生物
MADS箱
原基
合子
胚胎发生
基因
胚胎
雄蕊
遗传学
细胞生物学
体细胞
胚胎发生
植物
拟南芥
花粉
突变体
作者
Sigrid Heuer,Susanne Hansen,Jörg Bantin,Reinhold Brettschneider,Erhard Kranz,Horst Lörz,Thomas Dresselhaus
出处
期刊:Plant Physiology
[Oxford University Press]
日期:2001-09-01
卷期号:127 (1): 33-45
被引量:97
摘要
Abstract MADS box genes represent a large gene family of transcription factors with essential functions during flower development and organ differentiation processes in plants. Addressing the question of whether MADS box genes are involved in the regulation of the fertilization process and early embryo development, we have isolated two novel MADS box cDNAs, ZmMADS1 and ZmMADS3, from cDNA libraries of maize (Zea mays) pollen and egg cells, respectively. The latter gene is allelic to ZAP1. Transcripts of both genes are detectable in egg cells and in in vivo zygotes of maize. ZmMADS1 is additionally expressed in synergids and in central and antipodal cells. During early somatic embryogenesis, ZmMADS1 expression is restricted to cells with the capacity to form somatic embryos, and to globular embryos at later stages. ZmMADS3 is detectable only by more sensitive reverse transcriptase-PCR analyses, but is likewise expressed in embryogenic cultures. Both genes are not expressed in nonembryogenic suspension cultures and in isolated immature and mature zygotic embryos. During flower development, ZmMADS1 andZmMADS3 are co-expressed in all ear spikelet organ primordia at intermediate stages. Among vegetative tissues,ZmMADS3 is expressed in stem nodes and displays a gradient with highest expression in the uppermost node. Transgenic maize plants ectopically expressing ZmMADS3are reduced in height due to a reduced number of nodes. Reduction of seed set and male sterility were observed in the plants. The latter was due to absence of anthers. Putative functions of the genes during reproductive and vegetative developmental processes are discussed.
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