5,690
Views
156
CrossRef citations to date
0
Altmetric
Original articles

Effect of inoculation with a thermotolerant plant growth promoting Pseudomonas putida strain AKMP7 on growth of wheat (Triticum spp.) under heat stress

, , , &
Pages 239-246 | Received 14 Oct 2010, Accepted 01 Dec 2010, Published online: 24 Jan 2011

References

  • Ait Barka , E , Nowak , J and Clement , C. 2006 . Enhancement of chilling resistance of inoculated grapevine plantlets with a plant growth promoting rhizobacterium; Burkholderia phytofirmans strain Ps Jn . Appl Environ Microbiol. , 72 : 7246 – 7252 .
  • Ali SKZ , Sandhya V , Minakshi Grover , Kishore N , Venkateswar Rao L , Venkateswarlu B. 2009 . Pseudomonas sp. strain AKM-P6 enhances tolerance of sorghum seedlings to elevated temperatures . Biol Fertil Soils . 46 : 45 – 55 .
  • Ashraf , M and Foolad , MR. 2007 . Roles of glycine betaine and proline in improving plant abiotic stress resistance . Environ Exp Bot. , 59 : 206 – 216 .
  • Bano , A and Fatima , M. 2009 . Salt tolerance in Zea mays (L) following inoculation with Rhizobium and Pseudomonas . Biol Fertil Soils. , 45 : 405 – 413 .
  • Barnes , JD , Balaguer , L , Maurigue , E , Elvira , S and Davison , AW. 1992 . A reappraisal of the use of DMSO for the extraction and determination of chlorophyll ‘a’ and ‘b’ in lichens and higher plants . Environ Exp Bot. , 32 : 87 – 99 .
  • Bates , LS , Waldren , RD and Teare , ID. 1973 . Rapid determination of free proline for water stress studies . Plant Soil. , 39 : 205 – 207 .
  • Batts , GR , Morison , JIL , Ellis , RH , Hadley , P and Wheeler , TR. 1997 . Effects of CO2 and temperature on growth and yield of crops of winter wheat over four seasons . Eur J Agron. , 7 : 43 – 52 .
  • Bozzola , JJ and Russell , LD. 1999 . Electron microscopy principles and techniques for biologists , 2nd ed , Sudbury, MA : Jones and Bartlett .
  • Bradford , M. 1976 . A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding . Anal Biochem. , 72 : 248 – 258 .
  • Chen , Z , Cuin , TA , Zhou , M , Twomey , A , Naidu , BP and Shabala , S. 2007 . Compatible solute accumulation and stress-mitigating effects in barley genotypes contrasting in their salt tolerance . J Exp Botany. , 58 : 4245 – 4255 .
  • Chowdhury , SI and Wardlaw , IF. 1978 . The effect of temperature on kernel development in cereals . Aust J Agric Res. , 29 : 205 – 223 .
  • Defreitas , JR and Germida , JJ. 1992 . Growth promotion of winter wheat fluorescent Pseudomonas under field conditions . Soil Biol Biochem. , 24 : 1137 – 1146 .
  • Delauney , AJ and Verma , DPS. 1993 . Proline biosynthesis and osmoregulation in plants . Plant J. , 4 : 215 – 305 .
  • Dell’ Amico , E , Cavalca , L and Andreoni , V. 2008 . Improvement of Brassica napus growth under cadmium stress by cadmium-resistance rhizobacteria . Soil Biol Biochem. , 40 : 74 – 84 .
  • Dhindsa , RS , Plumb-Dhindsa , P and Throne , TA. 1981 . Leaf senescence: correlated with increased levels of membrane permeability and lipid peroxidation and decreased levels of superoxide dismutase and catalase . J Expt Bot. , 32 : 93 – 101 .
  • Dubois , M , Gilles , KA , Hamilton , JK , Rebers , PA and Smith , F. 1956 . Colorimetric method for determination of sugars and related substances . Anal Chem. , 28 : 30 – 35 .
