Discipline of Marine Biotechnology and Ecology, CSIR-Central Salt and Marine Chemicals Research Institute, Bhavnagar, Gujarat, India.
PLoS One. 2013 Aug 5;8(8):e71136. doi: 10.1371/journal.pone.0071136. Print 2013.
Jatropha is an important second-generation biofuel plant. Salinity is a major factor adversely impacting the growth and yield of several plants including Jatropha. SbNHX1 is a vacuolar Na⁺/H⁺ antiporter gene that compartmentalises excess Na⁺ ions into the vacuole and maintains ion homeostasis. We have previously cloned and characterised the SbNHX1 gene from an extreme halophyte, Salicornia brachiata. Transgenic plants of Jatropha curcas with the SbNHX1 gene were developed using microprojectile bombardment mediated transformation. Integration of the transgene was confirmed by PCR and Rt-PCR and the copy number was determined by real time qPCR. The present study of engineering salt tolerance in Jatropha is the first report to date. Salt tolerance of the transgenic lines JL2, JL8 and JL19 was confirmed by leaf senescence assay, chlorophyll estimation, plant growth, ion content, electrolyte leakage and malondialdehyde (MDA) content analysis. Transgenic lines showed better salt tolerance than WT up to 200 mM NaCl. Imparting salt tolerance to Jatropha using the SbNHX1 gene may open up the possibility of cultivating it in marginal salty land, releasing arable land presently under Jatropha cultivation for agriculture purposes. Apart from this, transgenic Jatropha can be cultivated with brackish water, opening up the possibility of sustainable cultivation of this biofuel plant in salty coastal areas.
麻疯树是一种重要的第二代生物燃料植物。盐度是影响包括麻疯树在内的几种植物生长和产量的主要因素。SbNHX1 是液泡 Na⁺/H⁺反向转运蛋白基因,它将过量的 Na⁺离子分隔到液泡中,并维持离子的动态平衡。我们之前已经从极端盐生植物盐角草中克隆并鉴定了 SbNHX1 基因。利用微弹轰击介导的转化方法,对麻疯树进行了 SbNHX1 基因的转基因植物的开发。通过 PCR 和 Rt-PCR 证实了转基因的整合,通过实时 qPCR 确定了拷贝数。目前对麻疯树耐盐性的工程研究是迄今为止的第一个报告。通过叶片衰老测定、叶绿素测定、植物生长、离子含量、电解质渗漏和丙二醛(MDA)含量分析,证实了转基因株系 JL2、JL8 和 JL19 的耐盐性。与 WT 相比,转基因株系在高达 200 mM NaCl 下表现出更好的耐盐性。使用 SbNHX1 基因赋予麻疯树耐盐性可能为在边缘盐地种植它开辟了可能性,从而释放目前用于种植麻疯树的可耕地用于农业用途。除此之外,转基因麻疯树可以用微咸水种植,为在沿海盐度地区可持续种植这种生物燃料植物开辟了可能性。