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Morphological Characterization of Flower Buds Development and Related Gene Expression Profiling at Bud Break Stage in Heterodichogamous Cyclocarya paliurus (Batal.) lljinskaja

机译:异特异于配子的Cyclocarya paliurus(Batal。)lljinskaja花芽发育过程中花芽发育的形态学表征和相关基因表达谱

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摘要

(Batal.) Iljinskaja, a unique species growing in southern China, is a multi-function tree species with medicinal, healthcare, material, and ornamental values. So far, sexual reproduction is the main method for extensive cultivation of plantations, but this is limited by low seed plumpness resulted from the character of heterodichogamy. Phenological observations have revealed the asynchronism of flower development in this species. However, its molecular mechanism remains largely unknown. To reveal molecular mechanism of heterodichogamy in , transcriptome of female (F) and male (M) buds from two mating types (protandry, PA; protogyny, PG) at bud break stage were sequenced using Illumina Hiseq 4000 platform. The expression patterns of both 32 genes related to flowering and 58 differentially expressed transcription factors (DETFs) selected from 6 families were divided four groups (PG-F, PG-M, PA-F, and PA-M) into two categories: first flowers (PG-F and PA-M) and later flowers (PA-F and PG-M). The results indicated that genes related to plant hormones (IAA, ABA, and GA) synthesis and response, glucose metabolism, and transcription factors (especially in MIKC family) played significant roles in regulating asynchronism of male and female flowers in the same mating type. The expression of DETFs showed two patterns. One contained DETFs up-regulated in first flowers in comparison to later flowers, and the other was the reverse. Nine genes related to flowering were selected for qRT-PCR to confirm the accuracy of RNA-seq, and generally, the RPKM values of these genes were consistent with the result of qRT-PCR. The results of this work could improve our understanding in asynchronism of floral development within one mating type in at transcriptional level, as well as lay a foundation for further study in heterodichogamous plants.
机译:(Batal。)Iljinskaja是生长在中国南部的独特树种,是一种具有药用,保健,材料和观赏价值的多功能树种。到目前为止,有性繁殖是人工林广泛种植的主要方法,但是由于异种配偶的特性导致种子饱满度低,这受到了限制。物候观察表明,该物种的花朵发育不同步。然而,其分子机制仍然很大程度上未知。为了揭示异双歧杆菌的分子机制,使用Illumina Hiseq 4000平台对芽交期两种交配类型(protandry,PA; protogyny,PG)的雌性(F)和雄性(M)芽的转录组进行了测序。从6个科中选择的32个与开花相关的基因和5​​8个差异表达的转录因子(DETF)的表达模式分为四类(PG-F,PG-M,PA-F和PA-M),分为两类:第一类花(PG-F和PA-M)和后来的花(PA-F和PG-M)。结果表明,与植物激素(IAA,ABA和GA)的合成和响应,葡萄糖代谢和转录因子(尤其是MIKC家族)有关的基因在调节同一交配类型的雄花和雌花的异步性中起着重要作用。 DETF的表达表现出两种模式。与后来的花朵相比,一个包含在第一朵花中上调的DETF,而另一种则相反。选择9个与开花相关的基因进行qRT-PCR,以确认RNA-seq的准确性,通常,这些基因的RPKM值与qRT-PCR的结果一致。这项工作的结果可以增进我们对转录水平上一种交配类型内花卉发育异步性的理解,并为进一步研究异双歧植物奠定基础。

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