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不同草坪草体内类胡萝卜素含量的比较 被引量:7

Comparison of Carotenoids Content in Different Turfgrass Species
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摘要 用高效液相色谱仪,配以Waters Spherisorb(ODS-2封口的色谱柱,测定正常光照条件下沿阶草(FestucaarundinaceaSchreb.)、高羊茅(Poa pratensisL.)和草地早熟禾(Ophiopogon bodinieriLévl.)体内类胡萝卜素的相对含量和构成。结果表明:主要类胡萝卜素按其在植物体内的含量多少排序为叶黄素>β-胡萝卜素≥紫黄质>新黄质;由于不同植物的类胡萝卜素/叶绿素的比值不同,所有类胡萝卜素均以其在整个类胡萝卜素中所占的比值的不同来衡量种间的差异;3种植物中的新黄质和β-胡萝卜素的含量没有明显差异;叶黄素与叶黄素库(包括紫黄质、单环氧玉米黄质和玉米黄质)呈明显的负相关关系,沿阶草叶黄素/叶黄素库的比值最高,而草地早熟禾和高羊茅之间没有明显差异;β-胡萝卜素及其衍生物(叶黄素库和新黄质)与α-胡萝卜素及其衍生物(叶黄素)的比值,在3种植物中具有显著差异,以草地早熟禾为最高,而沿阶草最低。 The carotenoid content and composition of tall rescue (Festuca arundinacea Schreb. ), Kentucky bluegrass(Poa pratensis L. )and mondo grass (Ophiopogon bodinieri Levl. ) in ured using high-performance liquid chromatography with an end capped Waters umn. The abundance order of carotenoids was lutein, β-carotene, violaxanthin, full sunlight were meas Spherisorb ODS-2 col and neoxanthin. The ca rotenoid was expressed as a percentage of total carotenoids instead of on the chlorophyll basis to better indicate the difference among species because the difference might be masked by the differences of carotenoid/chlorophyll ratio among species. There was no significant difference in neoxanthin and β-carotene contents among the three turfgrass species. The relative levels of lutein and xanthophyll pool (violaxanthin, antheraxanthin and zeaxanthin) were found to be strongly negatively correlated. While the ratio of lutein to xanthophyll pool was highest in O. bodinieri, no remarkable difference was found between F. arundinacea and P. pratensis. The ratio of β-Carotene plus its derivates (xanthophyll pool and neoxanthin) to α- Carotene plus its derivates (lutein) was found to be markedly different among three turfgrass species, with the ratio highest in P. pratensis and lowest in O. bodinieri.
出处 《草地学报》 CAS CSCD 北大核心 2009年第4期428-434,共7页 Acta Agrestia Sinica
基金 国家科技支撑计划项目(21037037)资助
关键词 草坪草 类胡萝卜素 耐荫性 高效液相色谱仪 Turfgrass Carotenoid Shade tolerance High performance liquid chromatography (HPLC)
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参考文献20

  • 1Matsubara S, Krause G H, Seltmann M, et al. Lutein epoxide cycle, light harvesting and photoprotection in species of the tropical tree genus Inga [J]. Plant, Cell and Environment, 2008, 31(4):548-561. 被引量:1
  • 2Matsubara S, Morosinotto T, Osmond C B, et al. Short- and long-term operation of the lutein-epoxide cycle in light-harvesting antenna complexes [J]. Plant Physiology, 2007, 144(2) : 926-941. 被引量:1
  • 3McElroy J S, Kopsell D A, Sorochan J C, et al. Response of creeping bentgrass carotenoid composition to high and low irradiance [J]. Crop Science, 2006, 46(6): 2606-2612. 被引量:1
  • 4Wehner A, Grasses T, Jahns P. De-epoxidation of violaxanthin in the minor antenna proteins of photosystem Ⅱ, LHCIM, LHCB5, and LHCB6 [J]. Journal of Biological Chemistry, 2006, 281(31): 21924-21933. 被引量:1
  • 5Liu Z, Yan H, Wang K, et al. Crystal structure of spinach major light-harvesting complex at 2.72A resolution [J]. Nature, 2004, 428(6980):287-292. 被引量:1
  • 6Thayer S S, Bjorkman O. Leaf xanthophyll content and composition in sun and shade determined by HPLC [J]. Photosynthesis Research, 1990, 23(3) : 331-343. 被引量:1
  • 7Demmig-Adams B, Gilmore A M, Adams Ⅲ W W. Carotenoids 3: in vivo function of carotenoids in higher plants [J]. The Journal of the Federation of American Societies for Experimental Biology, 1996, 10(4) : 403-412. 被引量:1
  • 8Demmig-Adams B, Adams W W. Photoprotection in an ecological context: the remarkable complexity of thermal energy dissipation [J]. New Phytologist, 2006, 172(1): 11-21. 被引量:1
  • 9林植芳,彭长连,林桂珠.植物黄体素(Lutein)与环氧化黄体素-黄体素循环[J].植物生理学通讯,2006,42(3):385-394. 被引量:9
  • 10Bell G E, Danneberger T K. Temporal shade on creeping bentgrass turf [J]. Crop Science, 1999, 39(4): 1142-1146. 被引量:1

二级参考文献71

  • 1Adams III WW, Demming-Adams B (1994). Carotenoid composition and down regulation of photosystem II in three conifer species during the winter. Physiol Plant, 92:451-458 被引量:1
  • 2Alamillo JM, Bartels D (2001). Effects of desiccation on photosynthesis pigments and the ELIR like dsp 22 protein complexes in the resurrection plant Craterostigma plantagineum. Plant Sci, 160:1161-1170 被引量:1
  • 3Barker DH, Adams III WW, Demming-Adams B, Logan BA, Verhoeven AS, Smith SD (2002). Nocturnally retained zeaxanthin does not remain engaged in a state primed for energy dissipation during the summer in two Yucca species growing in the Mojave desert. Plant Cell Environ, 25:95-103 被引量:1
  • 4Bassi R, Crace R, Cugini D, Sandona D (1999). Mutational analysis of a higher plant antenna protein provides identification of chromophores bound into multiple sites. Proc Natl Acad Sci USA, 96 (18): 10056-10061 被引量:1
  • 5Biswell B (1995). Carotenoid catabolism during leaf senescence and its control by light. J Biochem Phytobiol, 30:3-13 被引量:1
  • 6Bonk M, Hoffmann B, Vonlintig J, Schled M, Albabili S, Hobeika E, Kleinig H, Beyer P (1997). Chloroplast import of four carotenoid biosynthetic enzymes in vitro reveals differential fates prior to membrane binding and oligomeric assembly. Eur J Biochem, 247 (3): 942-950 被引量:1
  • 7Bungard RA, Ruban AV, Hibberd JM, Press MC, Horton P, Scholes J (1999). Unusual carotenoid composition and a new type of xanthophyll cycle in plants, Proc Natl Acad Sci USA, 96: 1135-1139 被引量:1
  • 8Cantrall A (2003). Singlet oxygen quenching by dietary carotenoids in a model membrane environment. Arch Biochem Biophys, 412 (1): 47-51 被引量:1
  • 9Chen G, Djuric Z (2001). Carotenoids are degraded by free radicals but do not affect lipid peroxidation in unilamellar liposomes under different oxygen tensions. FEBS Lett, 505:151-154 被引量:1
  • 10Chen LS, Cheng L (2003). Both xanthophyll cycle-dependent thermal dissipation and the antioxidant system are up-regulated in grape (Vitis labrusca L. cv. Concord) leaves response to N limitation. J Exp Bot, 54 (390): 2165-2175 被引量:1

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