National Tobacco Cultivation & Physiology & Biochemistry Research Centre, College of Tobacco Science, Henan Agricultural University, Zhengzhou, 450002, China.
China Tobacco Hubei Industrial Company,Ltd, Sanxia Cigarette Factory, Yichang, 443000, China.
Plant Physiol Biochem. 2023 Jul;200:107791. doi: 10.1016/j.plaphy.2023.107791. Epub 2023 May 22.
Non-specific lipid transfer proteins (nsLTPs) play an important role in plant growth and stress resistance; however, their function in tobacco remains poorly understood. Therefore, to explore the function of NtLTP in response to high temperature, we identified an NtLTPI.38 from tobacco, obtained its overexpression and knockout transgenic plants, and further studied their response to heat stress (42 °C). The results showed that NtLTPI.38 overexpression in tobacco reduced chlorophyll degradation, alleviated the high temperature damage to photosynthetic organs, and enhanced the photosynthetic capacity of tobacco under heat stress. NtLTPI.38 overexpression in heat-stressed tobacco increased the contents of soluble sugar and protein, proline, and flavonoid substances, reduced the relative conductivity, and decreased HO, O, and MDA accumulation, and increased the enzymatic antioxidant activities, such as superoxide dismutase (SOD), peroxidase (POD), catalase (CAT), and ascorbate peroxidase (APX), compared to wild type (WT) and knockout mutant plants. RT-PCR confirmed that the expression levels of antioxidant enzymes and thermal stress-related genes were significantly upregulated under thermal stress in overexpression plants. Therefore, NtLTPI.38 enhanced heat tolerance in tobacco by mitigating photosynthetic damage and improving osmoregulation and antioxidant capacity. These results provided the theoretical basis and a potential resource for further breeding projects to improve heat tolerance in plants.
非特异性脂质转移蛋白(nsLTPs)在植物生长和抗逆性中发挥着重要作用;然而,它们在烟草中的功能仍知之甚少。因此,为了探索 NtLTP 在应对高温时的功能,我们从烟草中鉴定出一个 NtLTPI.38,获得了其过表达和敲除的转基因植株,并进一步研究了它们对热应激(42°C)的响应。结果表明,烟草中 NtLTPI.38 的过表达降低了叶绿素的降解,减轻了高温对光合器官的损伤,并增强了热胁迫下烟草的光合能力。在热胁迫下,过表达 NtLTPI.38 的烟草增加了可溶性糖和蛋白质、脯氨酸和类黄酮物质的含量,降低了相对电导率,减少了 HO、O 和 MDA 的积累,并增加了超氧化物歧化酶(SOD)、过氧化物酶(POD)、过氧化氢酶(CAT)和抗坏血酸过氧化物酶(APX)等酶类抗氧化剂的活性,与野生型(WT)和敲除突变体植物相比。RT-PCR 证实,在过表达植株中,抗氧化酶和热应激相关基因的表达水平在热胁迫下显著上调。因此,NtLTPI.38 通过减轻光合作用损伤、改善渗透调节和抗氧化能力来增强烟草的耐热性。这些结果为进一步的植物耐热性改良育种项目提供了理论基础和潜在资源。