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来自慈竹的突变 IAA21 基因通过与 ARF5 相互作用抑制转基因烟草的茎和根生长。

Mutant IAA21 genes from Dendrocalamus sinicus Chia et J. L. Sun inhibit stem and root growth in transgenic tobacco by interacting with ARF5.

机构信息

College of Life Science, Xinjiang Normal University, Xinyi Road, Shayibake District, Urumqi, 830054, PR China; Institute of Highland Forest Science, Chinese Academy of Forestry, Bailongsi, Panlong District, Kunming, 650233, PR China.

Institute of Highland Forest Science, Chinese Academy of Forestry, Bailongsi, Panlong District, Kunming, 650233, PR China.

出版信息

Plant Physiol Biochem. 2023 Aug;201:107827. doi: 10.1016/j.plaphy.2023.107827. Epub 2023 Jun 7.

Abstract

Woody bamboos are important resource of industrial fibres. Auxin signaling plays a key role in multiple plant developmental processes, as yet the role of auxin/indole acetic acid (Aux/IAA) in culm development of woody bamboos has not been previously characterized. Dendrocalamus sinicus Chia et J. L. Sun is the largest woody bamboo documented in the world. Here, we identified two alleles of DsIAA21 gene (sIAA21 and bIAA21) from the straight- and bent-culm variants of D. sinicus, respectively, and studied how the domains I, i, and II of DsIAA21 affect the gene transcriptional repression. The results showed that bIAA21 expression was rapidly induced by exogenous auxin in D. sinicus. In transgenic tobacco, sIAA21 and bIAA21 mutated in domains i, and II significantly regulated plant architecture and root development. Stem cross sections revealed that parenchyma cells were smaller in transgenic plants than that in wild type plants. Domain i mutation changed the leucine and proline at position 45 to proline and leucine (siaa21 and biaa21) strongly repressed cell expansion and root elongation by reducing the gravitropic response. Substitution of isoleucine with valine in domain II of the full length DsIAA21 resulted in dwarf stature in transgenic tobacco plants. Furthermore, the DsIAA21 interacted with auxin response factor 5 (ARF5) in transgenic tobacco plants, suggesting that DsIAA21 might inhibit stem and root elongation via interacting with ARF5. Taken together, our data indicated that DsIAA21 was a negative regulator of plant development and suggested that amino acid differences in domain i of sIAA21 versus bIAA21 affected their response to auxin, and might play a key role in the formation of the bent culm variant in D. sinicus. Our results not only shed a light on the morphogenetic mechanism in D. sinicus, but also provided new insights into versatile function of Aux/IAAs in plants.

摘要

木本竹类是工业纤维的重要资源。生长素信号在多个植物发育过程中起着关键作用,但生长素/吲哚乙酸(Aux/IAA)在木本竹类茎发育中的作用尚未得到充分描述。慈竹是世界上记录到的最大的木本竹种。在这里,我们分别从慈竹的直秆和弯秆变种中鉴定出两个 DsIAA21 基因(sIAA21 和 bIAA21)等位基因,并研究了 DsIAA21 的结构域 I、i 和 II 如何影响基因转录抑制。结果表明,bIAA21 在慈竹中对外源生长素的诱导表达迅速。在转基因烟草中,结构域 i 和 II 发生突变的 sIAA21 和 bIAA21 显著调节了植物的形态结构和根系发育。茎的横切面显示,转基因植株的薄壁细胞比野生型植株小。结构域 i 的突变将位置 45 上的亮氨酸和脯氨酸突变为脯氨酸和亮氨酸(siaa21 和 biaa21),通过降低向地性反应强烈抑制细胞扩展和根伸长。全长 DsIAA21 结构域 II 中的异亮氨酸被缬氨酸取代导致转基因烟草植株矮小。此外,DsIAA21 在转基因烟草植株中与生长素反应因子 5(ARF5)相互作用,表明 DsIAA21 可能通过与 ARF5 相互作用抑制茎和根的伸长。综上所述,我们的数据表明 DsIAA21 是植物发育的负调控因子,并表明 sIAA21 与 bIAA21 相比,结构域 i 中的氨基酸差异影响它们对生长素的反应,并且可能在慈竹弯秆变种的形成中起关键作用。我们的研究结果不仅阐明了慈竹的形态发生机制,而且为 Aux/IAAs 在植物中的多功能性提供了新的见解。

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