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Potential but limited redundant roles of MtPIN4 MtPIN5 and MtPIN10/SLM1 in the development of Medicago truncatula

机译:MtPIN4MtPIN5和MtPIN10 / SLM1在紫花苜蓿开发中的潜在但有限的冗余作用

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摘要

Auxin polar transport is crucial in regulating plant growth and patterning. As auxin efflux carriers, the PIN FORMED (PIN) proteins are responsible for transportation of auxin out of the cell. There are eight and ten PIN members in Arabidopsis (AtPIN) and Medicago truncatula (MtPIN), respectively. Compared with MtPIN10/SMOOTH LEAF MARGIN1 (SLM1), MtPIN4 exhibits a closer relationship with AtPIN1 based phylogenetic analysis. In addition, the gene structure and distribution of transmembrane segments of MtPIN4, MtPIN5 and MtPIN10/SLM1 are similar, implying possible redundant roles among them. However, analysis using Gene Expression Atlas revealed different expression patterns among MtPIN4, MtPIN5 and MtPIN10/SLM1. Loss of function of MtPIN10/SLM1 in M. truncatula resulted in pleiotropic phenotypes in different organs, which are similar with the defects in the pin1 mutant of Arabidopsis, suggesting that the MtPIN10/SLM1 is a putative ortholog of AtPIN1. MtPIN4, MtPIN5 and MtPIN10/SLM1 may have limited redundant functions in the development of M. truncatula. The creation of double and triple mutants will help to elucidate their potential roles in auxin transport and plant development.
机译:生长素极地运输对于调节植物的生长和格局至关重要。作为生长素外排载体,PIN FORMED(PIN)蛋白负责将生长素转运到细胞外。拟南芥(AtPIN)和Medi藜苜蓿(MtPIN)分别有8个和10个PIN成员。与MtPIN10 /平滑叶MARGIN1(SLM1)相比,MtPIN4与基于AtPIN1的系统发育分析具有更紧密的关系。此外,MtPIN4,MtPIN5和MtPIN10 / SLM1的跨膜区段的基因结构和分布相似,这暗示它们之间可能存在冗余作用。但是,使用基因表达图谱进行的分析揭示了MtPIN4,MtPIN5和MtPIN10 / SLM1之间的不同表达模式。 MtPIN10 / SLM1的功能在截叶分枝杆菌中导致不同器官的多效性表型,这与拟南芥的pin1突变体中的缺陷相似,表明MtPIN10 / SLM1是AtPIN1的假定直系同源物。 MtPIN4,MtPIN5和MtPIN10 / SLM1在truncatula开发中可能具有有限的冗余功能。双重和三次突变体的创建将有助于阐明其在植物生长素运输和植物发育中的潜在作用。

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