首页> 外文期刊>Communications in Soil Science and Plant Analysis >How Does Nitrogen Application Ameliorate Negative Effects of Long-Term Drought in Two Maize Cultivars in Relation to Plant Growth, Water Status, and Nitrogen Metabolism?
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How Does Nitrogen Application Ameliorate Negative Effects of Long-Term Drought in Two Maize Cultivars in Relation to Plant Growth, Water Status, and Nitrogen Metabolism?

机译:施氮如何改善两个玉米品种长期干旱对植物生长,水分状况和氮代谢的不利影响?

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Two maize cultivars, Shaandan 9 (S-9) and Shaandan 911 (S-911), were investigated to explore the ameliorating effects of nitrogen (N) addition on their growth, water status, and N metabolism under long-term drought stress (DS). Elevated N rate increased dry matter, grain yield, relative water content, nitrate reductase activity, soluble protein concentration, and concentrations of free proline and endogenous glycinebetaine (main contributors to osmoregulation) of both cultivars under DS than control. The responses under DS were more significant for S-911 than those for S-9, especially at high N rate. Additionally, S-9 maintained greater evaluated parameters than S-911 with no N addition under DS, and these differences decreased with N application. Correlations were more evident among all parameters under DS than those under control. Thus, moderate N plays an evident physiological role in alleviation of DS effects on plant growth by improving water status and N metabolism, especially for drought-sensitive cultivars.
机译:研究了两个玉米品种Shaandan 9(S-9)和Shaandan 911(S-911),以探讨长期干旱胁迫下氮素(N)对其生长,水分状况和氮素代谢的改善作用( DS)。氮肥水平升高,与对照相比,两个品种的干物质,籽粒产量,相对水含量,硝酸还原酶活性,可溶性蛋白浓度以及游离脯氨酸和内源性甘氨酸甜菜碱的浓度(促渗透调节的主要贡献者)均增加。 DS下对S-911的响应比对S-9的响应更显着,尤其是在高N速率下。另外,在DS下,不加N的情况下,S-9的评价参数要比S-911更大,并且随着施氮量的增加,这些差异会减小。 DS下所有参数之间的相关性比对照下更明显。因此,适度氮素通过改善水分状况和氮素代谢(尤其是对干旱敏感的品种),在减轻DS对植物生长的影响方面起着明显的生理作用。

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