Scholar


  •  Received: 19 February 2015
  •  Accepted: 17 March 2016
  •  Published: 05 May 2016

References

Albuquerque MPF, Moraes FKC, Santos RIN, De Castro GLS, Ramos EMLS, Pinheiro HA (2013). Ecofisiologia de plantas jovens de mogno africano submetidas a déficit hídrico e reidratação. Pesq. Agropec. Bras. Bras. 48(1):9-16.
Crossref

 

Allen C, Macalady A, Chenchouni H, Bacheletd D, Mc Dowelle N, Vennetierf M, Kitzbergerg T, Riglingh A, Breshearsi DD, Hoggj EH(Ted), Gonzalezk P, Fenshaml R, Zhangm Z, Castron J, Demidovao N, Limp J-H, Allardq G, Runningr SW, Semercis A, Cobbt N (2010). A global overview of drought and heat-induced tree mortality reveals emerging climate change risks for forests. For. Ecol. Manage. 259:660-684.
Crossref

 

Allen RG, Pruit WO, Wright JL, Howell TA, Ventura F, Snyder R, Itenfisu D, Steduto P, Berengena J, Yrisarry JB, Smith M, Pereira LS, Raes D, Perrier A, Alves I, Walter I, Elliott R (2006). A recommendation on standardized surface resistance for hourly calculation of reference ETo by the FAO56 Penman-Monteith method. Agric. Water Manage. Amsterdam 81(1):1-22.
Crossref

 

Associação brasileira de produtores de florestas plantadas (ABRAF) (2013). 

 

Cavatte PC, Oliveira AAG, Morais LE, Martins SCV, Sanglard LMVP, Damatta FM (2012). Could shading reduce the negative impacts of drought on coffee? A morphophysiological analysis. Physiol. Plantarum Copenhagen 144(2):111–122.
Crossref

 

Ferreira DF (2011). Sisvar: a computerstatisticalanalysis system. Ciência e Agrotecnol. Lavras 35(6):1039-1042.

 

Ferreira SM, Petrauski C, Marques GM, Silva ML, Cordeiro AS, Soares NS (2012). Competitividade do Brasil no mercado internacional de Madeira Serrada. Cerne 18(1):99-104. 

View

 

Gonçalves JFC, Silva CEM, Guimarães DG (2009). Fotossíntese e potencial hídrico foliar de plantas jovens de andiroba submetidas à deficiência hídrica e à reidratação. Pesq. Agropec. Bras. 44(1):8-14.
Crossref

 

Hommel R, Siegwolf R, Saurer M, Farquhar GD, Kayler Z, Ferrio JP, Gessler A (2014). Drought response of mesophyll conductance in forest understory species – impacts on water-use efficiency and interactions with leaf water movement. Physiol. Plantarum 152:98-114.
Crossref

 

Instituto Brasileiro de Geografia e Estatística (IBGE) Comunicação Social (2014). 

View

 

Kozlowski TT, Pallardy SG (2002). Acclimation and adaptive responses of woody plants to environmental stresses. Botanical Rev. 68(2):270-334.
Crossref

 

Ky-Dembele C, Bayala J, Savadogo P, Tigabu M, Odén PC, Boussim IJ (2010). Comparison of growth responses of Khaya senegalensis seedlings and stecklings to four irrigation regimes. Silva Fennica 44(5):787-798.
Crossref

 

Lima APB, Lobato AKS, Oliveira Neto CF, Almeida CM, Gouvêa DDS, Marques LC, Cunha RLM, Costa RCL (2007). Transpiração e condutância estomática em folhas de mudas de Mogno submetidas ao estresse hídrico e à reidratação. Rev. Bras. Bioci. Porto Alegre 5:933-935.

 

Luyssaert S, Ciais P, Piao SL, Schulze ED, Jung M, Zaehle S, Schelhaas MJ, Reichstein M, Churkina MG, Papale D, Abril G, Beer C, Grace J, Loustau D, Matteucci G, Magnani F, Nabuurs GJ, Verbeeck H, Sulkava M, VanDer Werf GR, Janssens IA (2010). The European carbon balance. Part 3: forests. Glob. Change Biol. 16:1429-1450.
Crossref

 

Matos FS, Moreira CV, Missio RF, Dias LAS (2009). Caracterização fisiológica de mudas de Jatropha curcas L. produzidas em diferentes níveis de irradiância. Rev. Colombiana Ciênc. Hortíc. 3:126-134.

 

Matos FS, Torres Jr HD, Rosa VR, Santos PGF, Borges LFO, Ribeiro RP, Neves TG, Cruvinel CKL (2014). Estratégia morfofisiológica de tolerância ao déficit hídrico de mudas de pinhão manso. Magistra, Cruz das Almas 26 (1):19-27.

 

Nikiema A, Pasternak D (2008). Khaya senegalensis (Desr.) A. Juss. In: Louppe, D, Oteng-Amoako, AA, Brink, M. (eds.). Plant resources of tropical Africa. v. 7. PROTA Foundation, Wageningen pp. 339-344.

 

Okali DUU, Dodoo G (1973). Seedling growth and transpiration of two west african mahogany species in relation to water stress in the root medium. J. Ecol. 61(2):421-438.
Crossref

 

Pedó T, Aumonde TZ, Lopes NF, Villela FA, Mauch CR (2013). Análise comparativa de crescimento entre genótipos de pimenta cultivados em casa de vegetação. Biosci. J. 29(1):125-131.

 

Pinheiro AL, Couto L, Pinheiro DT, Brunetta JMFC (2011). Ecologia, silvicultura e tecnologia de utilização dos mognos africanos (Khaya spp.). Viçosa: Soc. Bras. Agrossilvic. P 102.

 

Rose L, Leuschner C, Kockemann B, Buschmann H (2009). Are marginal beech (Fagussyl vatica L.) provenances a source for drought tolerant ecotypes? Eur. J. For. Res. 128:335-343.
Crossref

 

Sambatti J, Caylor KK (2007). When is breeding for drought tolerance optimal if drought is random?". New Phytologist, 175(1):70-80.
Crossref

 

Taeger S, Zang C, Liesebach M, Schneck V, Menzel A (2013). Impact of climate and drought events on the growth of Scots pine (Pinussylvestris L.) provenances. For. Ecol. Manage. Netherlands 307:30-42.
Crossref

 

Taiz L, Zeigher E (2013). Fisiologia vegetal. Porto Alegre: Artmed p. 954.

 

Wellburn AR (1994). The spectral determination of chlorophylls a and b, as well as total carotenoids, using various solvents with spectrophotometers of different resolution. J. Plant Physiol. 144(3):307-313.
Crossref

 

Worbes M, Blanchart S, Fichtler E (2013). Relations between water balance, wood traits and phenological behavior of tree species from a tropical dry forest in Costa Rica – a multifactorial study. Tree Physiol. Victoria 33:527-536.
Crossref

 

Zang C, Meier CH, Dittmar C, Rotche A, Menzel A (2014). Patterns of drought tolerance in major European temperature forest trees: Climatic drivers and levels of variability. Glob. Change Biol. 20:3767-3779.
Crossref