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

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

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

  • Page 2 and 3: PHYSIOLOGY AND MOLECULAR BIOLOGY OF
  • Page 4 and 5: A C.I.P. Catalogue record for this
  • Page 6 and 7: About the Editors K.V. Madhava Rao
  • Page 8 and 9: LIST OF CONTRIBUTORS K. AKASHI Grad
  • Page 10 and 11: List of Contributors xiii NAVINDER
  • Page 12 and 13: PREFACE Increasing agricultural pro
  • Page 14 and 15: 2 K.V. Madhava Rao Abiotic stresses
  • Page 16 and 17: 4 K.V. Madhava Rao SOME O THE PROMI
  • Page 18 and 19: 6 K.V. Madhava Rao 2. WATER STRESS
  • Page 20 and 21: 8 K.V. Madhava Rao 5. FREEZING STRE
  • Page 22 and 23: 10 K.V. Madhava Rao of these pathwa
  • Page 24 and 25: 12 K.V. Madhava Rao Bray, E.A. (199
  • Page 26 and 27: 14 K.V. Madhava Rao Rao, K.V. Madha
  • Page 28 and 29: 16 A. Yokota, K. Takahara and K. Ak
  • Page 30 and 31: 18 A. Yokota, K. Takahara and K. Ak
  • Page 32 and 33: 20 A. Yokota, K. Takahara and K. Ak
  • Page 34 and 35: 22 A. Yokota, K. Takahara and K. Ak
  • Page 36 and 37: 24 A. Yokota, K. Takahara and K. Ak
  • Page 38 and 39: 26 A. Yokota, K. Takahara and K. Ak
  • Page 40 and 41: 28 A. Yokota, K. Takahara and K. Ak
  • Page 42 and 43: 30 A. Yokota, K. Takahara and K. Ak
  • Page 44 and 45: 32 A. Yokota, K. Takahara and K. Ak
  • Page 46 and 47: 34 A. Yokota, K. Takahara and K. Ak
  • Page 48 and 49: 36 A. Yokota, K. Takahara and K. Ak
  • Page 50 and 51: 38 A. Yokota, K. Takahara and K. Ak
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    41 CHAPTER 3 SALT STRESS ZORA DAJIC

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    Salt Stress 43 activities (mainly i

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    Salt Stress 45 In summary, mechanis

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    Salt Stress 47 tolerance research i

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    Salt Stress 49 need to rely on sodi

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    Salt Stress 51 (Echeverria, 2000).

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    Salt Stress 53 Therefore, the capac

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    Salt Stress 55 Reduced plant growth

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    Salt Stress 57 Table 3. Salt tolera

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    Salt Stress 59 6.2. Nitrogen Fixati

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    Salt Stress 61 A significant number

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    Salt Stress 63 macromolecules, irre

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    Salt Stress 65 8.2. Ion Homeostasis

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    Salt Stress 67 1997), is speculated

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    Salt Stress 69 together with the At

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    Salt Stress 71 important role in si

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    Salt Stress 73 Figure 5. Determinan

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    Salt Stress 75 9.1.Transgenic Plant

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    Salt Stress 77 tolerance from halop

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    Salt Stress 79 sponse and yield (Su

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    Salt Stress 81 Table 5. Possible ut

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    Salt Stress 83 monitored with fluor

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    Salt Stress 85 Func. Plant Biol. 29

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    Salt Stress 87 Dajic, Z., Stevanovi

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    Salt Stress 89 Gouia, H., Ghorbal,

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    Salt Stress 91 Larcher, W. (1995).

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    Salt Stress 93 Munns, R. and James,

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    Salt Stress 95 Rausell, A., Kanhono

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    Salt Stress 97 durum wheat crops gr

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    Salt Stress 99 Yoshida, K. (2002).

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    102 T.D. Sharkey and S.M. Schrader

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    104 T.D. Sharkey and S.M. Schrader

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    106 T.D. Sharkey and S.M. Schrader

  • Page 118 and 119:

    108 T.D. Sharkey and S.M. Schrader

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    110 T.D. Sharkey and S.M. Schrader

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    112 T.D. Sharkey and S.M. Schrader

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    114 T.D. Sharkey and S.M. Schrader

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    116 T.D. Sharkey and S.M. Schrader

  • Page 128 and 129:

    118 T.D. Sharkey and S.M. Schrader

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    120 T.D. Sharkey and S.M. Schrader

  • Page 132 and 133:

    122 T.D. Sharkey and S.M. Schrader

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    124 T.D. Sharkey and S.M. Schrader

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    126 T.D. Sharkey and S.M. Schrader

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    128 T.D. Sharkey and S.M. Schrader

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    131 CHAPTER 5 FREEZING STRESS: SYST

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    Freezing Stress 133 Whereas, in the

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    Freezing Stress 135 genes at the tr

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    Freezing Stress 137 with physiologi

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    Freezing Stress 139 (1997). However

  • Page 150 and 151:

    Freezing Stress 141 (Barnett et al.

