首页> 外文OA文献 >Trichomes and photosynthetic pigment composition changes: Responses of Quercus ilex subsp. ballota (Desf.) Samp. and Quercus coccifera L. to Mediterranean stress conditions
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Trichomes and photosynthetic pigment composition changes: Responses of Quercus ilex subsp. ballota (Desf.) Samp. and Quercus coccifera L. to Mediterranean stress conditions

机译:毛滴虫和光合色素组成的变化:栎冬青亚种的响应。 Ballota(Desf。)Samp。和栎(Quercus coccifera L.)对地中海的胁迫条件

摘要

Sun and shade leaves of two Mediterranean Quercus species, Quercus ilex subsp. ballota (Desf.) Samp. and Quercus coccifera L., were compared by measuring leaf optical properties, photosynthetic pigment composition and photosystem II efficiency. The presence of trichomes in the adaxial (upper) leaf surface of Q. ilex subsp. ballota seems to constitute an important morphological mechanism that allows this species to maintain a good photosystem II efficiency during the summer. Q. coccifera has almost no trichomes and seems instead to develop other physiological responses, including a smaller light-harvesting antenna size, higher concentrations of violaxanthin cycle pigments and a higher (zeaxanthin + antheraxanthin)/(violaxanthin + antheraxanthin + zeaxanthin) ratio. Q. coccifera was not able to maintain a good photosystem II efficiency up to the end of the summer. In Q. ilex subsp. ballota leaves, natural loss or mechanical removal of adaxial-face leaf trichomes induced short-term decreases in photosystem II efficiency. These changes were accompanied by de-epoxidation of violaxanthin cycle pigments, suggesting that the absence of trichomes would trigger physiological responses in this species. Our data have revealed different patterns of response of Q. ilex subsp. ballota and Q. coccifera facing the stress conditions prevailing in the Mediterranean area.
机译:两种地中海栎属物种栎属亚种的阳光和阴影叶片。 Ballota(Desf。)Samp。通过测量叶片的光学特性,光合色素成分和光系统II的效率,对球果和栎(Quercus coccifera L.)进行了比较。 Q.冬青亚种亚种的叶轴(上部)叶表面毛状体的存在。球囊似乎构成了重要的形态学机制,使该物种在夏季能够保持良好的光系统II效率。球孢Q.几乎没有毛状体,而似乎发展出其他生理反应,包括较小的采光触角大小,更高浓度的紫黄质循环色素和(玉米黄质+花药黄质)/(紫黄质+花药黄质+玉米黄质)比率更高。到夏天结束时,球孢菌一直无法保持良好的光系统II效率。在问。球茎叶,自然损失或机械去除正面叶的毛状体引起光系统II效率的短期降低。这些变化伴随着紫黄质循环色素的脱环氧化,表明毛状体的缺失会触发该物种的生理反应。我们的数据揭示了Q. ilex亚种的不同响应模式。 ballota和Q. coccifera面临着地中海地区普遍存在的压力条件。

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