  • Glick , BR. 1995 . The enhancement of plant growth by free living bacteria . Can J Microbiol. , 41 : 109 – 114 .
  • Glick , BR , Liu , C , Ghosh , S and Dumbroff , EB. 1997 . Early development of canola seedlings in the presence of the plant growth promoting rhizobacterium Pseudomonas putida GR12-2 . Soil Biol Biochem. , 29 : 1233 – 1239 .
  • Haldiman , P. 1998 . Low growth temperature induced changes to pigment composition and photosynthesis in Zea mays genotypes differing in chilling sensitivity . Plant Cell Environ. , 21 : 200 – 208 .
  • Han , HS and Lee , KD. 2005 . Plant growth promoting rhizobacteria effect on antioxidant status, photosynthesis, mineral uptake and growth of lettuce under soil salinity . Res J Agric Biol Sci. , 1 : 210 – 215 .
  • Höflich , G and Kühn , G. 1996 . Förderung das Wachstums und der Nährstoffaufnahme bei kurziferen Ö l- und Zwischenfruhten durch inokulierte Rhizospherenmikroorganismen . Zeischrift fü r Pflanzenernährung und Bodenkunde. , 159 : 575 – 578 .
  • Höflich , G , Wiehe , W and Kühn , G. 1994 . Plant growth stimulation with symbiotic and associative rhizosphere microorganisms . Experientia. , 50 : 897 – 905 .
  • Hong , Y , Glick , BR and Pasternak , JJ. 1991 . Plant-microbial interaction under gnotobiotic condition: a scanning microscope study . Curr Microbiol. , 23 : 111 – 114 .
  • Howarth CJ. 2005 . Genetic improvements of tolerance to high temperature . In: M Ashraf , PJC Harris . Abiotic stresses: plant resistance through breeding and molecular approaches . New York : Howarth Press Inc ., p. 277 – 300 .
  • Ibrahim , AMH and Quick , JS. 2001 . Genetic control of high temperature tolerance in wheat as measured by membrane thermal stability . Crop Sci. , 41 : 1405 – 1407 .
  • Javed , M and Arshad , M. 1997 . Growth promotion of two wheat cultivars by plant growth promoting rhizobacteria . Pak J Bot. , 29 : 243 – 248 .
  • Kloepper , JW , Lifshitz , R and Zablotowicz , RM. 1989 . Free-living bacterial inocula for enhancing crop productivity . Trends biotechnol. , 7 : 39 – 43 .
  • Kloepper JW , Zablowicz RM , Tipping B , Lifshitz R. 1991 . Plant growth mediated by bacterial rhizosphere colonizers . In: DL Keister , B Gregan . The rhizosphere and plant growth, 14 BARC Symposium . Dordrecht, , The Netherlands : Kluwer Academic Publishers , p. 315 – 326 .
  • Marcelis , LFM and Hooijdonk , HV. 1999 . Effect of salinity on growth, water use and nutrient use in radish (Raphanus sativus L.) . Plant and Soil. , 215 : 57 – 64 .
  • Marquez , LM , Redman , RS , Rodrigues , RJ and Roosinck , J. 2007 . A virus in a fungus in a plant: three way symbiosis required for thermal tolerance . Science. , 315 : 513 – 515 .
  • Montesinos , E. 2003 . Plant associated microorganisms: a view from the scope of microbiology . Int Microbiol. , 6 : 221 – 223 .
  • Nakano , Y and Asada , K. 1981 . Hydrogen peroxide is scavenged by ascorbate specific peroxides in spinach chloroplast . Plant Cell Physiol. , 22 : 867 – 880 .
  • Nanjo , T , Kobayashi , TM , Yoshida , Y , Kakubari , Y , Yamaguchi-Shinozaki , K and Shinozaki , K. 1999 . Antisense suppression of proline degradation improves tolerance to freezing and salinity in Arabidopsis thaliana . FEBS Lett. , 461 : 205 – 210 .
  • Porter JR. 2005 . Rising temperatures are likely to reduce crop yields . Nature . 174 .
