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首页> 外文期刊>Plant Cell Reports >Constitutive expression of CaRma1H1, a hot pepper ER-localized RING E3 ubiquitin ligase, increases tolerance to drought and salt stresses in transgenic tomato plants.
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Constitutive expression of CaRma1H1, a hot pepper ER-localized RING E3 ubiquitin ligase, increases tolerance to drought and salt stresses in transgenic tomato plants.

机译:CaRma1H1的组成型表达,辣椒ER定位的RING E3泛素连接酶,提高了转基因番茄植物对干旱和盐胁迫的耐受性。

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摘要

CaRma1H1, an endoplasmic reticulum (ER)-localized hot pepper really interesting new genes (RING) E3 Ub ligase, was previously reported to be a positive regulator of drought stress responses. To address the possibility that CaRma1H1 can be used to improve tolerance to abiotic stress in crop plants, CaRma1H1 was constitutively expressed in transgenic tomato (Solanum lycopersicum) plants. CaRma1H1-overexpressing tomato plants (35S:CaRma1H1) exhibited greatly enhanced tolerance to high-salinity treatments compared with wild-type plants. Leaf chlorophyll and proline contents in CaRma1H1 overexpressors were 4.3- to 8.5-fold and 1.2- to 1.5-fold higher, respectively, than in wild-type plants after 300 mM NaCl treatment. Transgenic cotyledons developed and their roots elongated in the presence of NaCl up to 200 mM. In addition, 35S:CaRma1H1 lines were markedly more tolerant to severe drought stress than were wild-type plants. Detached leaves of CaRma1H1 overexpressors preserved water more efficiently than did wild-type leaves during a rapid dehydration process. The ER chaperone genes LePDIL1, LeBIP1, and LeCNX1 were markedly up-regulated in 35S:CaRma1H1 tomatoes compared with wild-type plants. Therefore, overexpression of CaRma1H1 may enhance tomato plant ER responses to drought stress by effectively removing nonfunctional ubiquitinated proteins. Collectively, constitutive expression of CaRma1H1 in tomatoes conferrred strongly enhanced tolerance to salt- and water-stress. This raises the possibility that CaRma1H1 may be useful for developing abiotic stress-tolerant tomato plants.
机译:CaRma1H1,内质网(ER)定位的辣椒,真正有趣的新基因(RING)E3 Ub连接酶,以前被报道为干旱胁迫反应的积极调节剂。为了解决CaRma1H1可用于提高农作物对非生物胁迫的耐受性的可能性,CaRma1H1在转基因番茄(Solanum lycopersicum)植物中组成性表达。与野生型植物相比,过表达CaRma1H1的番茄植物(35S:CaRma1H1)对高盐度处理的耐受性大大增强。经过300 mM NaCl处理后,CaRma1H1过表达者中的叶绿素和脯氨酸含量分别比野生型植物高4.3至8.5倍和1.2至1.5倍。在存在高达200 mM的NaCl的情况下,转基因子叶得以发育并且其根部伸长。此外,与野生型植物相比,35S:CaRma1H1品系对严重干旱的耐受性明显更高。在快速脱水过程中,CaRma1H1过表达子的分离叶片比野生型叶片更有效地保存水。与野生型植物相比,ER分子伴侣基因LePDIL1,LeBIP1和LeCNX1在35S:CaRma1H1番茄中显着上调。因此,CaRma1H1的过表达可以通过有效去除无功能的泛素化蛋白来增强番茄植物对干旱胁迫的ER反应。集体地,CaRma1H1在番茄中的组成型表达大大增强了对盐和水分胁迫的耐受性。这增加了CaRma1H1可用于开发非生物胁迫耐受性番茄植物的可能性。

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