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Effect of water stress on the photosynthetic apparatus of plants and the protective role of cytokinins: A review

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Abstract

Characteristics of photosynthetic apparatus (the pool of pigments and proteins; the activity of photosystems; the intensities of in vivo photoassimilation of carbon dioxide and in vitro activity of enzymes of carbon metabolism; leaf structure; chloroplast structure), undergoing changes under the conditions of water deficiency, have been reviewed. The protective role of cytokinins is due to their regulatory effects on the renewal of disrupted cellular structures, the condition of the stomata, and de novo synthesis and activation of proteins that are required for increasing plant resistance to water stress.

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REFERENCES

  1. Baraboi, V.A., Brekhman, I.I., Golotin, V.G., and Kudryashev, Yu.B., Perikisnoe okislenie i stress (Peroxidation and Stress), St. Petersburg: Nauka, 1992.

    Google Scholar 

  2. Chirkova, T.V., Fiziologicheskie osnovy ustoichiosti rastenii (Physiological Bases of Resistance of Plants), St. Petersburg: Izd. S.-Petersburg. Univ., 2002.

    Google Scholar 

  3. Vorob’eva, L.I., Prikl. Biokhim. Mikrobiol., 2004, vol. 40, no.3, pp. 261–269.

    Google Scholar 

  4. Selie, G., Na urovne tselogo organizma (On the Whole-Body Level), Moscow: Mir, 1972.

    Google Scholar 

  5. Agricultural Ecosystem Effects on Trace Gases and Global Climate Change, Harper, L. A., Moster, A.R., Duxbury, J.M., and Rolton, D.E., Eds., Madison: Amer. Soc. Agron., 1993.

    Google Scholar 

  6. Deaton, M.L. and Winebrake, J.J., Dinamic Modeling of Environmental Systems, New York: Springer, 2000.

    Google Scholar 

  7. Shmat’ko, I.G., Yuzbekov, A.K., Shvedova, O.E., and Latashenko, O.P., Fiziol. Biokh. Kul’t. Rast., 1993, vol. 25, no.2, pp. 151–158.

    Google Scholar 

  8. Synkova, H. and Rulcova, J., Biol. Plant., 2000, vol. 43, no.3, pp. 321–328.

    Google Scholar 

  9. Yordanov, I., Velikova, V., and Tsonev, T., Photosyntetica, 2000, vol. 38, no.1, pp. 171–186.

    Google Scholar 

  10. Kramer, P.J., Water Relations in Plants, New York: Academic, 1983.

    Google Scholar 

  11. Sestak, Z. and Pospisilova, J., Photobiochem. Photobiophys., 1986, vol. 12, nos.1–2, pp. 163–172.

    Google Scholar 

  12. Muromtsev, G.S., Chkannikov, D.I., Kulaeva, O.N., and Gamburg, K.Z., Osnovy khimicheskoi regulyatsii rosta i productivnosti rastenii (Chemical Regulation of Plant Growth and Productivity), Moscow: Agropromizdat, 1987.

    Google Scholar 

  13. Muzafarov, E.N., Kreslavskii, V.D., and Nazarova, N.G., Svetovaya i gormonal’naya regulyatsiya fotosinteza i rosta rastenii (Light and Hormonal Regulation of Photosynthesis and Growth of Plants) Kefeli, V.I., Ed., Pushchino: ONTI PNTs RAN, 1995.

    Google Scholar 

  14. Chernyad’ev, I.I., Prikl. Biokhim. Mikrobiol., 1997, vol. 33, no.1, pp. 5–17.

    Google Scholar 

  15. Chernyad’ev, I.I., Prikl. Biokhim. Mikrobiol., 2000, vol. 36, no.6, pp. 611–625.

    Google Scholar 

  16. Nishio, N., Sun, J., and Vogelmann, T.C., Plant Cell, 1993, vol. 5, no.4, pp. 553–559.

    Article  CAS  PubMed  Google Scholar 

  17. Tarchevskii, I.A., Metabolizm rastenii pri stresse. Izbrannye trudy (Plant Metabolism in Stress. Selected Transactions), Grechkin, A.N., Ed., Kazan: Fen, 2001.

