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首页> 外文期刊>HortTechnology >Regulations of 6-Benzyladenine (6-BA) on Leaf Ultrastructure and Photosynthetic Characteristics of Waterlogged Summer Maize
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Regulations of 6-Benzyladenine (6-BA) on Leaf Ultrastructure and Photosynthetic Characteristics of Waterlogged Summer Maize

机译:6-苄基腺嘌呤(6-BA)规定对夏季玉米叶超微结构和光合特性的规定

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摘要

A field experiment was performed to study the effects of spraying exogenous 6-benzyladenine (6-BA) after waterlogging for 6 days at the third leaf stage on the leaf mesophyll cell ultrastructure, chlorophyll content, gas exchange parameters, chlorophyll fluorescence, and malondialdehyde (MDA) content of summer maize (Zea mays L.) hybrids Denghai605 (DH605) and Zhengdan958 (ZD958), to determine the photosynthetic mechanism for the regulation of 6-BA to waterlogged summer maize. Results showed that exogenous application of 6-BA effectively alleviated the adverse effects of waterlogging on photosynthetic characteristics by increasing leaf area index and chlorophyll content. Treatment with spraying exogenous 6-BA resulted in significant and substantial (in the range of 9-37%) increases of the net photosynthetic rate compared to waterlogging treatments. In addition, spraying 6-BA effectively alleviated the adverse effects of waterlogging on leaf ultrastructure by increasing the numbers of grana and grana lamella, decreasing MDA content, and improving membrane structure and chloroplast structure. Visibly, spraying exogenous 6-BA effectively alleviated the adverse effects of waterlogging on leaf ultrastructure of summer maize led to the improvement of photosynthetic performance, resulting in significant and substantial (around 20%) increases in grain yield compared to those of the waterlogging treatments.
机译:进行现场实验以研究在叶片叶片细胞超微结构,叶绿素含量,气体交换参数,叶绿素荧光和丙藻胺和丙二醛( MDA)夏季玉米(Zea Mays L.)杂种Denghai605(DH605)和ZHENGDAN958(ZD958)的含量,以确定6-BA调节夏季玉米的光合机制。结果表明,通过增加叶面积指数和叶绿素含量,有效地减轻了6-BA的外源性应用。用喷雾外源6-BA治疗导致显着且大量的(在9-37%的范围内)与水涝处理相比净光合速率的增加。此外,喷洒6-BA通过增加甘蓝块和甘拉纳薄膜的数量,降低MDA含量和改善膜结构和叶绿体结构,有效地减轻了落水叶超微结构对叶超微结构的不利影响。明显地,喷洒外源6-BA有效缓解了夏季玉米叶子超微结构对夏季玉米的不利影响导致了光合性能的提高,导致与水涝处理相比,籽粒产量的显着且大约20%左右。

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