首页> 外文期刊>The Indian journal of genetics & plant breeding >Molecular marker and phenotypic analyses for low phosphorus stress tolerance in cultivars and landraces of upland rice under irrigated and drought situations
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Molecular marker and phenotypic analyses for low phosphorus stress tolerance in cultivars and landraces of upland rice under irrigated and drought situations

机译:灌溉及干旱地区旱稻品种和旱稻品种耐磷胁迫耐受性的分子标记及表型分析

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摘要

Low available phosphorous (P) is a major problem for upland rice cultivation. Pup1, a major QTL responsible for efficient P uptake is very important for upland rice. The present investigation aimed to identify rice genotypes having Pup1 QTL, thereby showing better P use efficiency. Ninety six upland rice cultivars and landraces were screened of which 46.88% showed presence of the Pup1 QTL. Seventy six genotypes accounting for 79.17% of total population showed probable presence of PSTOL1 gene. The cluster analysis distinguished the irrigated, upland and aerobic genotypes forming different sub-branches. The genotypes Dinoroda, N22, Bowdel, Tepiboro, Bamawpyan, Karni, Lalsankari, Hazaridhan, Surjamukhi and Kalinga 3 being positive for all the molecular markers considered in the study formed a distinct branch in the tree. The phenotyping study also confirmed the usefulness of the Pup1 positive genotypes. The Pup1 positive genotypes showed better P-uptake than the Pup1 negative genotypes. More P-uptake was observed in the genotypes Bowdel, Lalsankari, Karni, N22, Tepiboro, Dular and Surjamukhi as compared to Kasalath taken as the positive check. But the genotypes that showed promisingly/significant better uptake than Kaselath were Surjamukhi (irrigated P normal); Karni (irrigated P deficient); Lalsankari (drought P normal); Tepiboro, N22, Karni and Lalsankari (drought P deficient). A general correspondence of irrigated situation showed decreasing trend of P-uptake in P-deficient condition as compared to P-sufficient condition. The genotypes Surjamukhi, Karni, Lalsankari, Tepiboro, N22 and Bowdel can be considered as donors to be used in marker-assisted breeding programs for incorporation of Pup1 QTL into high yielding popular varieties to increase their phosphorus uptake efficiency.
机译:低可用磷(P)是旱稻种植的主要问题。 PUP1,负责高效P吸收的主要QTL对旱稻非常重要。本发明的研究旨在鉴定具有PUP1 QTL的水稻基因型,从而显示更好的P使用效率。筛选九十六种山里水稻品种,其中46.88%显示PUP1 QTL的存在。七十六种基因型占总人群的79.17%,显示出PSTOL1基因的存在可能存在。聚类分析区分形成不同子分支的灌溉,高地和有氧基因型。基因型Dinoroda,N22,Bowdel,Tepiboro,Bamawpyan,Karni,Lalsankari,Hazaridhan,Surjamukhi和Kalinga 3为研究中考虑的所有分子标记形成阳性,在树上形成了一个明显的分支。表型研究还证实了蛹阳性基因型的有用性。 PUP1阳性基因型显示出比蛹的阴性基因型更好的p-uptake。与Kasalath相比,在基因型,Lalsankari,Karni,N22,Tepiboro,Dorar和Surjamukhi中观察到更多的p-uptake,与Kasalath作为阳性检查相比。但表现出优先/显着更好的摄取的基因型比Kaselath都是Surjamukhi(灌溉P正常);卡尼(灌溉P缺陷); lalsankari(干旱p正常); Tepiboro,N22,Karni和Lalsankari(干旱P缺乏)。与p足限条件相比,灌溉情况的一般对应表明p缺乏病症中p吸收的趋势降低。 Genotypes Surjamukhi,Karni,Lalsankari,Tepiboro,N22和Bowdel可以被认为是用于在标记辅助育种程序中用于掺入高产群体的吹塑品种中的供体,以提高其磷的吸收效率。

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