首页> 外文期刊>Plant Cell Reports >Isolation and characterization of two YUCCA flavin monooxygenase genes from cultivated strawberry (Fragaria[NON-BREAKING SPACE]x[NON-BREAKING SPACE]ananassa Duch.).
【24h】

Isolation and characterization of two YUCCA flavin monooxygenase genes from cultivated strawberry (Fragaria[NON-BREAKING SPACE]x[NON-BREAKING SPACE]ananassa Duch.).

机译:栽培草莓中两个YUCCA黄素单加氧酶基因的分离和鉴定(草莓[NON-BREAKING SPACE] x [NON-BREAKING SPACE] ananassa Duch。)。

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

In strawberry (Fragaria x ananassa Duch.), auxin has been recognized as the main signal molecule coordinating the growth and initiation of ripening of fruits. The molecular mechanism regulating auxin biosynthesis in strawberry remains unknown. This project reports two YUCCA flavin monooxygenase genes FaYUC1-2 isolated from cultivated strawberry. FaYUC1 and FaYUC2 are most homologous to AtYUC6 and AtYUC4, respectively. Significant expression of FaYUC1-2 is found in vegetative meristems and reproductive organs, with overlapping but distinct patterns. During fruit development, both transcripts of FaYUC1 and FaYUC2 in achenes reach a peak around large green fruit (G2) stage, but the sudden rise in FaYUC2 transcript level is much steeper and begins earlier than that in FaYUC1. FaYUC2 is also obviously expressed in the receptacles from green fruits, hinting another auxin source for receptacle development, other than achenes. FaYUC1 over-expression Arabidopsis exhibits typical auxin hyper-accumulation phenotype in many aspects, such as the narrow and downward curled leaves, strong apical dominance, short and hairy root. It is also severely sterile, due to the disruption of floral meristems initiation and floral organs development. Transgenic analysis indicates that strawberry YUC gene may hold conserved role in auxin biosynthesis like their homologs in other plants. Integrated with the spatiotemporal expression features, these results led us to propose that FaYUC1-2 may involve in many developmental processes including flower and fruit development in strawberry. KEY MESSAGE: This paper is the first report of isolation and characterization of strawberry auxin biosynthesis genes. And their conserved functions in auxin biosynthesis were confirmed after ectopic expression.
机译:在草莓(Fragaria x ananassa Duch。)中,生长素已被认为是协调水果生长和成熟的主要信号分子。调节草莓生长素生物合成的分子机制仍然未知。该项目报告了从栽培草莓中分离出的两个YUCCA黄素单加氧酶基因FaYUC1-2。 FaYUC1和FaYUC2分别与AtYUC6和AtYUC4最同源。 FaYUC1-2的重要表达存在于营养分生组织和生殖器官中,具有重叠但截然不同的模式。在果实发育过程中,瘦果中FaYUC1和FaYUC2的两个转录本均在大的绿色水果(G2)阶段达到峰值,但FaYUC2转录本的突然升高比FaYUC1陡峭得多,并且开始较早。 FaYUC2也显然在绿色水果的容器中表达,暗示了除了瘦果以外的另一种生长素来源用于容器发育。 FaYUC1过表达拟南芥在许多方面均表现出典型的生长素高积累表型,如叶片狭窄和向下卷曲,根尖强壮,根短而有毛。由于花分生组织的启动和花器官的发育受到破坏,它也是严重不育的。转基因分析表明,草莓YUC基因可以像其他植物中的同源物一样在植物生长素的生物合成中发挥保守作用。结合时空表达特征,这些结果使我们提出FaYUC1-2可能参与许多发育过程,包括草莓的花和果实发育。关键信息:本文是草莓生长素生物合成基因的分离和鉴定的第一份报告。异位表达后证实了它们在生长素生物合成中的保守功能。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号