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本文引用的文献

1
Plant embryogenesis: zygote to seed.植物胚胎发生:从受精卵到种子。
Science. 1994 Oct 28;266(5185):605-14. doi: 10.1126/science.266.5185.605.
2
Phase change and the regulation of shoot morphogenesis in plants.相变和植物器官形态发生的调控。
Science. 1990 Nov 16;250(4983):923-30. doi: 10.1126/science.250.4983.923.
3
A Homoeotic Mutant of Arabidopsis thaliana with Leafy Cotyledons.拟南芥的同源突变体,具有叶状子叶。
Science. 1992 Dec 4;258(5088):1647-50. doi: 10.1126/science.258.5088.1647.
4
EMF, an Arabidopsis Gene Required for Vegetative Shoot Development.EMF,一个营养茎发育所需的拟南芥基因。
Science. 1992 Dec 4;258(5088):1645-7. doi: 10.1126/science.258.5088.1645.
5
In Vivo Inhibition of Seed Development and Reserve Protein Accumulation in Recombinants of Abscisic Acid Biosynthesis and Responsiveness Mutants in Arabidopsis thaliana.拟南芥脱落酸生物合成与反应突变体重组体中种子发育及贮藏蛋白积累的体内抑制作用
Plant Physiol. 1989 Jun;90(2):463-9. doi: 10.1104/pp.90.2.463.
6
Normal and Abnormal Development in the Arabidopsis Vegetative Shoot Apex.拟南芥营养茎尖的正常与异常发育
Plant Cell. 1992 Jun;4(6):631-643. doi: 10.1105/tpc.4.6.631.
7
Embryogenesis in Higher Plants: An Overview.高等植物的胚胎发生:概述
Plant Cell. 1993 Oct;5(10):1361-1369. doi: 10.1105/tpc.5.10.1361.
8
Roles of the GLABROUS1 and TRANSPARENT TESTA GLABRA Genes in Arabidopsis Trichome Development.GLABROUS1和透明种皮无毛基因在拟南芥毛状体发育中的作用
Plant Cell. 1994 Aug;6(8):1065-1076. doi: 10.1105/tpc.6.8.1065.
9
Leafy Cotyledon Mutants of Arabidopsis.拟南芥的多子叶突变体
Plant Cell. 1994 Aug;6(8):1049-1064. doi: 10.1105/tpc.6.8.1049.
10
Cell Differentiation and Morphogenesis Are Uncoupled in Arabidopsis raspberry Embryos.拟南芥raspberry胚胎中的细胞分化与形态发生解偶联。
Plant Cell. 1994 Dec;6(12):1713-1729. doi: 10.1105/tpc.6.12.1713.

叶状子叶1是拟南芥晚期胚胎发育和子叶身份的关键调节因子。

LEAFY COTYLEDON1 Is an Essential Regulator of Late Embryogenesis and Cotyledon Identity in Arabidopsis.

作者信息

West MAL., Yee K. M., Danao J., Zimmerman J. L., Fischer R. L., Goldberg R. B., Harada J. J.

机构信息

Section of Plant Biology, Division of Biological Sciences, University of California, Davis, California 95616.

出版信息

Plant Cell. 1994 Dec;6(12):1731-1745. doi: 10.1105/tpc.6.12.1731.

DOI:10.1105/tpc.6.12.1731
PMID:12244233
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC160558/
Abstract

LEAFY COTYLEDON1 (LEC1) is an embryo defective mutation that affects cotyledon identity in Arabidopsis. Mutant cotyledons possess trichomes that are normally a leaf trait in Arabidopsis, and the cellular organization of these organs is intermediate between that of cotyledons and leaves from wild-type plants. We present several lines of evidence that indicate that the control of late embryogenesis is compromised by the mutation. First, mutant embryos are desiccation intolerant, yet embryos can be rescued before they dry to yield homozygous recessive plants that produce defective embryos exclusively. Second, although many genes normally expressed during embryonic development are active in the mutant, at least one maturation phase-specific gene is not activated. Third, the shoot apical meristem is activated precociously in mutant embryos. Fourth, in mutant embryos, several genes characteristic of postgerminative development are expressed at levels typical of wild-type seedlings rather than embryos. We conclude that postgerminative development is initiated prematurely and that embryonic and postgerminative programs operate simultaneously in mutant embryos. The pleiotropic effects of the mutation indicate that the LEC1 gene plays a fundamental role in regulating late embryogenesis. The role of LEC1 and its relationship to other genes involved in controlling late embryonic development are discussed.

摘要

叶状子叶1(LEC1)是一种胚胎缺陷型突变,影响拟南芥中子叶的特性。突变体的子叶具有毛状体,而毛状体在拟南芥中通常是叶片的特征,并且这些器官的细胞组织介于野生型植物子叶和叶片的细胞组织之间。我们提供了几条证据表明该突变损害了晚期胚胎发育的控制。首先,突变体胚胎不耐干燥,但胚胎在干燥之前可以挽救,从而产生仅产生有缺陷胚胎的纯合隐性植株。其次,尽管许多通常在胚胎发育过程中表达的基因在突变体中是活跃的,但至少有一个成熟阶段特异性基因未被激活。第三,突变体胚胎中的茎尖分生组织过早被激活。第四,在突变体胚胎中,几个萌发后发育特征性基因的表达水平是野生型幼苗而非胚胎的典型水平。我们得出结论,萌发后发育过早开始,并且胚胎和萌发后程序在突变体胚胎中同时运行。该突变的多效性效应表明LEC1基因在调节晚期胚胎发育中起基本作用。讨论了LEC1的作用及其与参与控制晚期胚胎发育的其他基因的关系。