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不同生长型地中海植物对水分胁迫及恢复的光合限制

Photosynthetic limitations in response to water stress and recovery in Mediterranean plants with different growth forms.

作者信息

Galmés Jeroni, Medrano Hipólito, Flexas Jaume

机构信息

Grup de Recerca en Biologia de les Plantes en Condicions Mediterrànies, Universitat de les Illes Balears, Carretera de Valldemossa Km 7.5, 07122 Palma de Mallorca, Spain.

出版信息

New Phytol. 2007;175(1):81-93. doi: 10.1111/j.1469-8137.2007.02087.x.

Abstract
  • Whether photosynthesis is limited during water stress and recovery because of diffusive or biochemical factors is still open to debate, and apparent contradictions appear when various studies on species with different growth forms are compared. * Ten Mediterranean species, representing different growth forms, were subjected to different levels of water stress, the most severe followed by rewatering. A quantitative limitation analysis was applied to estimate the effects of water stress on stomatal (S(L)), mesophyll conductance (MC(L)) and biochemical limitations (B(L)). * Results confirmed a general pattern of photosynthetic response to water stress among C(3) plants when stomatal conductance (g(s)) is used as a reference parameter. As g(s) values decreased from a maximum to approx. 0.05 mol H(2)O m(-2) s(-1), the total photosynthetic limitation rose from 0 to approx. 70%, and this was caused by a progressive increase of both S(L) and MC(L) limitations, while B(L) remained negligible. When lower values of g(s) were achieved (total photosynthetic limitation increased from 70 to 100%), the contribution of S(L) declined, while MC(L) still increased and B(L) contributed significantly (20-50%) to the total limitation. * Photosynthetic recovery of severely stressed plants after rewatering showed a dominant role of MC(L), irrespective of the degree of photosynthesis recovery.
摘要

水分胁迫及恢复期间光合作用是否因扩散或生化因素而受到限制仍存在争议,而且在比较针对不同生长型物种的各项研究时会出现明显矛盾。选取了代表不同生长型的10种地中海植物,使其遭受不同程度的水分胁迫,最严重的胁迫后再进行复水。采用定量限制分析来评估水分胁迫对气孔导度(S(L))、叶肉导度(MC(L))和生化限制(B(L))的影响。结果证实,以气孔导度(g(s))作为参考参数时,C(3)植物中光合作用对水分胁迫的响应存在一般模式。随着g(s)值从最大值降至约0.05 mol H₂O m⁻² s⁻¹,总光合限制从0升至约70%,这是由S(L)和MC(L)限制的逐渐增加导致的,而B(L)仍可忽略不计。当g(s)值更低时(总光合限制从70%增至100%),S(L)的贡献下降,而MC(L)仍在增加,且B(L)对总限制有显著贡献(20 - 50%)。严重胁迫植物复水后的光合恢复显示,无论光合恢复程度如何,MC(L)都起主导作用。

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