TRANSPORT OF IAA AND ACC IN FLORAL ORGANS OF IPOMOEA-NIL (CONVOLVULACEAE)

被引:3
作者
KISS, HG
KONING, RE
DAIE, J
机构
[1] RUTGERS STATE UNIV,DEPT BIOL SCI,PISCATAWAY,NJ 08854
[2] EASTERN CONNECTICUT STATE UNIV,DEPT BIOL,WILLIMANTIC,CT 06226
[3] RUTGERS STATE UNIV,DEPT SOILS & CROPS,NEW BRUNSWICK,NJ 08903
关键词
D O I
10.2307/2445088
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
The involvement of the stamens as transporters of plant growth regulators in flowers was examined by measuring the movement of C-14-indole-3-acetic acid (IAA) and C-14-1-aminocyclopropane-1-carboxylic acid (ACC) through floral organs of Ipomoea nil. During the transport of C-14-IAA through isolated filament segments, the polar accumulation of C-14-IAA in receiver blocks increased with time during filament development, which correlated with polar efflux rates at older stages of filament development. An inhibitor of polar IAA transport, 2,3,5-triiodobenzoic acid, disrupted the polarity of auxin transport by reducing the movement of C-14-IAA from filaments into receiver blocks. Transport of both C-14-IAA and C-14-ACC through filaments into other floral organs also was monitored in isolated flower buds in the laboratory and intact buds in the greenhouse. In isolated and intact buds 21 hr before anthesis, substantially higher levels of isotope were recovered in corolla tissue when C-14-ACC was transported through the filaments than when C-14-IAA was transported from the filaments. In isolated buds, substantial levels of both isotopes accumulated in the pistil (69 hr and 45 hr before anthesis), but minimal amounts were observed in receptacle and calyx tissues (69 hr to 21 hr before anthesis). In intact buds, high levels of both isotopes were recovered in receptacle, calyx, and pistil tissues (69 hr to 21 hr before anthesis). The results from this study support the hypothesis that Ipomoea stamens are transporters for ACC and IAA to regulate ethylene production in the corolla and other floral tissues.
引用
收藏
页码:672 / 679
页数:8
相关论文
共 33 条
[21]   Structural responses of Ipomoea nil (L.) Roth 'Scarlet O'Hara' (Convolvulaceae) exposed to ozone [J].
Moura, Barbara Baesso ;
de Souza, Silvia Ribeiro ;
Alves, Edenise Segala .
ACTA BOTANICA BRASILICA, 2011, 25 (01) :122-129
[22]   Pollinator visitation and female reproductive success in two floral color morphs of Ipomoea aquatica (Convolvulaceae) [J].
Piriya Hassa ;
Paweena Traiperm ;
Alyssa B. Stewart .
Plant Systematics and Evolution, 2020, 306
[23]   Variation in floral morphology and plant reproductive success in four Ipomoea species (Convolvulaceae) with contrasting breeding systems [J].
Delgado-Davila, R. ;
Marten-Rodriguez, S. ;
Huerta-Ramos, G. .
PLANT BIOLOGY, 2016, 18 (06) :903-912
[24]   Floral nectaries, nectar production dynamics and chemical composition in six Ipomoea species (Convolvulaceae) in relation to pollinators [J].
Galetto, L ;
Bernardello, G .
ANNALS OF BOTANY, 2004, 94 (02) :269-280
[25]   INVOLVEMENT OF THE IAA-REGULATED ACC OXIDASE GENE PNACO3 IN PHARBITIS NIL FLOWER INHIBITION [J].
Wilmowicz, Emilia ;
Frankowski, Kamil ;
Kucko, Agata ;
Kesy, Jacek ;
Kopcewicz, Jan .
ACTA BIOLOGICA CRACOVIENSIA SERIES BOTANICA, 2014, 56 (01) :90-96
[26]   Selection through male function favors smaller floral display size in the common morning glory Ipomoea purpurea (Convolvulaceae) [J].
Lau, Jennifer A. ;
Miller, Richard E. ;
Rausher, Mark D. .
AMERICAN NATURALIST, 2008, 172 (01) :63-74
[27]   Light- and IAA-regulated ACC synthase gene (PnACS) from Pharbitis nil and its possible role in IAA-mediated flower inhibition [J].
Frankowski, Kamil ;
Kesy, Jacek ;
Wojciechowski, Waldemar ;
Kopcewicz, Jan .
JOURNAL OF PLANT PHYSIOLOGY, 2009, 166 (02) :192-202
[28]   The FEATHERED gene is required for polarity establishment in lateral organs especially flowers of the Japanese morning glory (Ipomoea nil) [J].
Iwasaki, Mayumi ;
Nitasaka, Eiji .
PLANT MOLECULAR BIOLOGY, 2006, 62 (06) :913-925
[29]   Comparative abundance of the large subunit of rubisco in aerial organs of the Japanese morning glory [Ipomoea (Pharbitis) nil] suggests a photosynthetic role for sepals [J].
Bassett, CL .
JOURNAL OF THE AMERICAN SOCIETY FOR HORTICULTURAL SCIENCE, 1999, 124 (01) :67-70
[30]   HOW CAN THE ELECTRICAL POLARITY OF AXIAL ORGANS REGULATE PLANT-GROWTH AND IAA TRANSPORT [J].
MEDVEDEV, SS ;
MARKOVA, IV .
PHYSIOLOGIA PLANTARUM, 1990, 78 (01) :38-42