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Thidiazuron Triggers Morphogenesis in Rosa canina L. Protocorm-Like Bodies by Changing Incipient Cell Fate

机译:噻二氮隆通过改变初始细胞命运触发Rosa canina L.原球茎样体的形态发生。

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摘要

Thidiazuron (N-phenyl-N′-1,2,3-thiadiazol-5-ylurea; TDZ) is an artificial plant growth regulator that is widely used in plant tissue culture. Protocorm-like bodies (PLBs) induced by TDZ serve as an efficient and rapid in vitro regeneration system in Rosa species. Despite this, the mechanism of PLB induction remains relatively unclear. TDZ, which can affect the level of endogenous auxins and cytokinins, converts the cell fate of rhizoid tips and triggers PLB formation and plantlet regeneration in Rosa canina L. In callus-rhizoids, which are rhizoids that co-develop from callus, auxin and a Z-type cytokinin accumulated after applying TDZ, and transcription of the auxin transporter gene RcPIN1 was repressed. The expression of RcARF4, RcRR1, RcCKX2, RcCKX3, and RcLOG1 increased in callus-rhizoids and rhizoid tips while the transcription of an auxin response factor (RcARF1) and auxin transport proteins (RcPIN2, RcPIN3) decreased in callus-rhizoids but increased in rhizoid tips. In situ hybridization of rhizoids showed that RcWUS and RcSERK1 were highly expressed in columella cells and root stem cells resulting in the conversion of cell fate into shoot apical meristems or embryogenic callus. In addition, transgenic XVE::RcWUS lines showed repressed RcWUS overexpression while RcWUS had no effect on PLB morphogenesis. Furthermore, higher expression of the root stem cell marker RcWOX5 and root stem cell maintenance regulator genes RcPLT1 and RcPLT2 indicated the presence of a dedifferentiation developmental pathway in the stem cell niche of rhizoids. Viewed together, our results indicate that different cells in rhizoid tips acquired regeneration competence after induction by TDZ. A novel developmental pathway containing different cell types during PLB formation was identified by analyzing the endogenous auxin and cytokinin content. This study also provides a deeper understanding of the mechanisms underlying in vitro regeneration in Rosa.
机译:噻二唑(N-苯基-N'-1,2,3-噻二唑-5-基脲; TDZ)是一种人工植物生长调节剂,广泛用于植物组织培养。 TDZ诱导的原球茎样体(PLB)可作为Rosa物种中高效而快速的体外再生系统。尽管如此,PLB诱导的机制仍然相对不清楚。 TDZ可能会影响内源性生长素和细胞分裂素的水平,它会转化类根尖的细胞命运,并触发Rosa canina L中的PLB形成和植株再生。应用TDZ后Z型细胞分裂素积聚,生长素转运蛋白基因RcPIN1的转录被抑制。 RcARF4,RcRR1,RcCKX2,RcCKX3和RcLOG1的表达在愈伤组织-根状茎和根状茎尖端中增加,而生长素应答因子(RcARF1)和生长素转运蛋白(RcPIN2,RcPIN3)的转录在愈伤组织-根状茎中减少,但在根状茎中增加提示。根瘤菌的原位杂交表明,RcWUS和 RcSERK1 在小肠细胞和根干细胞中高表达,导致细胞命运转化为茎尖分生组织或胚性愈伤组织。另外,转基因 XVE :: RcWUS 品系显示抑制的 RcWUS 过表达,而 RcWUS 对PLB形态没有影响。此外,根干细胞标记 RcWOX5 和根干细胞维持调节基因 RcPLT1 RcPLT2 的高表达表明存在去分化发育途径在根状茎的干细胞生态位中。综上所述,我们的结果表明,由TDZ诱导后,根状茎尖端的不同细胞获得了再生能力。通过分析内源性生长素和细胞分裂素含量,鉴定出了在PLB形成过程中包含不同细胞类型的新型发育途径。这项研究还提供了对 Rosa 体外再生机制的更深入了解。

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