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1.
#J10058580219 // Shengtai xuebao, 2011. Vol. 31, N 12.-С.3497-3503

2.
#J10058580219 // Shengtai xuebao, 2011. Vol. 31, N 12.-С.3497-3503

3.
#J1191026450 // Agron. mesoamer., 2013. Vol. 24, N 1.-С.57-69

4.
28-homobrassinolide improves growth and photosynthesis in Cucumis sativus L. through an enhanced antioxidant system in the presence of chilling stress // Photosynthetica, 2011. Vol. 49, N 1.-С.55-64

5.
A suppressor of fab1 challenges hypotheses on the role of thylakoid unsaturation in photosynthetic function // Plant Physiol., 2006. Vol. 141, N 3.-С.1012-1020

6.
Acclimation of arabidopsis leaves developing at low temperatures. Increasing cytoplasmic volume accompanies increased activities of enzymes in the calvin cycle and in the sucrose-biosynthesis pathway // Plant Physiol., 1999. Vol. 119, N 4.-С.1387-1397

7.
Accumulatuion of ER 'омега'-3 fatty acid desaturase is enhanced at low temperature in wheat root tip // Plant and Cell Physiol., 1999. Vol. 40, Suppl..-С.105

8.
Activation of gibberellin biosynthesis and response pathways by low temperature during imbibition of Arabidopsis thaliana seeds // Plant Cell, 2004. Vol. 16, N 2.-С.367-378

9.
Almeida Domingos P.F. In vivo pectin solubility in ripening and chill-injured tomato fruit // Plant Sci., 2008. Vol. 174, N 2.-С.174-182

10.
Analysis of the relative increase in photosynthetic O[2] uptake when photosynthesis in grapevine leaves is inhibited following low night temperatures and/or water stress // Plant Physiol., 1999. Vol. 121, N 2.-С.675-684

11.
Ascorbate plays a key role in alleviating low temperature-induced oxidative stress in Arabidopsis // Photosynthetica, 2012. Vol. 50, N 4.-С.602-612

12.
Assimilate transport in maize (Zea mays L.) seedlings at vertical low temperature gradients in the root zone // J. Exp. Bot., 1998. Vol. 49, N 321.-С.747-752

13.
Atuacao das enzimas oxidativas no escurecimento causado pela injuria por frio em raizes de batata-baroa // Acta sci. Agron., 2008. Vol. 30, N 1.-С.57-63

14.
Bancel Embryonic protein composition and synthesis during imbibition of white lupin seeds: Effect of low temperatures // C. r. Acad. sci. Ser. 3, 1997. Vol. 320, N 11.-С.909-915

15.
Bancel Embryonic protein composition and synthesis during imbibition of white lupin seeds: Effect of low temperatures // C. r. Acad. sci. Ser. 3, 1997. Vol. 320, N 11.-С.909-915

16.
Bhattacharjee S. Chilling-induced physiological and biochemical responses in a tropical leaf crop, Amaranthus lividus Linn. // Indian J. Exp. Biol., 1995. Vol. 33, N 7.-С.529-532

17.
Bhattacharjee S. Chilling-induced physiological and biochemical responses in a tropical leaf crop, Amaranthus lividus Linn. // Indian J. Exp. Biol., 1995. Vol. 33, N 7.-С.529-532

18.
Bigot J. Low-temperature pretreatment of the root system of Brassica rapa L. plants: Effects on the xylem sap exudation and on the nitrate absorption rate // Plant, Cell and Environment, 1994. Vol. 17, N 6.-С.721-729

19.
Bigot J. Low-temperature pretreatment of the root system of Brassica rapa L. plants: Effects on the xylem sap exudation and on the nitrate absorption rate // Plant, Cell and Environment, 1994. Vol. 17, N 6.-С.721-729

20.
Biofortification with potassium: antioxidant responses during postharvest of cherry tomato fruits in cold storage // Acta physiol. plant., 2014. Vol. 36, N 2.-С.283-293

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