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首页> 外文期刊>Sexual plant reproduction >The influence of ethylene perception on sex expression in melon (Cucumis melo L.) as assessed by expression of the mutant ethylene receptor, At-etrl-1, under the control of constitutive and floral targeted promoters
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The influence of ethylene perception on sex expression in melon (Cucumis melo L.) as assessed by expression of the mutant ethylene receptor, At-etrl-1, under the control of constitutive and floral targeted promoters

机译:乙烯感知对甜瓜(Cucumis melo L.)性表达的影响,通过在组成型和花卉靶向启动子的控制下突变乙烯受体At-etrl-1的表达来评估

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摘要

Sexual diversity expressed by Curcurbitaceae species is a primary example of developmental plasticity in plants. Ethylene, which promotes femaleness (carpel development), plays a key role in sex determination. We sought to determine the critical location for ethylene perception in developing floral primodia. The dominant negative Arabidopsis ethylene response mutant gene, etrl-1, was introduced into melon (Cucumis melo L.) plants under control of the constitutive cauliflower mosaic virus (CaMV) 35S promoter, or floral-targeted Apetela3 (APS) and Crab's Claw (CRQ promoters, which in Arabidopsis, promote expression in petal and stamen, and carpel and nectary primordia, respectively. Based on effects of exogenous ethylene, it was predicted that inhibition of ethylene perception by carpel primordia would inhibit carpel development. Constitutive expression of etrl-1 caused several phenotypes associated with ethylene insensitivity, verifying that etrl-1 inhibits ethylene perception in the heterologous melon system. Carpel-bearing bud production was essentially abolished in 35S::etrl-l melons, providing direct demonstration of the requirement for ethylene perception for carpel development. CRC::etrl-l plants, however, showed enhanced femaleness as manifested by earlier and increased number of carpel-bearing buds, and production of female (rather than bisexual) buds. Despite increased carpel-bearing bud formation, a greater proportion of the CRC::etrl-l carpel-bearing buds aborted before anthesis. AP3::etrl-l plants showed increased maleness by nearly exclusive staminate flower production, and poorly developed carpels in the rare bisexual flowers. These results indicate that ethylene perception by the stamen (or petal) primordia plays a critical role inpromoting carpel development at the time of sex determination, while ethylene perception by the carpel is important for maturation of carpel-bearing flowers to anthesis.
机译:葫芦科物种表达的性多样性是植物发育可塑性的主要例子。乙烯可提高女性性(卡普尔发育),在性别决定中起关键作用。我们试图确定在发展花卉初生植物中乙烯感知的关键位置。在本构性花椰菜花叶病毒(CaMV)35S启动子或以花为目标的Apetela3(APS)和Crab's Claw(拟南芥中的CRQ启动子分别促进花瓣和雄蕊,心皮和蜜腺原基中的表达,基于外源乙烯的影响,可以预测,心皮原基抑制乙烯的感知会抑制心皮的发育。 1引起了几种与乙烯不敏感相关的表型,证明etrl-1抑制异源甜瓜系统中的乙烯感知。在35S :: etrl-1甜瓜中基本上消除了产生心皮的芽,直接证明了对乙烯的感知然而,CRC :: etrl-1植物显示出雌性增强,如早期和增多的汽车所示产卵的芽,以及雌性(而不是双性恋)芽的产生。尽管增加了含心皮的芽的形成,但更大比例的CRC :: etrl-1带心皮的芽在花期前中止了。 AP3 :: etrl-1植物显示出雄性,几乎是排他性的固定花产生,而罕见的双性花中的心皮发育不良。这些结果表明,在性别确定时,雄蕊(或花瓣)原基对乙烯的感知在促进心皮发育方面起着关键作用,而心皮的乙烯对保持心皮的花到花的成熟很重要。

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