    Google Scholar 

  18. Kirichenko, E. and Chernyad’ev, I.I., Photosynthesis: from Light to Biosphere. Proc. X Intern. Photosynthesis Congr., Mathis, P., Ed., Montpelier: Academic, 1995, vol. 4, pp. 925–928.

    Google Scholar 

  19. Kirichenko, E.B. and Chernyad’ev, I.I., Prikl. Biokhim. Mikrobiol., 1996, vol. 32, no.3, pp. 346–351.

    Google Scholar 

  20. Chernyad’ev, I.I. and Monakhova, O.F., Prikl. Biokhim. Mikrobiol., 2003, vol. 39, no.5, pp. 593–601.

    Google Scholar 

  21. Andrianova, Yu.E. and Tarchevskii, I.A., Khlorofill i produktivnost’ rastenii (Chlorophyll and Productivity of Plants), Moscow: Nauka, 2000.

    Google Scholar 

  22. Kabanova, S.N., Kabashnikova, L.F., Serduchenko, E.V., Kalituho, L.N., and Chaika, M.T., Photosynthetica, 2000, vol. 38, no.3, pp. 455–463.

    Google Scholar 

  23. Laisk, A.Kh., Rasulov, V.G., and Loretto, F., Fiziol. Rast. (Moscow)1998, vol. 45, no.4, pp. 489–499.

    Google Scholar 

  24. Lindahl, M., Yang, D.H., and Anderson, B., Eur. J. Biohem., 1995, vol. 231, no.4, pp. 503–509.

    Google Scholar 

  25. Bukhov, N.G. and Dzhibladze, T.G., Fiziol. Rast. (Moscow) 2002, vol. 49, no.1, pp. 371–375.

    Google Scholar 

  26. Voronin, P.Yu., Ivanova, L.A., Ronzhina, D.A., Ivanov, L.A., Anenkhonov, O.A., Blek, K.K., Gunin, P.D., and P’yankov, V.I., Fiziol. Rast. (Moscow)2003, vol. 50, no.5, pp. 680–687.

    Google Scholar 

  27. Sakariiavo, O.S., Assimilation of Inorganic Nitrogen in Water Shortage in Different Cultivars of Spring Wheat, Extended Abstract of Cand. Sci. (Biol.) Dissertation, Moscow: Ros. Univ. Druzhby Narodov, 2001.

    Google Scholar 

  28. Korneev, D.Yu., Nizhnik, T.P., Grigoryuk, I.A., and Kochubei, S.M., Fiziol. Biokh. Kul’t. Rast., 2002, vol. 34, no.1, pp. 3–10.

    Google Scholar 

  29. Mikhal’skii, N.F. and Grigoryuk, I.A., Fiziol. Biokh. Kul’t. Rast., 2002, vol. 34, no.6, pp. 529–534.

    Google Scholar 

  30. Shmat’ko, I.G., Slukhai, S.I., Shevchenko, N.N., Grigoryuk, I.A., Shvedova, O.E., Tkachuk, E.S., and Petrenko, N.I., Vodnyi rezhim rastenii v svyazi s deistviem faktorov vneshnei sredy (Water Regime of Plants with Respect to the Effect of Environmental Factors), Shmat’ko, I.G, Ed., Kiev: Naukova dumka, 1983.

    Google Scholar 

  31. Castrillo, M., Fernandes, D., Calcagno, A.M., Trujillo, I., and Guenni, L., Photosynthetica, 2001, vol. 39, no.2, pp. 221–226.

    Google Scholar 

  32. Kulaeva, O.N., in Entsiklopediya “Sovremennoe estestvoznanie: Obshchaya biologiya” (Modern Natural History: General Biology. Encyclopedia), Moscow: Magistrpress, 2000, vol. 2, pp. 271–279.

    Google Scholar 

  33. Chernyad’ev, I.I. and Monakhova, O.F., Prikl. Biokhim. Mikrobiol., 1996, vol. 32, no.5, pp. 533–541.

    Google Scholar 

  34. Tarchevskii, I.A., Signal’nye sistemy kletok rastenii (Signal Systems of Plant Cells), Grechkin, A.N., Ed., Moscow: Nauka, 2002.

