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新型化合物通过减轻氧化应激增强农杆菌介导的植物转化。

Novel compounds that enhance Agrobacterium-mediated plant transformation by mitigating oxidative stress.

机构信息

Institute for Advanced Learning and Research, 150 Slayton Avenue, Danville, VA, 24540, USA,

出版信息

Plant Cell Rep. 2015 Feb;34(2):291-309. doi: 10.1007/s00299-014-1707-3. Epub 2014 Nov 28.

Abstract

Agrobacterium tumefaciens caused tissue browning leading to subsequent cell death in plant transformation and novel anti-oxidative compounds enhanced Agrobacterium -mediated plant transformation by mitigating oxidative stress. Browning and death of cells transformed with Agrobacterium tumefaciens is a long-standing and high impact problem in plant transformation and the agricultural biotechnology industry, severely limiting the production of transgenic plants. Using our tomato cv. MicroTom transformation system, we demonstrated that Agrobacterium caused tissue browning (TB) leading to subsequent cell death by our correlation study. Without an antioxidant (lipoic acid, LA) TB was severe and associated with high levels of GUS transient expression and low stable transformation frequency (STF). LA addition shifted the curve in that most TB was intermediate and associated with the highest levels of GUS transient expression and STF. We evaluated 18 novel anti-oxidative compounds for their potential to enhance Agrobacterium-mediated transformation, by screening for TB reduction and monitoring GUS transient expression. Promising compounds were further evaluated for their effect on MicroTom and soybean STF. Among twelve non-antioxidant compounds, seven and five significantly (P < 0.05) reduced TB and increased STF, respectively. Among six antioxidants four of them significantly reduced TB and five of them significantly increased STF. The most efficient compound found to increase STF was melatonin (MEL, an antioxidant). Optimal concentrations and stages to use MEL in transformation were determined, and Southern blot analysis showed that T-DNA integration was not affected by MEL. The ability of diverse compounds with different anti-oxidative mechanisms can reduce Agrobacterium-mediated TB and increase STF, strongly supporting that oxidative stress is an important limiting factor in Agrobacterium-mediated transformation and the limiting factor can be controlled by these compounds at different levels.

摘要

根癌农杆菌导致组织变褐,从而导致植物转化过程中的细胞死亡,而新型抗氧化化合物通过减轻氧化应激增强了根癌农杆菌介导的植物转化。用根癌农杆菌转化的细胞变褐和死亡是植物转化和农业生物技术产业中长期存在的、影响很大的问题,严重限制了转基因植物的生产。使用我们的番茄 cv。MicroTom 转化系统,我们通过相关性研究证明根癌农杆菌引起组织变褐 (TB),进而导致细胞死亡。没有抗氧化剂(硫辛酸,LA),TB 很严重,与 GUS 瞬时表达水平高和稳定转化频率(STF)低有关。LA 的添加改变了曲线,使大多数 TB 处于中间状态,与最高水平的 GUS 瞬时表达和 STF 相关。我们评估了 18 种新型抗氧化化合物增强根癌农杆菌介导转化的潜力,通过筛选 TB 减少和监测 GUS 瞬时表达来评估。有前途的化合物进一步用于评估它们对 MicroTom 和大豆 STF 的影响。在 12 种非抗氧化化合物中,有 7 种和 5 种化合物显著(P <0.05)降低了 TB,并分别增加了 STF。在 6 种抗氧化剂中,有 4 种显著降低了 TB,有 5 种显著增加了 STF。发现增加 STF 最有效的化合物是褪黑素 (MEL,一种抗氧化剂)。确定了在转化中使用 MEL 的最佳浓度和阶段,并通过 Southern blot 分析表明,MEL 不影响 T-DNA 整合。具有不同抗氧化机制的多种化合物能够降低根癌农杆菌介导的 TB 并增加 STF,这强烈支持氧化应激是根癌农杆菌介导的转化的一个重要限制因素,并且该限制因素可以通过这些化合物在不同水平上得到控制。

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