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Nitrogen-fixation drought tolerance in virginia-type peanut

机译:弗吉尼亚型花生的氮固定耐旱性

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Symbiotic nitrogen-fixation activity of grain legumes commonly does not exhibit tolerance to soil drying, including in peanut (Arachis hypogaea L). Since the demand for nitrogen of peanut is large in the synthesis of seeds with high protein concentration, loss of nitrogen-fixation activity can result in major yield decreases. The objective of this study was to search the germplasm of virginia-type peanut for sources of nitrogen-fixation drought tolerance. The first phase was a field screen in one growing season of 100 lines from which leaves were harvested and nitrogen concentration measured. Research in soybean had shown that low leaf-nitrogen concentration was associated with nitrogen-fixation drought tolerance. A wide range of leaf nitrogen concentrations was observed, and 10 lines of low leaf nitrogen (23.1 to 26.4 mg N g_1) were identified for the second phase of study. The second phase of study was done in a greenhouse with 5-week old plants sealed in pots subjected to a 2-week dry down. Eachday, the plants were briefly exposed to acetylene to measure acetylene reduction activity as an indicator of nitrogen-fixation activity. The soil water content, at which a decline in nitrogen fixation was initiated, was not different among seven lines.Three of the lines exhibited high sensitivity of nitrogen fixation to soil drying. None of the lines, however, exhibited substantial tolerance of nitrogen fixation to soil drying, indicating a need to search an even more diverse population of peanut to identify a genetic source for tolerance.
机译:谷物豆类的共生氮固定活性通常不会表现出对土壤干燥的耐受性,包括在花生(Arachis Hypogaea L)中。由于花生氮的需求大在具有高蛋白质浓度的种子的合成中,因此可以导致氮固定活性的丧失降低。本研究的目的是搜索弗吉尼亚型花生的种质,用于氮固定耐水性耐受性。第一阶段是100条季节的野外筛网,从中收获叶子并测量氮浓度。大豆的研究表明,低叶氮浓度与氮固定耐旱性有关。观察到宽范围的叶片氮浓度,并鉴定了10行的低叶氮(23.1至26.4mg N G_1),用于第二阶段研究。第二阶段的研究是在一个温室中进行的,其中5周的植物密封在盆中经过2周的盆中。每天,植物短暂地暴露于乙炔中,以测量乙炔还原活性作为氮固定活性的指标。土壤含水量,在氮固定中下降的情况下,七条线的氮固定性没有差异。三条线具有高灵敏度对土壤干燥的氮固定敏感性。然而,没有一条线对土壤干燥表现出大量的氮固定,表明需要搜索更多样化的花生群以识别耐受性的遗传源。

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