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22. LWS-2 ҶƬʪ¶È´«¸ÐÆ÷£º²úÉúÓë´«¸ÐÆ÷±íÃæʪ¶È³É±ÈÀýµÄָʾÐźÅ

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   1.Specific features of photorespiration in photosynthetically active organs of C3 plants, NS Balaur, et al. 2013, Russian Journal of Plant Physiology, 60(2): 184-192

   2.Online Monitoring and Analysis of Plant Photosynthetic Physiology and Environmental Factors, Zhao Hui Jiang et al., 2012, Applied Mechanics and Materials, 241-244, 75

   3.Mycorrhizal association between the desert truffle Terfezia boudieri and Helianthemum sessiliflorum alters plant physiology and fitness to arid conditions, Turgeman T. et al. 2011, Mycorrhiza, 21(7): 623-630

   4.Study on compensatory effects of two differential genotypic maize in water stress and re-watering during Filling stage, Yan Y.L. et al. 2011, New Technology of Agricultural Engineering (ICAE), 2011 International Conference

   5.FPGA-based Fused Smart Sensor for Real-Time Plant-Transpiration Dynamic Estimation, Millan-Almaraz J.R. et al. 2010, Sensors, 10(9): 8316-8331

   6.Effect of elevated CO2 on vegetative and reproductive growth characteristics of the CAM plants Hylocereus undatus and Selenicereus megalanthus£¬Weiss I. et al. 2010, Scientia Horticulturae£¬123(4): 531-536

   7.Novel technique for component monitoring of CO2 exchange in plants, Balaur N.S. et al. 2009, Russian Journal of Plant Physiology, 56 (3): 423-427

   8.Net CO2 uptake rates for Hylocereus undatus and Selenicereus megalanthus under field conditions: Drought influence and a novel method for analyzing temperature dependence, Ben ¨CAsher. J. et al. 2006, Photosynthetica, 44(2): 181-186

ËÎ×ÚºÓ, Ö£ÎÄÒú & ÕÅѧÀ¥. (2011). ¸ÊÀ¶ÐÍÓͲËÄͺµÏà¹ØÐÔ×´µÄÖ÷³É·Ö·ÖÎö¼°×ÛºÏÆÀ¼Û. ÖйúÅ©Òµ¿Æѧ 44,  1775¨C1787.

ÀîæÃæÃ, ½­³¯êÍ, ãÉÎÄ·¼, ½ª¹áÑî & ÈÄÔª. (2016).»ùÓÚ»ùÒò±í´ïʽ±à³ÌµÄ·¬ÇÑҶƬCO2½»»»Âʽ¨Ä£ÓëÔ¤²â. Õã½­Å©Òµ ѧ±¨ 28, 1616¨C1623.


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