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CRC::etr1-1转基因表达对转基因甜瓜(黄瓜甜瓜)乙烯生成、性别表达、坐果和果实成熟的影响。

Effect of CRC::etr1-1 transgene expression on ethylene production, sex expression, fruit set and fruit ripening in transgenic melon (Cucumis melo L.).

作者信息

Switzenberg Jessica A, Beaudry Randy M, Grumet Rebecca

机构信息

Graduate Program in Genetics, Michigan State University, 1066 Bogue Street, East Lansing, MI, 48824, USA.

出版信息

Transgenic Res. 2015 Jun;24(3):497-507. doi: 10.1007/s11248-014-9853-5. Epub 2014 Nov 22.

Abstract

Ethylene is a key factor regulating sex expression in cucurbits. Commercial melons (Cucumis melo L.) are typically andromonoecious, producing male and bisexual flowers. Our prior greenhouse studies of transgenic melon plants expressing the dominant negative ethylene perception mutant gene, etr1-1, under control of the carpel- and nectary-primordia targeted CRAB'S CLAW (CRC) promoter showed increased number and earlier appearance of carpel-bearing flowers. To further investigate this phenomenon which could be potentially useful for earlier fruit production, we observed CRC::etr1-1 plants in the field for sex expression, fruit set, fruit development, and ripening. CRC::etr1-1 melon plants showed increased number of carpel-bearing open flowers on the main stem and earlier onset by 7-10 nodes. Additional phenotypes observed in the greenhouse and field were conversion of approximately 50% of bisexual buds to female, and elongated ovaries and fruits. Earlier and greater fruit set occurred on the transgenic plants. However, CRC::etr1-1 plants had greater abscission of young fruit, and smaller fruit, so that final yield (kg/plot) was equivalent to wild type. Earlier fruit set in line M5 was accompanied by earlier appearance of ripe fruit. Fruit from line M15 frequently did not exhibit external ripening processes of rind color change and abscission, but when cut open, the majority showed a ripe or overripe interior accompanied by elevated internal ethylene. The non-ripening external phenotype in M15 fruit corresponded with elevated etr1-1 transgene expression in the exocarp. These results provide insight into the role of ethylene perception in carpel-bearing flower production, fruit set, and ripening.

摘要

乙烯是调节葫芦科植物性别表达的关键因素。商业甜瓜(甜瓜属)通常是雄全同株,开雄花和两性花。我们之前在温室中对在心皮和蜜腺原基靶向的CRAB'S CLAW(CRC)启动子控制下表达显性负性乙烯感知突变基因etr1-1的转基因甜瓜植株进行的研究表明,带有心皮的花的数量增加且出现得更早。为了进一步研究这一可能对早期果实生产有潜在用途的现象,我们在田间观察了CRC::etr1-1植株的性别表达、坐果、果实发育和成熟情况。CRC::etr1-1甜瓜植株主茎上带有心皮的开放花的数量增加,且起始节位提前7 - 10节。在温室和田间观察到的其他表型包括约50%的两性芽转变为雌花,以及子房和果实伸长。转基因植株上坐果更早且更多。然而,CRC::etr1-1植株的幼果脱落更多,果实更小,因此最终产量(千克/小区)与野生型相当。M5品系坐果提前伴随着成熟果实更早出现。M15品系的果实通常不表现出果皮颜色变化和脱落等外部成熟过程,但切开后,大多数果实内部显示成熟或过熟,同时内部乙烯含量升高。M15果实的非成熟外部表型与外果皮中etr1-1转基因表达升高相对应。这些结果为乙烯感知在带有心皮的花的产生、坐果和成熟中的作用提供了见解。

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