    Google Scholar 

  35. Viktorova, L.V. and Maksyutova, N.I., in Fiziologiya rastenii — nauka III tysyacheletiya. Materialy mezhd. konf. (Plant Physiology is a Science of III Millennium. Proc. Int. Conf.), Moscow: Nauka, 1999, vol. 1, pp. 335–336.

    Google Scholar 

  36. Tena, G. and Renaudin, J.P., Plant J., 1998, vol. 16, no.1, pp. 173–182.

    Google Scholar 

  37. Popova, L.P., Photosynthetica, 1989, vol. 23, no.3, pp. 300–305.

    Google Scholar 

  38. Vapaavuori, E.M., J. Exp. Bot., 1986, vol. 37, no.174, pp. 89–98.

    Google Scholar 

  39. Borland, A.M., Tesci, L.I., Leegood, R.C., and Walker, R.P., Planta, 1998, vol. 205, no.2, pp. 342–351.

    Google Scholar 

  40. Karapetyan, N.V., Usp. Biol. Khim., 2001, vol. 41, pp. 39–76.

    Google Scholar 

  41. Maevskaya, S.N., Egorova, E.A., and Bukhov, N.G., Fiziol. Rast. (Moscow), 2003, vol. 50, no.5, pp. 675–679.

    Google Scholar 

  42. Heber, U., Bukhov, N.G., Neimanus, S., and Kobayashi, Y., Plant Cell Physiol., 1995, vol. 36, no.6, pp. 1639–1647.

    Google Scholar 

  43. Egorova, E.A., Bukhov, N.G., Kheber, U., Samson, G., and Karpant’e, R., Fiziol. Rast. (Moscow), 2003, vol. 50, no.3, pp. 431–440.

    Google Scholar 

  44. Melis, A., Biochim. Biophys. Acta, 1991, vol. 1058, no.2, pp. 87–106.

    Google Scholar 

  45. Giardi, M.T., Cona, A., and Kucera, T., Planta, 1996, vol. 199, no.2, pp. 118–125.

    Google Scholar 

  46. Aro, E.-M., Virgini, I., and Anderson, B., Biochim. Biophys. Acta, 1993, vol. 1143, no.2, pp. 113–134.

    Google Scholar 

  47. Shadchina, T.M., Sytnik, S.K., and Yarovaya, A.S., Fiziol. Biokh. Kul’t. Rast., 2003, vol. 35, no.5, pp. 428–433.

    Google Scholar 

  48. Epson, D., Dreyer, E., and Breda, N., Plant Cell Environ., 1992, vol. 15, pp. 809–820.

    Google Scholar 

  49. Liu, M.Z., Jiang, G.M., Li, Y.G., Gao, H.X., and Ding, L., Photosynthetica, 2003, vol. 41, no.3, pp. 393–398.

    Google Scholar 

  50. Pronina, N.A., Allaverdiev, S.I., Kupriyanova, E.V., Klyachko-Gurvich, G.L., and Klimov, V.V., Fiziol. Rastenii, 2002, vol. 49, no.3, pp. 341–349.

    Google Scholar 

  51. Klimov, V.V., Hulsebosch, R., Allakhverdiev, S.I., Winsensjusz, H., Goroom, H., and Hoff, A., Biochemistry, 1997, vol. 36, no.12, pp. 1677–1681.

    Google Scholar 

  52. Chernyad’ev, I.I., Terekhova, I.V., Komarova, Yu.M., Doman, N.G., Goronkova, O.I., and Al’bitskaya, O.N., Dokl. Akad. Nauk SSSR, 1975, vol. 223, no.2, pp. 501–503.

    Google Scholar 

  53. Prakash, K.R. and Rao, V.S., J. Environ. Biol, 1996, vol. 17, no.1, pp. 39–42.

    Google Scholar 

  54. Dekov, I., Tsonev, T., and Yordanov, I., Photosynthetica, 2000, vol. 38, no.3, pp. 361–366.

    Google Scholar 

  55. Kislyakova, T.E., Golubkova, B.M., Monakhova, O.F., Baskakov, Yu.A., and Kulaeva, O.N., Zh. Obshch. Biol., 1989, vol. 50, no.1, pp. 27–37.

    Google Scholar 

  56. Ruiz-Sanchez, M.C., Domingo, R., Save, R., Biel, C., and Torrecillas, A., Biol. Plant., 1997, vol. 39, no.4, pp. 623–631.

