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鳄梨叶片在遮荫和光照适应过程中Lx和V循环色素的从头合成与降解

De novo synthesis and degradation of Lx and V cycle pigments during shade and sun acclimation in avocado leaves.

作者信息

Förster Britta, Osmond C Barry, Pogson Barry J

机构信息

School of Biochemistry and Molecular Biology, Australian National University, Canberra, Australian Capital Territory 0200, Australia.

出版信息

Plant Physiol. 2009 Feb;149(2):1179-95. doi: 10.1104/pp.108.131417. Epub 2008 Dec 5.

Abstract

The photoprotective role of the universal violaxanthin cycle that interconverts violaxanthin (V), antheraxanthin (A), and zeaxanthin (Z) is well established, but functions of the analogous conversions of lutein-5,6-epoxide (Lx) and lutein (L) in the selectively occurring Lx cycle are still unclear. We investigated carotenoid pools in Lx-rich leaves of avocado (Persea americana) during sun or shade acclimation at different developmental stages. During sun exposure of mature shade leaves, an unusual decrease in L preceded the deepoxidation of Lx to L and of V to A+Z. In addition to deepoxidation, de novo synthesis increased the L and A+Z pools. Epoxidation of L was exceptionally slow, requiring about 40 d in the shade to restore the Lx pool, and residual A+Z usually persisted overnight. In young shade leaves, the Lx cycle was reversed initially, with Lx accumulating in the sun and declining in the shade. De novo synthesis of xanthophylls did not affect alpha- and beta-carotene pools on the first day, but during long-term acclimation alpha-carotene pools changed noticeably. Nonetheless, the total change in alpha- and beta-branch carotenoid pools was equal. We discuss the implications for regulation of metabolic flux through the alpha- and beta-branches of carotenoid biosynthesis and potential roles for L in photoprotection and Lx in energy transfer to photosystem II and explore physiological roles of both xanthophyll cycles as determinants of photosystem II efficiency.

摘要

普遍存在的紫黄质循环可使紫黄质(V)、花药黄质(A)和玉米黄质(Z)相互转化,其光保护作用已得到充分证实,但在选择性发生的叶黄素-5,6-环氧化合物(Lx)循环中叶黄素-5,6-环氧化合物(Lx)与叶黄素(L)的类似转化功能仍不清楚。我们研究了鳄梨(Persea americana)富含Lx的叶片在不同发育阶段进行阳光或遮荫适应期间的类胡萝卜素库。在成熟遮荫叶片暴露于阳光下的过程中,L的异常减少先于Lx向L以及V向A+Z的脱环氧化反应。除了脱环氧化反应外,从头合成增加了L和A+Z库。L的环氧化反应异常缓慢,在遮荫条件下需要约40天才能恢复Lx库,且残余的A+Z通常会持续过夜。在幼嫩遮荫叶片中,Lx循环最初是反向的,Lx在阳光下积累而在遮荫条件下减少。叶黄素的从头合成在第一天并未影响α-和β-胡萝卜素库,但在长期适应过程中α-胡萝卜素库发生了明显变化。尽管如此,α-和β-分支类胡萝卜素库的总变化是相等的。我们讨论了通过类胡萝卜素生物合成的α-和β-分支调节代谢通量的意义,以及L在光保护中的潜在作用和Lx在向光系统II能量转移中的潜在作用,并探讨了这两个叶黄素循环作为光系统II效率决定因素的生理作用。

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