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Genome-Wide Identification and Expression Profiling Analysis of ZmPIN ZmPILS ZmLAX and ZmABCB Auxin Transporter Gene Families in Maize (Zea mays L.) under Various Abiotic Stresses

机译:多种非生物胁迫下玉米(Zea mays L.)ZmPINZmPILSZmLAX和ZmABCB生长素转运蛋白基因家族的全基因组鉴定和表达谱分析

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摘要

The auxin influx carriers auxin resistant 1/like aux 1 (AUX/LAX), efflux carriers pin-formed (PIN) (together with PIN-like proteins) and efflux/conditional P-glycoprotein (ABCB) are major protein families involved in auxin polar transport. However, how they function in responses to exogenous auxin and abiotic stresses in maize is largely unknown. In this work, the latest updated maize (Zea mays L.) reference genome sequence was used to characterize and analyze the ZmLAX, ZmPIN, ZmPILS and ZmABCB family genes from maize. The results showed that five ZmLAXs, fifteen ZmPINs, nine ZmPILSs and thirty-five ZmABCBs were mapped on all ten maize chromosomes. Highly diversified gene structures, nonconservative transmembrane helices and tissue-specific expression patterns suggested the possibility of function diversification for these genes. Quantitative real-time polymerase chain reaction (qRT-PCR) was used to analyze the expression patterns of ZmLAX, ZmPIN, ZmPILS and ZmABCB genes under exogenous auxin and different environmental stresses. The expression levels of most ZmPIN, ZmPILS, ZmLAX and ZmABCB genes were induced in shoots and were reduced in roots by various abiotic stresses (drought, salt and cold stresses). The opposite expression response patterns indicated the dynamic auxin transport between shoots and roots under abiotic stresses. Analysis of the expression patterns of ZmPIN, ZmPILS, ZmLAX and ZmABCB genes under drought, salt and cold treatment may help us to understand the possible roles of maize auxin transporter genes in responses and tolerance to environmental stresses.
机译:植物生长素流入载体抗植物生长素1 /类似aux 1(AUX / LAX),针状形成的外排载体(PIN)(与PIN样蛋白一起)和外排/条件性P-糖蛋白(ABCB)是涉及植物生长素的主要蛋白家族极地运输。但是,它们如何响应玉米中的外源生长素和非生物胁迫仍然是未知的。在这项工作中,使用最新更新的玉米(Zea mays L.)参考基因组序列来表征和分析玉米的ZmLAX,ZmPIN,ZmPILS和ZmABCB家族基因。结果表明,在所有十个玉米染色体上都定位了五个ZmLAX,十五个ZmPIN,九个ZmPILS和三十五个ZmABCB。高度多样化的基因结构,非保守的跨膜螺旋和组织特异性表达模式提示了这些基因功能多样化的可能性。实时定量聚合酶链反应(qRT-PCR)用于分析外源生长素和不同环境胁迫下ZmLAX,ZmPIN,ZmPILS和ZmABCB基因的表达模式。大多数ZmPIN,ZmPILS,ZmLAX和 ZmABCB 基因的表达水平在芽中被诱导,并且由于各种非生物胁迫(干旱,盐和冷胁迫)而在根中降低。相反的表达响应模式表明非生物胁迫下植物生长素在茎和根之间的动态运输。干旱,盐和冷条件下 ZmPIN ZmPILS ZmLAX ZmABCB 基因的表达模式分析帮助我们了解玉米生长素转运蛋白基因在响应和耐受环境胁迫中的可能作用。

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