首页> 外文OA文献 >Pertumbuhan Akar Duapuluh Genotip Padi Gogo Pada Kahatfosfor Dan Cekaman Aluminium [the Growth of Twenty Upland Rice Genotypes Root at Phosphorous Deficiency and Aluminium Toxicity]
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Pertumbuhan Akar Duapuluh Genotip Padi Gogo Pada Kahatfosfor Dan Cekaman Aluminium [the Growth of Twenty Upland Rice Genotypes Root at Phosphorous Deficiency and Aluminium Toxicity]

机译:缺铝和胁迫下高粱二十个根系基因型的生长[磷缺乏和铝毒害下二十个陆上水稻基因型根型的生长]

摘要

Phosphorous insufficiency is a limiting factor for rice production. P deficiency in acid soil of tropical regions causing fixation of Al. Because of it, the giving P fertilizers in acid soil become not efficient. To exploit tolerance varieties to P deficiency and Al toxicity are one of the solutions to decrease P fertilizers. The objective of this experiment was to screen twenty upland rice genotypes for P deficiency and Al toxicity, and double stress Al toxicity and P deficiency in culture solution. The experiment was arranged in a split plot design with three replications. The main plots were aluminium treatment (without and 45 ppm Al), the sub plots were P treatments (0 ppm P, 0,5 ppm P, 5 and 10 ppm P) and twenty genotypes of upland rice were sub-sub plot. The root length and root dry weight characters were used to identify genotypes tolerant to P deficiency and Al toxicity. The results indicated that based on the root length character, Sentani and K36-5-1-1-1 were tolerant to Al toxicity and double stress P deficiency and Al toxicity; while based on the root dry weight character, K36-5-1 -1-1 and NIL-C443 were tolerant to P deficiency, Al toxicity and double stress P deficiency.
机译:磷不足是水稻生产的限制因素。热带地区酸性土壤中的磷缺乏导致铝固着。因此,在酸性土壤中施用磷肥变得无效。开发对磷缺乏和铝毒性的耐性品种是减少磷肥的解决方案之一。本实验的目的是筛选培养液中20种旱稻基因型的P缺乏和Al毒性,以及双重胁迫Al毒性和P缺乏。以三重复的分裂图设计安排实验。主要地块是铝处理(无铝和45 ppm Al),次地块是P处理(0 ppm P,0.5 ppm P,5和10 ppm P),而二十种基因型旱稻是次子块。根长和根干重特征用于鉴定耐磷缺乏和铝毒性的基因型。结果表明,基于根长特征,Sentani和K36-5-1-1-1对铝的毒害,双胁迫对磷缺乏和铝的毒害具有耐受性。根据根的干重特性,K36-5-1 -1-1和NIL-C443可以耐受磷缺乏,铝毒性和双重胁迫磷缺乏。

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    Suhartini, Tintin;

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  • 年度 2010
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