首页> 外文期刊>Journal of the American Society for Horticultural Science >Effects of SAG12-ipt and HSP18.2-ipt expression on cytokinin production, root growth, and leaf senescence in creeping bentgrass exposed to drought stress.
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Effects of SAG12-ipt and HSP18.2-ipt expression on cytokinin production, root growth, and leaf senescence in creeping bentgrass exposed to drought stress.

机译:SAG12-ipt 和 HSP18.2-ipt 表达对干旱胁迫下drought草的细胞分裂素产量,根系生长和叶片衰老的影响。

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Drought stress is a widespread abiotic stress that causes a decline in plant growth. Drought injury symptoms have been associated with an inhibition in cytokinin (CK) synthesis. The objectives of this study were to investigate whether expression of a gene (ipt) encoding the enzyme adenine isopentenyl phosphotransferase for CK synthesis ligated to a senescence-activated promoter (SAG12) or a heat shock promoter (HSP18.2) would improve drought tolerance in creeping bentgrass (Agrostis stolonifera) and to examine shoot and root growth responses to drought stress associated with changes in endogenous production of CK, and the proportional change in CK and abscisic acid (ABA) due to ipt transformation. Most SAG12-ipt and HSP18.2-ipt transgenic lines exhibited significantly higher turf quality, photochemical efficiency, chlorophyll content, leaf relative water content, and root:shoot ratio under drought stress than the null transformant or the wild-type 'Penncross' plants. Transgenic lines that had better growth and turf performance generally had higher CK content and a higher CK-to-ABA ratio, although the direct correlation of CK and ABA content with individual physiological parameters in individual lines was not clear. Our results demonstrated that expressing ipt resulted in the improvement of turf performance under drought stress in creeping bentgrass in some of the transgenic plants with SAG12-ipt or HSP18.2-ipt, which could be associated with the suppression of leaf senescence and promoting root growth relative to shoot growth due to the maintenance of higher CK level and a higher ratio of CK to ABA.
机译:干旱胁迫是一种广泛的非生物胁迫,会导致植物生长下降。干旱损伤症状与细胞分裂素(CK)合成的抑制有关。这项研究的目的是调查是否将编码用于CK合成的腺嘌呤异戊烯基磷酸转移酶的基因( ipt )的表达连接至衰老激活的启动子( SAG12 )或热激促进剂( HSP18.2 )可以提高creep草( Agrostis stolonifera )的耐旱性,并研究茎和根生长对内源性变化相关的干旱胁迫的响应CK的产生,以及由于 ipt 转化导致的CK和脱落酸(ABA)的比例变化。大多数 SAG12-ipt 和 HSP18.2-ipt 转基因品系表现出明显更高的草皮质量,光化学效率,叶绿素含量,叶片相对水分含量以及干旱条件下的根:茎比与无效转化株或野生型“ Penncross”植物相比具有良好生长和草皮性能的转基因品系通常具有较高的CK含量和较高的CK / ABA比,尽管尚不清楚个别品系中CK和ABA含量与个体生理参数的直接相关性。我们的结果表明,表达 ipt 导致某些带有 SAG12-ipt 或 HSP18.2的转基因植物的bent草中干旱胁迫下草皮性能的改善。 -ipt ,由于维持较高的CK水平和较高的CK / ABA比例,与抑制叶片衰老和促进根系生长(相对于枝条生长)有关。

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