首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >Improving drought-, salinity-, and heat-tolerance in transgenic plants by co-overexpressing Arabidopsis vacuolar pyrophosphatase gene AVP1 and Larrea Rubisco activase gene RCA
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Improving drought-, salinity-, and heat-tolerance in transgenic plants by co-overexpressing Arabidopsis vacuolar pyrophosphatase gene AVP1 and Larrea Rubisco activase gene RCA

机译:通过共抑制拟查拟查拟拟合拟南芥酸焦磷酸酶Gene AVP1和Larraa Rubisco Actiase基因RCA改善转基因植物中的干旱,盐度和耐热性

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摘要

The severity and frequency of many abiotic stresses such as drought, salinity and heat, cause substantial crop losses worldwide, which poses a serious challenge in food security. To increase crop production, new approaches are needed. Previous research has shown that overexpression of the tonoplast H+ pyrophosphatase gene AVP1 leads to improved drought and salt tolerance in transgenic plants. Other research showed that overexpression of thermotolerant ribulose-1,5-bisphosphate carboxylase/oxygenase (Rubisco) activase gene could maintain photosynthesis at higher temperatures, which contributes to higher heat tolerance in transgenic plants. In nature, abiotic stresses rarely come alone, instead these stresses often occur in various combinations. Therefore, it is desirable to make crops more tolerant to multiple stresses, which will likely lead to higher crop yield under various stress conditions. It is shown here that co-overexpression of the Arabidopsis gene AVP1 and the Larrea Rubisco activase gene RCA significantly increases drought, salinity and heat tolerance, resulting in higher biomass and seed yield than wild-type plants. AVP1/RCA co-overexpressing plants are as more drought- and salttolerant as AVP1-overexpressing plants, and as more heat-tolerant as RCA-overexpressing plants. More importantly, they produce higher seed yields than AVP1-overexpressing, RCA-overexpressing, and wild-type plants under combined drought and heat conditions.
机译:许多非生物胁迫的严重程度和频率,如干旱,盐度和热量,导致全世界的大量作物损失,这在粮食安全上提出了严峻挑战。为了增加作物生产,需要新的方法。以前的研究表明,Tonoplast H +焦磷酸酶Gene AVP1的过表达导致转基因植物中的干旱和耐盐性。其他研究表明,热调氢皂苷-1,5-双磷酸羧酶/氧酶(Rubisco)活化酶基因的过表达可以在较高温度下保持光合作用,这有助于转基因植物中的耐热耐受性。本质上,非生物应力很少孤独,而是这些压力通常以各种组合发生。因此,希望使作物更容忍多次应力,这可能在各种应力​​条件下产生更高的作物产量。这里示出了拟南芥Gene AVP1和LarraeSubisco Actiase基因RCA的共同过表达显着增加了干旱,盐度和耐热性,导致比野生型植物更高的生物量和种子产量。 AVP1 / RCA共同过度抑制植物与AVP1过度抑制植物一样,作为AVP1过度抑制植物,以及作为RCA过度抑制植物的耐热性。更重要的是,它们在组合的干旱和热条件下产生比AVP1过度抑制,RCA过表达和野生型植物更高的种子产量。

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