  • Redman RS , Sheehan KB , Stout RG , Rodriguez RJ , Henson JM. 2002 . Thermotolerance generated by plant/fungal symbiosis . Science . 298 : 1581 .
  • Sairam , RK and Tyagi , A. 2004 . Physiology and molecular biology of salinity stress tolerance in plants . Curr Sci. , 86 : 407 – 421 .
  • Samra , JS and Sing , G. 2004 . Heat wave of March 2004: impact on agriculture natural resource management division , New Delhi : Indian council of Agricultural Research .
  • Sandhya , V , Ali , SKZ , Minakshi , G , Gopal , R and Venkateswarlu , B. 2009 . Alleviation of drought stress effects in sunflower seedlings by the exopolysaccharides producing Pseudomonas putida strain GAP-P45 . Biol Fertil Soils. , 46 : 17 – 26 .
  • Schöffl F , Prandl R , Reindl A. 1999 . Molecular responses to heat stress . In: K Shinozaki , K Yamaguchi-Shinozaki . Molecular responses to cold, drought, heat and salt stress in higher plants . Austin, TX : RG Landes , p. 81 – 98 .
  • Seki , M , Kamei , A , Yamaguchi-Shinozaki , K and Shinozaki , K. 2003 . Molecular responses to drought, salinity and forst: common and different paths for plant protection . Curr Opin Biotechnol. , 14 : 194 – 199 .
  • Stainforth , DA , Aina , T , Christensen , C , Collins , M , Faull , N , Frame , DJ , Kettleborough , JA , Knight Martin , SA , Murphy , JM , Piani , C , Sexton , D , Smith , LA , Spicer , RA , Thorpe , AJ and Allen , MR. 2005 . Uncertainty in predictions of the climate response to rising levels of greenhouse gases . Nature. , 433 : 403 – 406 .
  • Sung , DY , Kaplan , F , Lee , KJ and Guy , CL. 2003 . Acquired tolerance to temperature extremes Trends . Plant Sci. , 8 : 179 – 187 .
  • Teranishi , Y , Tanaka , A , Osumi , M and Fukui , S. 1974 . Catalase activity of hydrocarbon utilizing candida yeast . Agric Biol Chem. , 38 : 1213 – 1216 .
  • Timmusk , S and Wagner , EGH. 1999 . The plant growth-promoting rhizobacterium Paenibacillus polymyxa induces changes in Arabidopsis thaliana gene expression: a possible connection between biotic and abiotic stress responses . Mol Plant-Microbe Inter. , 12 : 951 – 959 .
  • Vanaja M , Ramakrishna YS , Rao GGSN , Rao KV , Subba Rao VM. 2007 . Climate change and dry land agriculture . Dryland Ecosystems: Indian Perspective . Jodhpur, , India : Central Arid zone Research Institute (CAZRI) and Arid Forest Research Institute (AFRI) .
  • Wardlaw , IF , Dawson , IA , Munibi , P and Fewster , R. 1989 . The tolerance of wheat to high temperatures during reproductive growth. I. Survey procedures and general response patterns . Aust J Agric Res. , 40 : 1 – 13 .
  • Wheeler , TR , Batts , GR , Ellis , RH , Hadley , P and Morison , JIL. 1996 . Growth and yield of winter wheat (Triticum aestivum) crops in response to CO2 and temperature. J Agri Sci . Cambridge , 127 : 37 – 48 .
  • Wiegand , CL and Cuellar , JA. 1981 . Duration of grain filling and kernel weight of wheat as affected by temperature . Crop Sci. , 21 : 95 – 101 .
  • Zimmer W , Kloos K , Hundeshagen B , Niederau E , Bothe H. 1995 . Auxin biosynthesis and denitrification in plant growth promoting bacteria . In: I Fendrik , M Del Gallo J Vanderleyden , M de Zamaroczy . Azospirillum VI and related microorganisms, genetics-physiology-ecology . NATO ASI series, series G: ecological sciences, vol G37 . Springer , Berlin Heidelberg, New York , p. 121 – 128 .

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.