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Populus euphratica XTH overexpression enhances salinity tolerance by the development of leaf succulence in transgenic tobacco plants

机译:胡杨XTH过表达通过转基因烟草植物叶片多汁性的发展增强了耐盐性

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摘要

Populus euphratica is a salt-tolerant tree species that develops leaf succulence after a prolonged period of salinity stress. In the present study, a putative xyloglucan endotransglucosylase/hydrolase gene (PeXTH) from P. euphratica was isolated and transferred to tobacco plants. PeXTH localized exclusively to the endoplasmic reticulum and cell wall. Plants overexpressing PeXTH were more salt tolerant than wild-type tobacco with respect to root and leaf growth, and survival. The increased capacity for salt tolerance was due mainly to the anatomical and physiological alterations caused by PeXTH overexpression. Compared with the wild type, PeXTH-transgenic plants contained 36% higher water content per unit area and 39% higher ratio of fresh weight to dry weight, a hallmark of leaf succulence. However, the increased water storage in the leaves in PeXTH-transgenic plants was not accompanied by greater leaf thickness but was due to highly packed palisade parenchyma cells and fewer intercellular air spaces between mesophyll cells. In addition to the salt dilution effect in response to NaCl, these anatomical changes increased leaf water-retaining capacity, which lowered the increase of salt concentration in the succulent tissues and mesophyll cells. Moreover, the increased number of mesophyll cells reduced the intercellular air space, which improved carbon economy and resulted in a 47–78% greater net photosynthesis under control and salt treatments (100–150mM NaCl). Taken together, the results indicate that PeXTH overexpression enhanced salt tolerance by the development of succulent leaves in tobacco plants without swelling.
机译:胡杨(Populus euphratica)是一种耐盐树种,在长时间的盐胁迫下会发展出叶片多汁。在本研究中,分离了胡杨假单胞菌推定的木葡聚糖内转葡糖基酶/水解酶基因(PeXTH),并将其转移到烟草植物中。 PeXTH仅定位于内质网和细胞壁。在根和叶的生长以及存活方面,过表达PeXTH的植物比野生型烟草更耐盐。耐盐能力的提高主要是由于PeXTH过表达引起的解剖和生理改变。与野生型相比,PeXTH转基因植物的单位面积含水量高36%,鲜重与干重之比高39%,这是叶片多汁的标志。然而,在PeXTH转基因植物中叶片中贮水量的增加并没有伴随着更大的叶片厚度,而是由于高度堆积的栅栏薄壁组织细胞和叶肉细胞之间的细胞间空隙减少。除了对NaCl的盐分稀释作用外,这些解剖上的变化还增加了叶片的保水能力,从而降低了肉质组织和叶肉细胞中盐分的增加。此外,叶肉细胞数量的增加减少了细胞间的空气空间,从而改善了碳的经济性,在控制和盐处理(100-150mM NaCl)处理下,净光合作用增加了47-78%。两者合计,结果表明,PeXTH的过表达通过在烟草植株中形成多汁叶而无肿胀而增强了耐盐性。

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