Flavonoids are differentially taken up and transported long distances in Arabidopsis

被引:195
作者
Buer, Charles S. [1 ]
Muday, Gloria K.
Djordjevic, Michael A.
机构
[1] Australian Natl Univ, Res Sch Biol Sci, Genom Interact Grp, Australian Res Council Ctr Excellence Integrat Le, Canberra, ACT 0200, Australia
[2] Wake Forest Univ, Dept Biol, Winston Salem, NC 27109 USA
关键词
D O I
10.1104/pp.107.101824
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Flavonoids are synthesized in response to developmental and environmental signals and perform many functions in plants. Arabidopsis ( Arabidopsis thaliana) roots grown in complete darkness do not accumulate flavonoids since the expression of genes encoding enzymes of flavonoid biosynthesis is light dependent. Yet, flavonoids accumulate in root tips of plants with light-grown shoots and light-shielded roots, consistent with shoot-to-root flavonoid movement. Using fluorescence microscopy, a selective flavonoid stain, and localized aglycone application to transparent testa mutants, we showed that flavonoids accumulated in tissues distal to the application site, indicating uptake and movement systems. This was confirmed by time-course fluorescence experiments and high-performance liquid chromatography. Flavonoid applications to root tips resulted in basipetal movement in epidermal layers, with subsequent fluorescence detected 1 cm from application sites after 1 h. Flavonoid application to midroot or cotyledons showed movement of flavonoids toward the root tip mainly in vascular tissue. Naringenin, dihydrokaempferol, and dihydroquercetin were taken up at the root tip, midroot, or cotyledons and traveled long distances via cell-to-cell movement to distal tissues, followed by conversion to quercetin and kaempferol. In contrast, kaempferol and quercetin were only taken up at the root tip. Using ATP-binding cassette (ABC) transporter and H+-ATPase inhibitors suggested that a multidrug resistance-associated protein ABCC transporter facilitated flavonoid movement away from the application site.
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收藏
页码:478 / 490
页数:13
相关论文
共 64 条
[41]   Localization of flavonoid enzymes in Arabidopsis roots [J].
Saslowsky, D ;
Winkel-Shirley, B .
PLANT JOURNAL, 2001, 27 (01) :37-48
[42]   An allelic series for the chalcone synthase locus in Arabidopsis [J].
Saslowsky, DE ;
Dana, CD ;
Winkel-Shirley, B .
GENE, 2000, 255 (02) :127-138
[43]   Identification of the Arabidopsis thaliana flavonoid 3′-hydroxylase gene and functional expression of the encoded P450 enzyme [J].
Schoenbohm, C ;
Martens, S ;
Eder, C ;
Forkmann, G ;
Weisshaar, B .
BIOLOGICAL CHEMISTRY, 2000, 381 (08) :749-753
[44]   Changes in cytosolic pH within Arabidopsis root columella cells play a key role in the early signaling pathway for root gravitropism [J].
Scott, AC ;
Allen, NS .
PLANT PHYSIOLOGY, 1999, 121 (04) :1291-1298
[45]   DIFFERENTIAL VISUALIZATION OF TRANSPARENT TESTA MUTANTS IN ARABIDOPSIS-THALIANA [J].
SHEAHAN, JJ ;
RECHNITZ, GA .
ANALYTICAL CHEMISTRY, 1993, 65 (07) :961-963
[46]   The colorless flavonoids of Arabidopsis thaliana (Brassicaceae).: I.: A model system to study the orthodihydroxy structure [J].
Sheahan, JJ ;
Cheong, H ;
Rechnitz, GA .
AMERICAN JOURNAL OF BOTANY, 1998, 85 (04) :467-475
[47]   ANALYSIS OF ARABIDOPSIS MUTANTS DEFICIENT IN FLAVONOID BIOSYNTHESIS [J].
SHIRLEY, BW ;
KUBASEK, WL ;
STORZ, G ;
BRUGGEMANN, E ;
KOORNNEEF, M ;
AUSUBEL, FM ;
GOODMAN, HM .
PLANT JOURNAL, 1995, 8 (05) :659-671
[48]   Arabidopsis AtGSTF2 is regulated by ethylene and auxin, and encodes a glutathione S-transferase that interacts with flavonoids [J].
Smith, AP ;
Nourizadeh, SD ;
Peer, WA ;
Xu, JH ;
Bandyopadhyay, A ;
Murphy, AS ;
Goldsbrough, PB .
PLANT JOURNAL, 2003, 36 (04) :433-442
[49]   MAX4 and RMS1 are orthologous dioxygenase-like genes that regulate shoot branching in Arabidopsis and pea [J].
Sorefan, K ;
Booker, J ;
Haurogné, K ;
Goussot, M ;
Bainbridge, K ;
Foo, E ;
Chatfield, S ;
Ward, S ;
Beveridge, C ;
Rameau, C ;
Leyser, O .
GENES & DEVELOPMENT, 2003, 17 (12) :1469-1474
[50]   Involvement of a soybean ATP-binding cassette -: Type transporter in the secretion of genistein, a signal flavonoid in legume-Rhizobium Symbiosis1 [J].
Sugiyama, Akifumi ;
Shitan, Nobukazu ;
Yazaki, Kazufumi .
PLANT PHYSIOLOGY, 2007, 144 (04) :2000-2008