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Photosynthetic decline in flag leaves of two field-grown spring wheat cultivars with different senescence properties

机译:两个不同衰老特性的春小麦品种旗叶光合下降

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摘要

Pholosynthetic characteristics were compared;etween two field-grown spring wheat (Triticum aestivum L.) cultivars, Ningmai 8 (NM8) and its half-father sibling Ningmai 9 (NM9), to investigate the differences in photosynthetic decline of flag leaves;etween these two cultivars with different senescent appearance after emergence through senescence. Maximum photosynthetic activities for these two cultivars were observed at around 10 days after emergence (DAE). Photosynthetic functionally, therefore, 10 DAE was taken to define the point at which leaf senescence was initiated. During the photosynthetic rapid decline occurring after 27 DAE, as compared with NM8, NM9 showed a significantly higher Chi content, a higher Chi alb ratio, light-saturated photosynthetic rale (Pca=36o) ar|d light-and CO2-saturated photosynthetic rate (Pmax)> carboxylation efficiency (CE),;ut a significantly lower dark respiration rate (RD) and CO_2 compensation point (Ccomp). Thylakoid membranes in NM9 also showed a slightly higherelectron transport activity of PS II,;ut similar absorption spectra properties measured at room temperature as compared to NM8. The slower photosynthetic decline may contribute some to its higher grain yield in NM9. Due to the slower decrease of Chi, CEand Pca=36o, and the lower RD in NM9, flag leaf senescence was delayed in comparison to the earlier senescent NM8. Compared with its half-father sibling NM8, NM9 had a later onset and a slower rate of flag leaf senescence, which may;e partly responsiblefor its higher grain yield.
机译:比较了两个田间种植的春小麦(Ningmai 8)(NM8)和同父异母的Ningmai 9(NM9)的光合特性,以研究旗叶光合下降的差异;经过衰老后出现衰老外观的两个品种。在出苗(DAE)后约10天观察到这两个品种的最大光合活性。因此,从光合作用的功能上讲,采用10个DAE定义开始叶片衰老的时间点。在27个DAE之后发生的光合作用快速下降期间,与NM8相比,NM9表现出显着更高的Chi含量,更高的Chi alb比,光饱和光合规则(Pca = 36o)和光和CO2饱和光合速率(Pmax)>羧化效率(CE);显着降低了暗呼吸速率(RD)和CO_2补偿点(Ccomp)。 NM9中的类囊体膜还显示出PS II的电子传输活性略高;与NM8相比,在室温下测得的吸收光谱性质相似。较慢的光合作用下降可能有助于其在NM9中较高的籽粒产量。由于Chi,CE和Pca = 36o的降低较慢,并且NM9的RD较低,与早期衰老的NM8相比,剑叶的衰老被延迟了。与同父异母的NM8相比,NM9起病较晚,旗叶衰老的速度较慢,这可能是其较高谷物产量的部分原因。

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