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Physiology and Molecular Biology of Stress ... - KHAM PHA MOI

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292<br />

B. Rathinasabapathi <strong>and</strong> R. Kaur<br />

characterization, <strong>and</strong> functional introgression into tobacco-conferring salt tolerance phenotype.<br />

J Biol. Chem. 279, 28539-28552.<br />

Malik, M.K., Slovin, J.P., Hwang, C. <strong>and</strong> Zimmerman, J.L. (1999). Modified expression <strong>of</strong> a carrot<br />

small heat shock protein gene, HSP17.7, results in increased or decreased thermotolerance.<br />

Plant J. 20, 89-99.<br />

Martinoia, E., Massonneau, A. <strong>and</strong> Frangne, N. (2000). Transport processes <strong>of</strong> solutes across the<br />

vacuolar membrane <strong>of</strong> higher plants. Plant Cell Physiol. 41, 1175-1186.<br />

Matsuoka, M., Nomura, M., Agarie, S., Tokutomi, M. <strong>and</strong> Ku, M.S.B. (1998). Evolution <strong>of</strong> C4<br />

photosynthetic genes <strong>and</strong> overexpression <strong>of</strong> maize C4 genes in rice. J. Plant Res. 111, 333-337.<br />

Mayer R.R., Cherry J.H. <strong>and</strong> Rhodes, D. (1990). Effects <strong>of</strong> heat shock on amino acid metabolism <strong>of</strong><br />

cowpea cells. Plant Physiol. 94, 796-810.<br />

Mazliak, P. (1994). Desaturation processes in fatty acid <strong>and</strong> acyl lipid biosynthesis. J. Plant Physiol.<br />

143, 399–406.<br />

McCormac, A.C., Whitelam, G.C., Boylan, M.T., Quail, P.H. <strong>and</strong> Smith, H. (1992). Contrasting<br />

responses <strong>of</strong> etiolated <strong>and</strong> light-adapted seedlings to red: far-red ratio: a comparison <strong>of</strong> wild<br />

type, mutant <strong>and</strong> transgenic plants has revealed differential functions <strong>of</strong> members <strong>of</strong> the<br />

phytochrome family. J. Plant Physiol. 140, 707-714.<br />

McKersie, B.D. (2001). <strong>Stress</strong> tolerance <strong>of</strong> transgenic plants overexpressing superoxide dismutase<br />

(Abstract, Society for Experimental <strong>Biology</strong> Annual Meeting). J. Exptl. Bot. 52 (supplement):<br />

p. 8.<br />

McKersie, B.D., Bowley, S.R., Harjanto, E. <strong>and</strong> Leprince, O. (1996). Water deficit tolerance <strong>and</strong><br />

field performance <strong>of</strong> trangenic alfalfa overexpressing superoxide dismutase. Plant Physiol. 111,<br />

1177-1181.<br />

McKersie, B.D., Chen, Y., De Beus, M., Bowley, S.R., Bowler, C., Inze, D., Halluin, K. <strong>and</strong> Boterman,<br />

J. (1993). Superoxide dismutase enhances tolerance <strong>of</strong> freezing stress in transgenic alfalfa<br />

(Medicago satia L.). Plant Physiol. 103, 1155-1163.<br />

McKersie, B.D., Murnaghan, J. <strong>and</strong> Bowley, S.R. (1997). Manipulating freezing tolerance in transgenic<br />

plants. Acta Physiol. Plant. 19, 485-495.<br />

McKersie, B.D., Bowley, S.R. <strong>and</strong> Jones, K.S. (1999). Winter survival <strong>of</strong> transgenic alfalfa<br />

overexpressing superoxide dismutase. Plant Physiol. 199, 839-847<br />

McNeil, S.D., Nuccio, M.L. <strong>and</strong> Hanson, A.D. (1999). Betaines <strong>and</strong> related osmoprotectants.<br />

Targets for metabolic engineering <strong>of</strong> stress resistance. Plant Physiol. 120, 945-949.<br />

McNeil, S.D., Nuccio, M.L., Ziemak, M.J. <strong>and</strong> Hanson, A.D. (2001). Enhanced synthesis <strong>of</strong> choline<br />

<strong>and</strong> glycine betaine in transgenic tobacco plants that overexpress phosphoethanolomine N-<br />

methyltransferase. Proc. Natl. Acad. Sci. USA 98, 10001-10005.<br />

Mishra, S. K., Tripp, J., Winkelhaus, S., Tschiersch, B., Theres, K., Nover, L. <strong>and</strong> Scharf, K.-D.<br />

(2002). In the complex family <strong>of</strong> heat stress transcription factors, HsfA1 has a unique role as<br />

master regulator <strong>of</strong> thermotolerance in tomato. Gene. Dev. 16, 1555–1567.<br />

Miyagawa, Y., Tamoi, M. <strong>and</strong> Shigeoka, S. (2001). Overexpression <strong>of</strong> a cyanobacterial fructose-I ,6-<br />

sedoheptulose- 1,7-bisphosphatase in tobacco enhances photosynthesis <strong>and</strong> growth. Nature<br />

Biotechnol. 19, 965-969.<br />

Mohanty A., Kathuria H., Ferjani A., Sakamoto A., Mohanty P., Murata N. <strong>and</strong> Tyagi, A.K. (2002).<br />

Transgenics <strong>of</strong> an elite indica rice variety Pusa Basmati 1 harbouring the codA gene are highly<br />

tolerant to salt stress. Theor. Appl. Gen. 106, 51-57.<br />

Morgan, D.C. <strong>and</strong> Smith, H. (1976). Linear relationship between phytochrome photoequilibrium <strong>and</strong><br />

growth in plants under natural radiation. Nature 262, 210–212.<br />

Murakami, T., Matsuba, S., Funatsuki, H., Kawaguchi, K., Saruyama, H., Tanida, M. <strong>and</strong> Sato, Y.<br />

(2004). Over-expression <strong>of</strong> a small heat shock protein, sHSP17.7, confers both heat tolerance<br />

<strong>and</strong> UV-B resistance to rice plants. Mol. Breed. 13, 165–175.<br />

Murata N., Ishizaki-Nishizawa O., Higashi S., Hayashi H., Tasaka Y. <strong>and</strong> Nishida, I. (1992). Genetically<br />

engineered alteration in the chilling sensitivity <strong>of</strong> plants. Nature 356, 710-713.<br />

Murata, N. <strong>and</strong> Tasaka, Y. (1997) Glycerol-3-phosphate acyltransferase in plants. Biochim. Biophys.<br />

Acta 1348, 10–16.

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