    Google Scholar 

  57. Umanets, M.A. and Gulyaev, B.I., Fiziol. Biokh. Kul’t. Rast., 1998, vol. 30, no.1, pp. 14–18.

    Google Scholar 

  58. Musienko, N.N. and Serga, O.I., Regulyatsiya rosta, razvitiya i produktivnosti rastenii. Materialy mezhd. konf. (Regulation of Growth, Development, and Productivity of Plants. Proc. Int. Conf.), Minsk, 1999, pp. 150–151.

  59. Bunce, J.A. and Sicher, R.C., Photosynthetica, 2001, vol. 39, no.1, pp. 95–101.

    Article  CAS  Google Scholar 

  60. Kosobryukhov, A.A., Bil’, K.Ya., and Nishio, Dzh.N., Prikl. Biokhim. Mikrobiol., 2004, vol. 40, no.4.

  61. Shmat’ko, I.G., Stasik, O.O., Kononchuk, A.B., and Grigoryuk, I.A., Fiziol. Biokh. Kul’t. Rast., 1995, vol. 27, no.3, pp. 135–140.

    Google Scholar 

  62. Stasik, O.O., Sokolovskaya, O.G., and Gulyaev, B.I., Fiziol. Biokh. Kul’t. Rast., 2002, vol. 34, no.4, pp. 297–303.

    Google Scholar 

  63. Chernyad’ev, I.I. and Monakhova, O.F., in Materialy II Vseros. s”ezda fotobiologov (Proc. II All-Russia Congr. Photobiol.), Pushchino: ONTI PNTs, 1998, pp. 135–137.

    Google Scholar 

  64. Monakhova, O.F. and Chernyad’ev, I.I., Fiziologiya rastenii — osnova biotekhnologii. Materialy V S”ezda obshchestva fiziologov Rossii i mezhd. konf. (Plant Physiology Is the Basis of Biotechnology. Proc. V Congr. Soc. Physiol. of Russia and Int. Conf.), Pensa, 2003, pp. 145–146.

  65. Monakhova, O.F. and Chernyad’ev, I.I., Prikl. Biokhim. Mikrobiol., 2004, vol. 40, no.6, pp. 659–667.

    Google Scholar 

  66. Zholkevich, V.N., Gusev, N.A., Kaplya, A.V., Pakhomova, G.I., Pil’shchikova, N.V., Samuilov, F.D., Slavnyi, P.S., and Shmat’ko, I.G., Vodnyi obmen rastenii (Water Metabolism in Plants) Tarchevskii, I.A, and Zholkevich, V.N., Eds., Moscow: Nauka, 1989.

    Google Scholar 

  67. Rakhmankulova, Z.F., Zh. Obshch. Biol., 2002, vol. 63, no.3, pp. 239–248.

    Google Scholar 

  68. Barry, J.A. and Woodrow, I.E., Ann. Rev. Plant Physiol. Plant Mol. Biol., 1988, vol. 39, pp. 533–594.

    Google Scholar 

  69. Taylor, W.C., Ann. Rev. Plant Physiol. Plant Mol. Biol., 1989, vol. 40, pp. 211–233.

    Google Scholar 

  70. Portis, A.R., Ann. Rev. Plant. Physiol. Mol. Biol., 1992, vol. 43, pp. 415–437.

    Google Scholar 

  71. Romanova, A.K., Usp. Biol. Khim., 1997, vol. 37, pp. 211–259.

    Google Scholar 

  72. Kulaeva, O.N., Sorosovskii Obrazovat. Zh., 1997, no. 7, pp. 2–9.

  73. Chikov, V.I., Sorosovskii Obrazovat. Zh., 1996, no. 11, pp. 2–8.

  74. Wingler, A., Lea, P.J., Quick, W.P., and Leegod, R.C., Phyl. Trans. Roy. Soc. (London), 2000, vol. 335, no.5, pp. 1517–1529.

