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Effects of Temperature on Germination, Emergence and Early Seedling Growth of Swards of Mt Barker Subterranean Clover Plants Grown with and without Nitrate

机译:温度对添加和不添加硝酸盐的巴克山三叶草地下三叶草种子萌发,出苗和幼苗早期生长的影响

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Effects of constant temperatures of 10, 15, 20, 25 and 30°C on the germination, emergence and early nvegetative growth of Trifolium subterraneum L. cv. Mt Barker grown as swards were examined in ntemperature-controlled glasshouses and in a growth cabinet. Seedlings were established at a density of nabout 2000 plants m-2 and grown for up to 70 days. Plants were either inoculated and grown without nmineral nitrogen (- N), or supplied with 7.5 mM NO; (+ N). nPercentage germination and emergence were hardly affected by temperatures of 10-2O0C, but at n25°C were reduced to 50'70, and at 30°C to about 10%. The rates of germination and emergence were nslowest at 1O0C, but showed little change with temperature over the range 15-30°C. Time to closed ncanopy (leaf area index 3) and time to a dry weight of 133 g m-2 were shorter where plants were supplied nwith NO; than where mineral nitrogen was withheld and a symbiotic system established. Rates of nN2-fixation, as measured by acetylene reduction assay, were not markedly affected by temperature over nthe range 10-25°C. Relative efficiency ranged from about 0.55 at 10, 15, and 20°C to about 0.66 at n25°C. At 30°C nodulation still occurred, but nitrogenase activity was very slight. nIt is concluded that, where swards of subterranean clover are grown in the absence of any mineral nN, a period of N-starvation limits growth during the time taken for symbiotic N,-fixation to become nestablished. Such retardation of growth is small at about 20°C, but becomes more marked at lower and nhigher temperatures. The establishment of subterranean clover swards in soils of low N status are likely nto be retarded following an early (March) or a late (July) start in the growing season. In such cases a n'starter' application of mineral nitrogen may promote the early growth of the legume.
机译:10、15、20、25和30°C恒温对白三叶草萌发,出苗和早期营养生长的影响。在恒温控制的温室和生长柜中检查了生长为草皮的巴克山。以大约2000株m-2的密度建立苗木,并生长长达70天。接种植物或使其不含微量氮(-N)或提供7.5 mM NO; (+ N)。 n发芽和出苗率几乎不受10-20°C温度的影响,但在n25°C下降至50'70,在30°C下降至约10%。发芽率和出苗率在10℃时最低,但随温度在15-30°C范围内变化不大。当向植物提供NO时,关闭ncanopy的时间(叶面积指数3)和达到干重133 g m-2的时间较短。比保留矿物质氮和建立共生系统的地方要多。通过乙炔还原测定法测量的nN2-固定率不受温度在10-25°C范围内的显着影响。相对效率在10、15和20°C时约为0.55,在n25°C时约为0.66。在30°C时仍发生结节,但固氮酶的活性很小。 n得出的结论是,在没有任何矿物质nN的情况下生长地下三叶草的草皮的情况下,一段N饥饿会限制共生N-固定建立所需的时间。这种生长迟缓在约20℃时很小,但是在较低和较高的温度下变得更加明显。在生长季节的早期(3月)或晚期(7月)开始后,低氮状态土壤中地下三叶草的形成可能不会受到阻碍。在这种情况下,矿物质氮的“初学者”施用可以促进豆类的早期生长。

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  • 来源
    《Crop and Pasture Science》 |1984年第4期|p.539-549|共11页
  • 作者单位

    Department of Agronomy, University of Adelaide, Waite Agricultural Research Institute, Glen Osmond, S.A. 5064. .;

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  • 入库时间 2022-08-17 23:30:16

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