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    Freezing Stress 143 (dehydrin) prot

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    Freezing Stress 145 in cytosolic Ca

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    Freezing Stress 147 Phospholiphase

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    Freezing Stress 149 Accumulation of

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    Freezing Stress 151 Ideker, T., Gal

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    Freezing Stress 153 ellin acid on f

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    Freezing Stress 155 Yoshida, S. and

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    158 A.R. Reddy and A.S. Raghavendra

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    160 A.R. Reddy and A.S. Raghavendra

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    162 A.R. Reddy and A.S. Raghavendra

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    164 A.R. Reddy and A.S. Raghavendra

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    166 A.R. Reddy and A.S. Raghavendra

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    168 A.R. Reddy and A.S. Raghavendra

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    170 A.R. Reddy and A.S. Raghavendra

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    172 A.R. Reddy and A.S. Raghavendra

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    174 A.R. Reddy and A.S. Raghavendra

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    176 A.R. Reddy and A.S. Raghavendra

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    178 A.R. Reddy and A.S. Raghavendra

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    180 A.R. Reddy and A.S. Raghavendra

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    182 A.R. Reddy and A.S. Raghavendra

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    184 A.R. Reddy and A.S. Raghavendra

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    186 A.R. Reddy and A.S. Raghavendra

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    188 K. Janardhan Reddy constitution

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    190 K. Janardhan Reddy World nitrog

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    192 K. Janardhan Reddy nitrogen def

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    194 K. Janardhan Reddy endoplasmic

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    196 K. Janardhan Reddy drought cond

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    198 K. Janardhan Reddy Manganese-de

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    200 K. Janardhan Reddy zinc deficie

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    202 K. Janardhan Reddy Table 12 . E

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    204 K. Janardhan Reddy Table 14. Ef

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    206 K. Janardhan Reddy Table 15. Th

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    208 K. Janardhan Reddy Table 17. Co

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    210 K. Janardhan Reddy 18. MOLECULA

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    212 K. Janardhan Reddy Bush, D.S.,

  • Page 222 and 223:

    214 K. Janardhan Reddy and Cobbett,

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    216 K. Janardhan Reddy 143, 109-111

  • Page 226 and 227:

    219 CHAPTER 8 HEAVY METAL STRESS KS

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    Heavy Metal Stress 221 porter) and

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    Heavy Metal Stress 223 Figure 1. Su

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    Heavy Metal Stress 225 is enzymatic

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    Heavy Metal Stress 227 BjPCS1 was e

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    Heavy Metal Stress 229 following: (

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    Heavy Metal Stress 231 a precursor

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    Heavy Metal Stress 233 notype. Incr

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    Table 1. Proposed specificity and l

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    Heavy Metal Stress 237 4.2. Chapero

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    Heavy Metal Stress 239 of prokaryot

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    Heavy Metal Stress 241 5. HYPERACCU

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    Table 2. Genes introduced into plan

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    Heavy Metal Stress 245 7. CONCLUSIO

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    Heavy Metal Stress 247 controlled b

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    Heavy Metal Stress 249 Kägi, J.H.R

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    Heavy Metal Stress 251 Murphy, A.,

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    Heavy Metal Stress 253 through xyle

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    255 CHAPTER 9 METABOLIC ENGINEERING

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    Metabolic Engineering for Stress To

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    Metabolic Engineering for Stress To

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    Metabolic Engineering for Stress To

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    Metabolic Engineering for Stress To

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    Metabolic Engineering for Stress To

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    Metabolic Engineering for Stress To

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    Metabolic Engineering for Stress To

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    Metabolic Engineering for Stress To

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    Metabolic Engineering for Stress To

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    Metabolic Engineering for Stress To

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    Metabolic Engineering for Stress To

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    Metabolic Engineering for Stress To

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    Metabolic Engineering for Stress To

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    Metabolic Engineering for Stress To

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    Metabolic Engineering for Stress To

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    Metabolic Engineering for Stress To

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    Metabolic Engineering for Stress To

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    Metabolic Engineering for Stress To

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    Metabolic Engineering for Stress To

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    Metabolic Engineering for Stress To

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    Metabolic Engineering for Stress To

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    Metabolic Engineering for Stress To

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    302 A.K. Tyagi, S. Vij and N. Saini

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    304 A.K. Tyagi, S. Vij and N. Saini

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    306 A.K. Tyagi, S. Vij and N. Saini

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    308 A.K. Tyagi, S. Vij and N. Saini

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    310 A.K. Tyagi, S. Vij and N. Saini

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    312 A.K. Tyagi, S. Vij and N. Saini

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    314 A.K. Tyagi, S. Vij and N. Saini

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    316 A.K. Tyagi, S. Vij and N. Saini

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    318 A.K. Tyagi, S. Vij and N. Saini

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    Table 3. Continued... Source Resour

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    322 A.K. Tyagi, S. Vij and N. Saini

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    324 A.K. Tyagi, S. Vij and N. Saini

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    326 A.K. Tyagi, S. Vij and N. Saini

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    328 A.K. Tyagi, S. Vij and N. Saini

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    330 A.K. Tyagi, S. Vij and N. Saini

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    332 A.K. Tyagi, S. Vij and N. Saini

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    334 A.K. Tyagi, S. Vij and N. Saini

  • Page 342 and 343:

    336 Index Auxins, 146 Avena sativa

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    338 Expressed sequence tags (ESTs),

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    340 Index Magnesium, 195 Mairiena s

  • Page 348 and 349:

    342 Index Processes less sensitive

  • Page 350 and 351:

    344 Index Sunflecks, 104 Sunflower,

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