Relationships between leaf conductance to CO2 diffusion and photosynthesis in micropropagated grapevine plants, before and after ex vitro acclimatization

被引:33
作者
Fila, Gianni
Badeck, Franz-W.
Meyer, Sylvie
Cerovic, Zoran
Ghashghaie, Jaleh
机构
[1] Ist Sperimentale Colture Ind, Consiglio Ric & Sperimentaz Agr, I-40128 Bologna, Italy
[2] Potsdam Inst Climate Impact Res, PIK, D-14412 Potsdam, Germany
[3] Univ Paris 11, Lab Ecol Syst & Evolut, CNRS, UMR 8079,UFR Sci Orsay, F-95401 Orsay, France
关键词
acclimatization; chlorophyll fluorescence; cuticular conductance; gas exchange; grapevine; in vitro culture; mesophyll conductance; photosynthesis; stomatal conductance;
D O I
10.1093/jxb/erl040
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
In vitro-cultured plants typically show a low photosynthetic activity, which is considered detrimental to subsequent ex vitro acclimatization. Studies conducted so far have approached this problem by analysing the biochemical and photochemical aspects of photosynthesis, while very little attention has been paid to the role of leaf conductance to CO2 diffusion, which often represents an important constraint to CO2 assimilation in naturally grown plants. Mesophyll conductance, in particular, has never been determined in in vitro plants, and no information exists as to whether it represents a limitation to carbon assimilation during in vitro growth and subsequent ex vitro acclimatization. In this study, by means of simultaneous gas exchange and chlorophyll fluorescence measurements, the stomatal and mesophyll conductance to CO2 diffusion were assessed in in vitro-cultured plants of the grapevine rootstock '41B' (Vitis vinifera 'Chasselas'xVitis berlandieri), prior to and after ex vitro acclimatization. Their impact on electron transport rate partitioning and on limitation of potential net assimilation rate was analysed. In vitro plants had a high stomatal conductance, 155 versus 50 mmol m(-2) s(-1) in acclimatized plants, which ensured a higher CO2 concentration in the chloroplasts, and a 7% higher electron flow to the carbon reduction pathway. The high stomatal conductance was counterbalanced by a low mesophyll conductance, 43 versus 285 mmol m(-2) s(-1), which accounted for a 14.5% estimated relative limitation to photosynthesis against 2.1% estimated in acclimatized plants. It was concluded that mesophyll conductance represents an important limitation for in vitro plant photosynthesis, and that in acclimatization studies the correct comparison of photosynthetic activity between in vitro and acclimatized plants must take into account the contribution of both stomatal and mesophyll conductance.
引用
收藏
页码:2687 / 2695
页数:9
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