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首页> 外文期刊>Journal of Experimental Botany >Photosynthesis, water use, and root viability under water stress as affected by expression of SAG12-ipt controlling cytokinin synthesis in Agrostis stolonifera
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Photosynthesis, water use, and root viability under water stress as affected by expression of SAG12-ipt controlling cytokinin synthesis in Agrostis stolonifera

机译:SAG12-ipt的表达影响了水分胁迫下光合,水分利用和根系活力

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Water stress reduces endogenous cytokinin (CK) content and may inhibit CK production. Maintenance of endogenous CK levels by genetic transformation with ipt in leaves and roots undergoing senescence may promote stress tolerance. This study was designed to determine the physiological effects of ipt expression on immature and mature leaves and in roots for plants exposed to different levels of water stress for creeping bentgrass (Agrostis stolonifera). Plants containing the ipt gene, encoding the enzyme adenine isopentenyl phosphotransferase for CK synthesis ligated to a senescence-activated promoter (SAG12), and wild-type 'Penncross' (WT) were grown hydroponically in a growth chamber and exposed to water stress by weekly additions of polyethylene glycol 8000 to reduce the growing solution osmotic potential from -0.05 to -0.3, -0.5, -0.7, -1.0, and -1.4 MPa. Immature and mature leaves and roots of SAG12-ipt creeping bentgrass were evaluated for ipt expression, CK content, leaf relative water content (RWC), chlorophyll content (Chl), photochemical efficiency (FvFm), osmotic adjustment (OA), photosynthesis rate (Pn), stomatal conductance (g(s)), transpiration (E), water use efficiency (WUE), carbon isotope discrimination (delta), and root viability. Expression of ipt was detected in all plant parts and a higher CK content, primarily in the form of isopentyladenine (iPa), was found in SAG12-ipt plants but not in the WT plants under water stress. Immature leaves exhibited higher iPa and OA at all treatment levels. Mature leaves of SAG12-ipt plants maintained higher OA, Pn, Chl, WUE, and delta, whereas g(s) and E were relatively unaffected compared to the WT. Roots of SAG12-ipt plants had higher levels of iPa and greater root viability than the WT. The results demonstrate that expression of ipt enhanced the tolerance of creeping bentgrass to water stress, which could be attributed to the positive effects on osmotic adjustment, efficient water use, and maintaining higher photosynthetic rate primarily for mature leaves, as well as increased root viability.
机译:水分胁迫会降低内源性细胞分裂素(CK)含量,并可能抑制CK的产生。通过ipt遗传转化在衰老的叶和根中维持内源性CK水平可能促进胁迫耐受性。这项研究旨在确定ipt表达对未成熟和成熟的叶子以及根系的生长的生理影响,这些植物暴露于不同水平的水分胁迫下的bent草(Agrostis stolonifera)。连接到衰老激活启动子(SAG12)和野生型'Penncross'(WT)的含有ipt基因的植物编码CK合成的CK合成腺嘌呤异戊烯基磷酸转移酶和野生型'Penncross'(WT),每星期在水培中生长,每周暴露于水分胁迫下加入聚乙二醇8000,以将生长液的渗透势从-0.05降低到-0.3,-0.5,-0.7,-1.0和-1.4 MPa。评估了SAG12-ipt bent生草的未成熟和成熟的叶和根的ipt表达,CK含量,叶片相对水含量(RWC),叶绿素含量(Chl),光化学效率(FvFm),渗透调节(OA),光合作用率( Pn),气孔导度(g(s)),蒸腾作用(E),水分利用效率(WUE),碳同位素分辨力(δ)和根系活力。在所有植物部分中均检测到了ipt的表达,并且在水分胁迫下,在SAG12-ipt植物中发现了较高的CK含量,主要是异戊二烯(iPa)形式,而在WT植物中却未发现。在所有处理水平下,未成熟的叶片均表现出较高的iPa和OA。与WT相比,SAG12-ipt植物的成熟叶保持较高的OA,Pn,Chl,WUE和δ,而g(s)和E相对不受影响。与野生型相比,SAG12-ipt植物的根系具有较高的iPa水平和更高的根系活力。结果表明,ipt的表达增强了bent草对水分胁迫的耐受性,这可能归因于对渗透调节,有效用水以及主要为成熟叶片维持较高的光合速率的积极作用,以及根系活力的增强。

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