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热带树木印加属物种中的叶黄素环氧化循环、光能捕获与光保护

Lutein epoxide cycle, light harvesting and photoprotection in species of the tropical tree genus Inga.

作者信息

Matsubara Shizue, Krause G Heinrich, Seltmann Martin, Virgo Aurelio, Kursar Thomas A, Jahns Peter, Winter Klaus

机构信息

Phytosphere Institute (ICG-3), Research Centre Jülich, 52425 Jülich, Germany.

出版信息

Plant Cell Environ. 2008 Apr;31(4):548-61. doi: 10.1111/j.1365-3040.2008.01788.x. Epub 2008 Jan 17.

Abstract

Dynamics and possible function of the lutein epoxide (Lx) cycle, that is, the reversible conversion of Lx to lutein (L) in the light-harvesting antennae, were investigated in leaves of tropical tree species. Photosynthetic pigments were quantified in nine Inga species and species from three other genera. In Inga, Lx levels were high in shade leaves (mostly above 20 mmol mol(-1) chlorophyll) and low in sun leaves. In Virola surinamensis, both sun and shade leaves exhibited very high Lx contents (about 60 mmol mol(-1) chlorophyll). In Inga marginata grown under high irradiance, Lx slowly accumulated within several days upon transfer to deep shade. When shade leaves of I. marginata were briefly exposed to the sunlight, both violaxanthin and Lx were quickly de-epoxidized. Subsequently, overnight recovery occurred only for violaxanthin, not for Lx. In such leaves, containing reduced levels of Lx and increased levels of L, chlorophyll fluorescence induction showed significantly slower reduction of the photosystem II electron acceptor, Q(A), and faster formation as well as a higher level of non-photochemical quenching. The results indicate that slow Lx accumulation in Inga leaves may improve light harvesting under limiting light, while quick de-epoxidation of Lx to L in response to excess light may enhance photoprotection.

摘要

在热带树种的叶片中研究了叶黄素环氧化合物(Lx)循环的动力学及可能的功能,即光捕获天线中叶黄素环氧化合物向叶黄素(L)的可逆转化。对9种豆科雨树属植物及其他3个属的物种的光合色素进行了定量分析。在豆科雨树属植物中,阴生叶中的Lx水平较高(大多高于20 mmol mol(-1)叶绿素),阳生叶中的Lx水平较低。在苏里南维罗树中,阳生叶和阴生叶的Lx含量都非常高(约60 mmol mol(-1)叶绿素)。在高光照下生长的边缘豆科雨树,转移到深度遮荫环境后,Lx在几天内缓慢积累。当边缘豆科雨树的阴生叶短暂暴露于阳光下时,紫黄质和Lx都会迅速脱环氧化。随后,只有紫黄质在一夜之间恢复,Lx没有恢复。在这些Lx含量降低、L含量增加的叶片中,叶绿素荧光诱导显示光系统II电子受体Q(A)的还原明显减慢,非光化学猝灭的形成更快且水平更高。结果表明,豆科雨树属植物叶片中Lx的缓慢积累可能会在弱光条件下改善光能捕获,而在强光下Lx迅速脱环氧化为L可能会增强光保护作用。

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