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在无蓝光 PAR 下,什么决定了高羊茅气孔导度的复杂动力学?对叶片蒸腾的后续影响。

What determines the complex kinetics of stomatal conductance under blueless PAR in Festuca arundinacea? Subsequent effects on leaf transpiration.

机构信息

Institut National de la Recherche Agronomique, UR4 P3F, Equipe d'Ecophysiologie des plantes fourragères, Lusignan, France.

出版信息

J Exp Bot. 2010 Jun;61(10):2795-806. doi: 10.1093/jxb/erq115. Epub 2010 May 5.

Abstract

Light quality and, in particular, its content of blue light is involved in plant functioning and morphogenesis. Blue light variation frequently occurs within a stand as shaded zones are characterized by a simultaneous decrease of PAR and blue light levels which both affect plant functioning, for example, gas exchange. However, little is known about the effects of low blue light itself on gas exchange. The aims of the present study were (i) to characterize stomatal behaviour in Festuca arundinacea leaves through leaf gas exchange measurements in response to a sudden reduction in blue light, and (ii) to test the putative role of Ci on blue light gas exchange responses. An infrared gas analyser (IRGA) was used with light transmission filters to study stomatal conductance (gs), transpiration (Tr), assimilation (A), and intercellular concentration of CO(2) (Ci) responses to blueless PAR (1.80 mumol m(-2) s(-1)). The results were compared with those obtained under a neutral filter supplying a similar photosynthetic efficiency to the blueless PAR filter. It was shown that the reduction of blue light triggered a drastic and instantaneous decrease of gs by 43.2% and of Tr by 40.0%, but a gradual stomatal reopening began 20 min after the start of the low blue light treatment, thus leading to new steady-states. This new stomatal equilibrium was supposed to be related to Ci. The results were confirmed in more developed plants although they exhibited delayed and less marked responses. It is concluded that stomatal responses to blue light could play a key role in photomorphogenetic mechanisms through their effect on transpiration.

摘要

光是植物发育和形态建成的重要因素,其质量,尤其是蓝光的含量,与植物的功能和形态建成有关。在林分内,光质会经常发生变化,遮荫区的特点是 PAR 和蓝光水平同时降低,这都会影响植物的功能,例如气体交换。然而,人们对低蓝光本身对气体交换的影响知之甚少。本研究的目的是:(i)通过对突然降低蓝光条件下羊茅叶片气体交换的测量,来描述蓝光变化对羊茅叶片气孔行为的影响;(ii)验证 Ci 在蓝光气体交换响应中的作用。采用红外气体分析仪(IRGA),并结合光传输滤光片,研究气孔导度(gs)、蒸腾(Tr)、同化(A)和胞间 CO2 浓度(Ci)对无蓝光 PAR(1.80 μmol m-2 s-1)的响应。将结果与中性滤光片提供的类似光合效率的 PAR 进行比较。结果表明,降低蓝光会导致 gs 急剧且瞬时下降 43.2%,Tr 下降 40.0%,但在低蓝光处理开始 20 分钟后,气孔开始逐渐重新张开,从而达到新的稳定状态。这种新的气孔平衡可能与 Ci 有关。在发育更为成熟的植株中也得到了证实,尽管它们的反应延迟且不太明显。结论是,气孔对蓝光的响应可能通过对蒸腾作用的影响,在光形态建成机制中发挥关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0569/2882272/411bf110d8a1/jexboterq115f01_lw.jpg

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