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Light-Regulated Stomatal Aperture in Arabidopsis 被引量:5

Light-Regulated Stomatal Aperture in Arabidopsis
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摘要 The stomatal pores of plant leaves, situated in the epidermis and surrounded by a pair of guard cells, allow CO2 uptake for photosynthesis and water loss through transpiration. Blue light is one of the dominant environmental signals that control stomatal movements in leaves of plants in a natural environment. This blue light response is mediated by blue/UV A light-absorbing phototropins (phots) and cryptochromes (crys). Red/far-red light-absorbing phytochromes (phys) also play a role in the control of stomatal aperture. The signaling components that link the perception of light signals to the stomatal opening response are largely unknown. This review discusses a few newly discovered nuclear genes, their function with respect to the phot-, cry-, and phy-mediated signal transduction cascades, and possible involve- ment of circadian clock. The stomatal pores of plant leaves, situated in the epidermis and surrounded by a pair of guard cells, allow CO2 uptake for photosynthesis and water loss through transpiration. Blue light is one of the dominant environmental signals that control stomatal movements in leaves of plants in a natural environment. This blue light response is mediated by blue/UV A light-absorbing phototropins (phots) and cryptochromes (crys). Red/far-red light-absorbing phytochromes (phys) also play a role in the control of stomatal aperture. The signaling components that link the perception of light signals to the stomatal opening response are largely unknown. This review discusses a few newly discovered nuclear genes, their function with respect to the phot-, cry-, and phy-mediated signal transduction cascades, and possible involve- ment of circadian clock.
出处 《Molecular Plant》 SCIE CAS CSCD 2012年第3期566-572,共7页 分子植物(英文版)
基金 the National Science Foundation
关键词 circadian clock CRYPTOCHROMES phototropins PHYTOCHROMES light signaling STOMATA circadian clock cryptochromes phototropins phytochromes light signaling stomata
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  • 1明村豪,蒋芳玲,胡宏敏,周学超,詹锋华,吴震.幼苗徒长程度对黄瓜植株生长发育及产量品质的影响[J].中国蔬菜,2011(4):29-34. 被引量:55
  • 2徐凯,郭延平,张上隆.不同光质对草莓叶片光合作用和叶绿素荧光的影响[J].中国农业科学,2005,38(2):369-375. 被引量:208
  • 3王惠哲,庞金安,李淑菊,霍振荣.弱光处理对春季温室不同品种黄瓜生长发育的影响[J].河南农业大学学报,2006,40(2):156-160. 被引量:20
  • 4江明艳,潘远智.不同光质对盆栽一品红光合特性及生长的影响[J].园艺学报,2006,33(2):338-343. 被引量:89
  • 5赵有生.蔬菜工厂化育苗的智能管理与综合评价研究[D].长春:吉林大学,2011.
  • 6Hogewoning S W, Trouwborst G, Maljaars H, et, al. Blue light dose-responses of leaf photosynthesis, morphology, and chemical composition of Cucumis sativus grown under different combinations of red and blue light[ J]. Journal of Experimental Botany, 2010, 61(11): 3107 -3117.
  • 7Pettersen R I, Torre S, Gislerd H R. Effects of leaf aging and light duration on photosynthetic characteristics in a cucumber canopy [J]. Scientia Horticulturae, 2010, 125(2) :82 -87.
  • 8Li Q, Kubota C. Effects of supplemental light quality on growth and phytochemicals of baby leaf lettuce[ J]. Environmental and Experimental Botany, 2009, 67 ( 1 ) : 59 - 64.
  • 9Savvides A, Fanourakis D, Wim van Ieperen. Co-ordination of hydraulic and stomatal conductances across light qualities in cucumber leaves [ J ]. Journal of Experimental Botany, 2012, 63 (3) : 1135 - 1143.
  • 10Kim S J, Hahn E J, Heo J W, et al. Effects of LEDs on net photosynthetic rate, growth and leaf stomata of chrysanthemum plantlets in vitro [ J ]. Scientia Horticulturae, 2004, 101 ( 1 - 2) : 143 - 151.

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