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一种受生长素下调的细胞壁蛋白抑制胡萝卜(Daucus carota (L.))的细胞扩张。

A cell wall protein down-regulated by auxin suppresses cell expansion in Daucus carota (L.).

作者信息

Holk A, Klumpp L, Scherer G F E

机构信息

Universität Hannover, Institut für Zierpflanzenbau, Baumschule und Pflanzenzuchtung, Germany.

出版信息

Plant Mol Biol. 2002 Sep;50(2):295-305. doi: 10.1023/a:1016052613196.

Abstract

We investigated the function of the auxin-regulated cell wall gene DC 2.15, a member of a small gene family, present in Daucus carota (L.) and other plants. Cultured cells derived from carrot hypocotyls transformed by the DC 2.15 cDNA in antisense direction were ten-fold longer than wild-type cells, indicating a function of the corresponding protein in suppression of cell expansion. The analysis of carrot plants expressing the DC2.15 gene in antisense direction showed that the corresponding protein and/or related proteins probably are involved in leaf and vascular bundle development. The antisense plants generally displayed a retarded growth phenotype and delayed greening in comparison to wild-type plants. The asymmetric architecture of the wild-type leaves was degenerated in the DC 2.15 antisense plants and the leaves showed a torsion within and along their major vein. The vascular bundles showed a lowered ratio of the phloem/xylem area in cross sections of the leaf middle vein whereas the bundle sheath and the cambium showed no obvious phenotype. Expression of a promoter-GUS construct was found primarily in vascular bundles of stems, leaves and in the nectar-producing flower discs. The observed pleiotropic antisense phenotype indicates, by loss of function, that one or several related cell wall proteins of this gene family are necessary to realize several complex developmental processes.

摘要

我们研究了生长素调节的细胞壁基因DC 2.15的功能,该基因是一个小基因家族的成员,存在于胡萝卜(Daucus carota (L.))和其他植物中。由反义方向的DC 2.15 cDNA转化的胡萝卜下胚轴来源的培养细胞比野生型细胞长十倍,这表明相应蛋白质在抑制细胞扩张中发挥作用。对反义表达DC2.15基因的胡萝卜植株的分析表明,相应蛋白质和/或相关蛋白质可能参与叶片和维管束发育。与野生型植株相比,反义植株通常表现出生长迟缓的表型和延迟的绿化。野生型叶片的不对称结构在DC 2.15反义植株中退化,叶片在主脉内部和沿着主脉出现扭转。在叶片中脉横切面上,维管束的韧皮部/木质部面积比降低,而维管束鞘和形成层没有明显的表型。启动子-GUS构建体的表达主要在茎、叶的维管束以及产蜜的花盘中发现。观察到的多效反义表型通过功能丧失表明,该基因家族的一种或几种相关细胞壁蛋白对于实现几个复杂的发育过程是必需的。

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