Kuluev Bulat, Mikhaylova Elena, Berezhneva Zoya, Nikonorov Yuri, Postrigan Bogdan, Kudoyarova Guzel, Chemeris Aleksey
Institute of Biochemistry and Genetics, Ufa Scientific Centre, Russian Academy of Sciences (IBG USC RAS), pr. Oktyabrya 71, 450054, Ufa, Russia; Bashkir State University (BSU), Z. Validi str. 32, 450074, Ufa, Russia.
Institute of Biochemistry and Genetics, Ufa Scientific Centre, Russian Academy of Sciences (IBG USC RAS), pr. Oktyabrya 71, 450054, Ufa, Russia; Bashkir State University (BSU), Z. Validi str. 32, 450074, Ufa, Russia.
Plant Physiol Biochem. 2017 Feb;111:203-215. doi: 10.1016/j.plaphy.2016.12.005. Epub 2016 Dec 5.
Despite the intensive study of xyloglucan endotransglucosylases/hydrolases, their multifaceted role in plant growth regulation in changing environmental conditions is not yet clarified. The functional role of the large number of genes encoding this group of enzymes is also still unclear. NtEXGT gene encodes one of xyloglucan endotransglucosylases/hydrolases (XTHs) of Nicotiana tabacum L. The highest level of NtEXGT gene expression was detected in young flowers and leaves near the shoot apex. Expression of the NtEXGT gene in leaves was induced by cytokinins, auxins, brassinosteroids and gibberellins. NtEXGT gene was also up-regulated by salinity, drought, cold, cadmium and 10 μM abscisic acid treatments and down-regulated in response to 0 °C and 100 μM abscisic acid. Pretreatment of leaves with fluridone contributed to smaller increase in the level of NtEXGT transcripts in response to drought stress. These data suggest that NtEXGT gene is ABA-regulated and probably implicated in ABA-dependent signaling in response to stress factors. 35S::NtEXGT plants of tobacco showed higher rate of root growth under salt-stress conditions, greater frost and heat tolerance as compared with the wild type tobacco plants.
尽管对木葡聚糖内转糖基酶/水解酶进行了深入研究,但它们在不断变化的环境条件下对植物生长调节的多方面作用仍未明确。编码这组酶的大量基因的功能作用也仍不清楚。NtEXGT基因编码烟草(Nicotiana tabacum L.)的一种木葡聚糖内转糖基酶/水解酶(XTHs)。在嫩花和茎尖附近的叶片中检测到NtEXGT基因的最高表达水平。NtEXGT基因在叶片中的表达受细胞分裂素、生长素、油菜素内酯和赤霉素诱导。NtEXGT基因在盐胁迫、干旱、低温、镉处理以及10 μM脱落酸处理下也会上调,而在0°C和100 μM脱落酸处理下则下调。用氟啶酮预处理叶片会导致在干旱胁迫下NtEXGT转录本水平的增加幅度较小。这些数据表明,NtEXGT基因受脱落酸调节,可能参与了对胁迫因子的脱落酸依赖性信号传导。与野生型烟草植株相比,烟草的35S::NtEXGT植株在盐胁迫条件下根系生长速率更高,具有更强的抗冻性和耐热性。