    Google Scholar 

  75. Chernyad’ev, I.I. and Monakhova, O.F., Photosynthetica, 1998, vol. 35, no.4, pp. 603–610.

    Google Scholar 

  76. Tezara, W., Mitchell, V.J., Drisoll, S.D., and Lawlor, D.W., Nature, 1999, vol. 401, no.7, pp. 914–917.

    Google Scholar 

  77. Parry, M.A., Andralojs, P.J., Lowe, H.M., and Keys, A.J., FEBS Lett., 1999, vol. 444, no.1, pp. 106–110.

    Google Scholar 

  78. Chernyad’ev, I.I. and Monakhova, O.F., Prikl. Biokhim. Mikrobiol., 2001, vol. 37, no.6, pp. 706–712.

    Google Scholar 

  79. Stewart, G.R. and Lee, J.A., New Phytol., 1972, vol. 71, no.3, pp. 461–466.

    Google Scholar 

  80. Shvedova, O.E., Shmat’ko, I.G., Litashenko, O.P., Krasnik, T.R., and Yuzbekov, A.K., Fiziol. Biokh. Kul’t. Rast., 1989, vol. 21, no.6, pp. 577–582.

    Google Scholar 

  81. Wang, Yeo Hao, Chen, Jing Zhi, and Shi, Jiao Nai, Acta Phytophysiol. Sin., 1991, vol. 17, no.2, pp. 207–213.

    Google Scholar 

  82. Bil’, K.Ya., Fomina, I.R., and Nishio, Dzh.N., in Novye i netraditsionnye rasteniya i perspektivy ikh ispol’zovaniya. Materialy V mezhd. simp. (New and Nontraditional Plants and Promises of Their Use. Proc. V Int. Symp.), Moscow: Ros. Univ. Druzhby Narodov, 2003, vol. 3, pp. 24–31.

    Google Scholar 

  83. Mezostruktura i funktsional’naya aktivnost’ fotosinteticheskogo apparata (Mesostructure and Functional Activity of Photosynthetic Apparatus), Mokronosov, A.T., Borzenkov, R.A., Tsel’niker, Yu.A., and Nekrasova, G.F., Eds., Sverdlovsk: Ural. Gos. Univ., 1978.

    Google Scholar 

  84. Chernyad’ev, I.I., Prikl. Biokhim. Mikrobiol., 2002, vol. 38, no.6, pp. 789–697.

    Google Scholar 

  85. Kendall, A.C., Turner, J.C., and Thomas, S.H., J. Exp. Bot., 1985, vol. 36, no.2, pp. 252–263.

    Google Scholar 

  86. Dzhifford, R.M. and Dzhenkins, L.D., Fotosintez (Photosynthesis), Govindzi, A., Ed. Moscow: Mir, 1987, vol. 2.

    Google Scholar 

  87. Gulyaev, B.I., Rozhko, I.I., Rogachenko, A.D., Golik, K.N., Mitrofanov, B.A., and Borisyuk, V.A., Fotosintez, produktsionnyi protsess i produktivnost’ rastenii (Photosynthesis, Productive Process, and Productivity of Plants), Ostrovskaya, L.K, Ed., Kiev: Naukova dumka, 1989.

    Google Scholar 

  88. Bogdanova, E.D., Gostenko, K.L., and Polimebetova, F.A., in Fiziologiya rastenii — nauka III tysyacheletiya. Materialy mezhd. konf. (Plant Physiology is a Science of III Millennium. Proc. Int. Conf.), Moscow: Nauka, 1999, vol. 1, pp. 324–325.

    Google Scholar 

  89. Kutic, J., Photosynthetica, 1998, vol. 35, no.4, pp. 481–505.

    Google Scholar 

  90. Possingham, I.V., Annu. Rev. Plant Physiol., 1980, vol. 31, pp. 113–129.

    Google Scholar 

  91. Siffel, P., Šantrucek, J., Lang, M., Braudová, Z., Simková, M., Synková, H., and Lichtenthaler, H.K., Photosynthetica, 1993, vol. 29, no.1, pp. 81–94.

    Google Scholar 

  92. Whatley, J.M., Hawes, C.R., Horne, J.C., and Kerr, J.A., New Phytol., 1998, vol. 90, no.5, pp. 619–629.

    Google Scholar 

  93. Bondada, B.R. and Oosterhuis, D.M., Photosynthetica, 1998, vol. 35, no.3, pp. 467–471.

    Google Scholar 

  94. Kulaeva, O.N., Gormonal’naya regulyatsiya fiziologicheskikh protsessov u rastenii na urovne sinteza RNK i belka (Hormonal Regulation of Physiological Processes in Plants at the Level of RNA and Protein Synthesis), 41st Timiryazev Memorial Lecture, Moscow: Nauka, 1982.

