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Reduction of MDHAR activity in cherry tomato suppresses growth and yield and MDHAR activity is correlated with sugar levels under high light

机译:在樱桃番茄中减少Mdhar活性抑制生长,产量和Mdhar活性与高光照的糖水平相关

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摘要

Ascorbate is oxidized into the radical monodehydroascorbate (MDHA) through ascorbate oxidase or peroxidase activity or non-enzymatically by reactive oxygen species. Regeneration of ascorbate from MDHA is ensured by the enzyme MDHA reductase (MDHAR). Previous work has shown that growth processes and yield can be altered by modifying the activity of enzymes that recycle ascorbate; therefore, we have studied similar processes in cherry tomato (Solanum lycopersium L.) under-or overexpressing MDHAR. Physiological and metabolic characterization of these lines was carried out under different light conditions or by manipulating the source-sink ratio. Independently of the light regime, slower early growth of all organs was observed in MDHAR silenced lines, decreasing final fruit yield. Photosynthesis was altered as was the accumulation of hexoses and sucrose in a light-dependent manner in plantlets. Sucrose accumulation was also repressed in young fruits and final yield of MDHAR silenced lines showed a stronger decrease under carbon limitation, and the phenotype was partially restored by reducing fruit load. Ascorbate and MDHA appear to be involved in control of growth and sugar metabolism in cherry tomato and the associated enzymes could be potential targets for yield improvement.
机译:抗坏血酸通过抗坏血酸氧化酶或过氧化物酶活性或通过反应性氧物种而被氧化成基团单羟基锂血基酸盐(MDHA)。通过酶MDHA还原酶(MDHAR)确保来自MDHA的抗坏血酸盐的再生。以前的作品表明,通过改变抗坏血酸盐的酶活性,可以改变生长过程和产量;因此,我们研究了樱桃番茄(Solanum Lycopersium L.)的类似过程在或过表达MDHAR。这些线的生理和代谢表征在不同的光线条件下或通过操纵源极汇比进行。独立于光线制度,在MDHAR沉默的线中观察到所有器官的早期生长较慢,降低了最终的果实产量。在植物中以轻依赖性方式升高的光合作用是改变的是己烷和蔗糖的积累。在年轻水果中还抑制了蔗糖积累,Mdhar沉默线的最终产量显示碳限制的较强降低,通过降低水果载荷部分恢复表型。抗坏血酸和MDHA似乎参与了樱桃番茄中生长和糖代谢的控制,相关酶可能是潜在的产量改善靶标。

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