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在大豆(Glycine max)的驯化和进化过程中,其叶片的生产力和持久性得到了提高。

Leaf productivity and persistence have been improved during soybean (Glycine max) domestication and evolution.

机构信息

Graduate School of Science and Engineering, Ibaraki University, Mito, 310-0056, Japan.

出版信息

J Plant Res. 2021 Mar;134(2):223-233. doi: 10.1007/s10265-021-01263-x. Epub 2021 Feb 12.

Abstract

Artificial and natural selection improved the leaf photosynthetic rate of soybean (Glycine max (L.) Merr. subsp. max). This change may be accompanied by unconscious, undesired changes in other leaf traits, such as decreased leaf persistence, if a finite resource was shared by two or more leaf traits-i.e., if they were traded off. We investigated leaf traits related to productivity (leaf photosynthetic rate, leaf nitrogen content, and stomatal conductance) and those related to persistence (leaf lifespan, leaf mass per unit area, and leaf bulk density) in one wild soybean line and three domesticated soybean lines (a landrace, an old cultivar, and a modern cultivar) in a three year experiment. Some leaf trait values increased while others did not change significantly during domestication and evolution. These results indicate that productivity-related leaf traits and persistence-related leaf traits are not negatively correlated. It was also found that the changes in productivity-related leaf traits and persistence-related leaf traits occurred at different times. Our results indicate that the productivity-related leaf traits and the persistence-related leaf traits have been independently selected for in soybean, and that they were not traded off. Combination of high leaf productivity and high leaf persistence would lead to higher lifetime leaf carbon gain and increased soybean yield.

摘要

人工选择和自然选择提高了大豆(Glycine max (L.) Merr. subsp. max)的叶片光合速率。如果有限的资源被两个或更多的叶片特征共享,即它们相互权衡,那么这种变化可能伴随着其他叶片特征的无意识、不期望的变化,例如叶片持久性降低。我们在一个三年的实验中研究了与生产力(叶片光合速率、叶片氮含量和气孔导度)相关的叶片特征以及与持久性(叶片寿命、单位面积叶片质量和叶片体密度)相关的叶片特征,涉及一个野生大豆品系和三个驯化大豆品系(一个地方品种、一个老品种和一个现代品种)。在驯化和进化过程中,一些叶片特征值增加,而另一些则没有显著变化。这些结果表明,与生产力相关的叶片特征和与持久性相关的叶片特征之间没有负相关关系。此外,还发现与生产力相关的叶片特征和与持久性相关的叶片特征的变化发生在不同的时间。我们的结果表明,在大豆中,与生产力相关的叶片特征和与持久性相关的叶片特征已经被独立选择,而它们没有相互权衡。高叶片生产力和高叶片持久性的结合将导致更高的终生叶片碳增益和更高的大豆产量。

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