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首页> 外文期刊>Journal of Agronomy and Crop Science/Zeitschrift fur acker-und pflanzenbau >Effects of mild temperature stress on grain quality and root and straw nitrogen concentration in malting barley cultivars.
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Effects of mild temperature stress on grain quality and root and straw nitrogen concentration in malting barley cultivars.

机译:温和温度胁迫对大麦制麦品种籽粒品质和根系和秸秆氮含量的影响。

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摘要

It is a challenge to obtain the appropriate protein concentration in cereals for the intended end-use. This study examined ambient temperature effects on two spring malting barley cultivars (Henley and Tipple) grown in soil or in solution culture with controlled nitrogen supply in daylight chambers with low temperature (day 18 degrees C, night 12 degrees C), and high temperature (23 degrees C/17 degrees C) to/after anthesis. In soil-grown plants, high temperature to anthesis resulted in higher grain nitrogen amount (GNA), grain nitrogen concentration (GNC) and straw nitrogen concentration (SNC). In plants grown in solution, high temperature to anthesis resulted in lower GNA and higher GNC. A temperature rise of 1 degrees C during the growing period in solution cultivation increased GNC, root nitrogen concentration (RNC) and SNC, by 1.20, 1.35 and 0.33 mg g-1, respectively. In solution culture, GNC was positively correlated with RNC and SNC (P<0.01). Cv. Henley had higher GNC but lower SNC than cv. Tipple. Cv. Henley was more stable in grain size and cv. Tipple in GNC. The results showed that temperature has a direct effect on GNC. Accounting for temperature fluctuations up to the latest possible nitrogen fertilisation occasion can therefore help when deciding appropriate nitrogen supply for intended end-use.
机译:对于预期的最终用途,要在谷物中获得合适的蛋白质浓度是一个挑战。这项研究研究了在低温(白天18摄氏度,夜晚12摄氏度)和高温(白天花后至/之后约23摄氏度/ 17摄氏度)。在土壤生长的植物中,高温到花粉导致较高的籽粒氮含量(GNA),籽粒氮浓度(GNC)和秸秆氮浓度(SNC)。在溶液中生长的植物中,高温到花粉导致较低的GNA和较高的GNC。在溶液培养的生长期中,温度每升高1摄氏度,GNC,根氮浓度(RNC)和SNC分别增加1.20、1.35和0.33 mg g -1 。在溶液培养中,GNC与RNC和SNC呈正相关(P <0.01)。简历。亨利的CNC高于简历,但SNC却较低。喝醉简历。亨利的晶粒尺寸和简历更稳定。在GNC中喝醉。结果表明温度对GNC有直接影响。因此,在决定最终用途的适当氮供应时,考虑到直到最近可能发生的氮肥施用时为止的温度波动都将有所帮助。

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