    Google Scholar 

  95. Shevelukha, V.S., Kalashnikova, E.A., Degtyarev, S.V., Kochieva, E.Z., Prokof’ev, M.I., Novikov, N.I., Kovalev, V.M., and Kalashnikov, D.V., Sel’skokhozyaistvennaya biotekhnologiya (Agricultural Biotechnology) Shevelukha, V.S., Ed., Moscow: Vyssh. Shkola, 1998.

    Google Scholar 

  96. Ron’zhina, E.S., Prikl. Biokhim. Mikrobiol., 2003, vol. 39, no.4, pp. 465–472.

    Google Scholar 

  97. Chernyad’ev, I.I., Kozlovskikh, A.L., Obraztsov, A.S., and Lukashevich, P.I., Agrokhimiya, 1989, no. 7, pp. 102–106.

  98. Chernyad’ev, I.I. and Kozlovskikh, A.L., Prikl. Biokhim. Mikrobiol., 1992, vol. 28, no.1, pp. 114–122.

    Google Scholar 

  99. Metwally, A., Tsonev, T., and Zeinalov, Y., Photosynthetica, 1997, vol. 34, no.4, pp. 563–567.

    Google Scholar 

  100. Stoyanova, D. and Yordanov, I., Photosynthetica, 1999, vol. 37, no.4, pp. 621–626.

    Google Scholar 

  101. Rekika, D., Nachit, M.M., Araus, J.L., and Monneveux, P., Photosynthetica, 1998, vol. 35, no.1, pp. 129–138.

    Google Scholar 

  102. Sokolovskaya, O.G., Stasik, O.O., and Gulyaev, B.I., Fiziol. Biokh. Kul’t. Rast., 1998, vol. 30, no.4, pp. 241–246.

    Google Scholar 

  103. Chernyad’ev, I.I., Prikl. Biokhim. Mikrobiol., 1991, vol. 27, no.3, pp. 427–434.

    Google Scholar 

  104. Kulaeva, O.N. and Kuznetsov, V.V., Fiziologiya rastenii, 2002, vol. 49, no.4, pp. 626–640.

    Google Scholar 

  105. Kulaeva, O.N. and Prokoptseva, O.S., Biokhimiya, 2004, vol. 69, no.3, pp. 293–310.

    Google Scholar 

  106. Ron’zhina, E.S., Cytokines in Regulation of Transport and Distribution of Assimilates in Plants, Extended Abstract of Doctoral (Biol.) Dissertation, Moscow: Timiryazev Inst. Plant Physiol. RAS, 2004.

    Google Scholar 

  107. Korkina, T.A., Relationship between the Hormonal and Trophic Regulatory Factors in Wheat Ontogeny by the Example of Tsitokinins and Potassium, Extended Abstract of Cand. Sci. (Biol.) Dissertation, Moscow: Timiryazev Inst. Plant Physiol. RAS, 2001.

    Google Scholar 

  108. Morgun, V.V., Grigoryuk, I.P., Kravets, V.S., Toma, S.I., and Volotovskii, I.D., Fiziol. Biokh. Kul’t. Rast., 2001, vol. 33, no.5, pp. 371–376.

    Google Scholar 

  109. Monakhova, O.F. and Chernyad’ev, I.I., Prikl. Biokhim. Mikrobiol., 1997, vol. 33, no.5, pp. 523–531.

    Google Scholar 

  110. Monakhova, O.F. and Chernyad’ev, I.I., Prikl. Biokhim. Mikrobiol., 2002, vol. 38, no.4, pp. 433–440.

    Google Scholar 

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Translated from Prikladnaya Biokhimiya i Mikrobiologiya, Vol. 41, No. 2, 2005, pp. 133–147.

Original Russian Text Copyright © 2005 by Chernyad’ev.

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Chernyad’ev, I.I. Effect of water stress on the photosynthetic apparatus of plants and the protective role of cytokinins: A review. Appl Biochem Microbiol 41, 115–128 (2005). https://doi.org/10.1007/s10438-005-0021-9

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