首页> 美国卫生研究院文献>Journal of Experimental Botany >The ER luminal binding protein (BiP) mediates an increase in drought tolerance in soybean and delays drought-induced leaf senescence in soybean and tobacco
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The ER luminal binding protein (BiP) mediates an increase in drought tolerance in soybean and delays drought-induced leaf senescence in soybean and tobacco

机译:ER内腔结合蛋白(BiP)介导了大豆耐旱性的提高并延缓了大豆和烟草因干旱引起的叶片衰老

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摘要

The ER-resident molecular chaperone BiP (binding protein) was overexpressed in soybean. When plants growing in soil were exposed to drought (by reducing or completely withholding watering) the wild-type lines showed a large decrease in leaf water potential and leaf wilting, but the leaves in the transgenic lines did not wilt and exhibited only a small decrease in water potential. During exposure to drought the stomata of the transgenic lines did not close as much as in the wild type, and the rates of photosynthesis and transpiration became less inhibited than in the wild type. These parameters of drought resistance in the BiP overexpressing lines were not associated with a higher level of the osmolytes proline, sucrose, and glucose. It was also not associated with the typical drought-induced increase in root dry weight. Rather, at the end of the drought period, the BiP overexpressing lines had a lower level of the osmolytes and root weight than the wild type. The mRNA abundance of several typical drought-induced genes [NAC2, a seed maturation protein (SMP), a glutathione-S-transferase (GST), antiquitin, and protein disulphide isomerase 3 (PDI-3)] increased in the drought-stressed wild-type plants. Compared with the wild type, the increase in mRNA abundance of these genes was less (in some genes much less) in the BiP overexpressing lines that were exposed to drought. The effect of drought on leaf senescence was investigated in soybean and tobacco. It had previously been reported that tobacco BiP overexpression or repression reduced or accentuated the effects of drought. BiP overexpressing tobacco and soybean showed delayed leaf senescence during drought. BiP antisense tobacco plants, conversely, showed advanced leaf senescence. It is concluded that BiP overexpression confers resistance to drought, through an as yet unknown mechanism that is related to ER functioning. The delay in leaf senescence by BiP overexpression might relate to the absence of the response to drought.
机译:内质网驻留分子伴侣蛋白BiP(结合蛋白)在大豆中过表达。当土壤中生长的植物遭受干旱(通过减少灌溉或完全不浇水)时,野生型品系显示出较大的叶片水势下降和枯萎,但转基因品系中的叶片没有枯萎,仅表现出很小的下降在水的潜力。在干旱期间,转基因品系的气孔关闭不如野生型,并且光合作用和蒸腾速率的抑制作用比野生型低。 BiP过表达品系中的这些抗旱参数与渗透压脯氨酸,蔗糖和葡萄糖的较高含量无关。它也与典型的干旱引起的根干重增加无关。相反,在干旱时期结束时,BiP过表达品系的渗透压和根系重量低于野生型。在干旱胁迫下,几种典型的干旱诱导基因[NAC2,种子成熟蛋白(SMP),谷胱甘肽-S-转移酶(GST),抗quitin和蛋白质二硫键异构酶3(PDI-3)]的mRNA丰度增加。野生型植物。与野生型相比,在暴露于干旱的BiP过表达株系中,这些基因的mRNA丰度增加较少(某些基因少得多)。在大豆和烟草中研究了干旱对叶片衰老的影响。以前有报道说,烟草BiP的过表达或抑制会减轻或加剧干旱的影响。 BiP过表达的烟草和大豆在干旱期间显示出延迟的叶片衰老。相反,BiP反义烟草植物显示出叶片的衰老。结论是,BiP的过表达通过与ER功能相关的未知机制赋予了抗旱性。 BiP过表达延迟叶片衰老可能与缺乏对干旱的反应有关。

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