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DNA chip-based expression profile analysis indicates involvement of the phosphatidylinositol signaling pathway in multiple plant responses to hormone and abiotic treatments

机译:基于DNA芯片的表达谱分析表明磷脂酰肌醇信号通路参与多种植物对激素和非生物处理的反应

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The phosphatidylinositol (PI) metabolic pathway is considered critical in plant responses to many environmental factors, and previous studies have indicated the involvement of multiple PI-related gene families during cellular responses. Through a detailed analysis of the Arabidopsis thaliana genome, 82 polypeptides were identified as being involved in PI signaling. These could be grouped into different families including PI synthases (PIS), PI-phosphate kinases (PIPK), phospholipases (PL), inositol polyphosphate phosphatases (IPPase), inositol polyphosphate kinases (IPK), PI transfer proteins and putative inositol polyphosphate receptors. The presence of more than 10 isoforms of PIPK, PLC, PLD and IPPase suggested that these genes might be differentially expressed during plant cellular responses or growth and development. Accordingly, DNA chip technology was employed to study the expression patterns of various isoforms. In total, 79 mRNA clones were amplified and used for DNA chip generation. Expression profile analysis was performed using samples that represented multiple tissues or cellular responses. Tested samples included normal leaf, stem and flower tissues, and leaves from plants treated with various hormones (auxin, cytokinin, gibberellin, abscisic acid and brassinosteroid) or environmental factors (temperature, calcium, sodium, drought, salicylic acid and jasmonic acid). Results showed that many PI pathway-related genes were differentially expressed under these experimental conditions. In particular, the different isoforms of each family were specifically expressed in many cases, suggesting their involvement in tissue specificity and cellular responses to environmental conditions. This work provides a starting point for functional studies of the relevant PI-related proteins and may help shed light onto the role of PI pathways in development and cellular responses.
机译:磷脂酰肌醇(PI)代谢途径被认为对植物对许多环境因素的反应至关重要,并且先前的研究表明细胞反应期间涉及多个PI相关基因家族。通过对拟南芥基因组的详细分析,鉴定出82种多肽参与了PI信号传导。这些可以分为不同的家族,包括PI合酶(PIS),PI-磷酸激酶(PIPK),磷脂酶(PL),肌醇多磷酸磷酸酶(IPPase),肌醇多磷酸激酶(IPK),PI转移蛋白和推定的肌醇多磷酸受体。 PIPK,PLC,PLD和IPPase的10多种同工型的存在表明,这些基因可能在植物细胞反应或生长发育过程中差异表达。因此,DNA芯片技术被用来研究各种同工型的表达模式。总共扩增了79个mRNA克隆,并用于生成DNA芯片。使用代表多个组织或细胞反应的样品进行表达谱分析。测试的样品包括正常的叶子,茎和花组织,以及用各种激素(生长素,细胞分裂素,赤霉素,脱落酸和油菜素甾醇)或环境因素(温度,钙,钠,干旱,水杨酸和茉莉酸)处理过的植物的叶子。结果表明,在这些实验条件下,许多PI途径相关基因被差异表达。特别是,在许多情况下都明确表达了每个家族的不同同工型,表明它们参与了组织特异性和细胞对环境条件的反应。这项工作为相关PI相关蛋白的功能研究提供了起点,并可能有助于阐明PI途径在发育和细胞应答中的作用。

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