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利用与水稻基因型中磷吸收1()数量性状基因座连锁的标记筛选磷饥饿耐受性及单倍型分析。

Screening tolerance to phosphorus starvation and haplotype analysis using phosphorus uptake 1 () QTL linked markers in rice genotypes.

作者信息

Nirubana V, Vanniarajan C, Aananthi N, Ramalingam J

机构信息

Department of Plant Breeding and Genetics, Agricultural College and Research Institute, Tamil Nadu Agricultural University, Madurai, Tamil Nadu 625 104 India.

Department of Plant Breeding and Genetics, Agricultural College and Research Institute, Tamil Nadu Agricultural University, Killikulam, Tamil Nadu 628 252 India.

出版信息

Physiol Mol Biol Plants. 2020 Dec;26(12):2355-2369. doi: 10.1007/s12298-020-00903-1. Epub 2020 Dec 24.

Abstract

Phosphorus (P) deficiency tolerance is a pivotal trait for plant growth and development. Most of the commercial modern cultivars lack this trait and reported it as a very serious problem limiting crop productivity. This trait is advantageous if present in modern high yielding varieties as it increases the yield under the phosphorus-deficient soil conditions. With the importance of phosphorus deficiency tolerance, the present investigation was carried out with an objective to screen for tolerance to phosphorus deficiency using solution culture and phosphorus uptake 1 () locus linked markers in 30 diverse rice genotypes. A wide range of varied responses to P deficiency in rice genotypes for all the traits were observed. Root length and enzyme activity showed increased mean performance under the - P condition when compared to + P condition. Medium to high heritability estimates were obtained for most of the traits. Correlation analysis showed that the traits: root P content, fresh shoot weight, dry shoot weight, and shoot length showed highly significant correlations with each other under - P conditions. Based on the hydroponics and molecular screening, three genotypes viz ADT (R) 48, Improved Pusa Basmati 1 and UPLRI 5 were classified as tolerant for its response to P deficiency as they possessed significant increase in desirable root and shoot traits, increased acid phosphatase enzyme and these genotypes also possessed the allele for all the five markers. The selected genotypes may be useful for the exploration of novel genes conferring phosphorus deficiency tolerance and used as donor parents in the breeding programs. Absence of this allele in the rice genotypes viz drought tolerant (Anna (R) 4) and submergence tolerant (CR 1009 1) may warrant the development of multiple abiotic stress tolerance cultivars for upland and submergence cropping systems in future rice breeding program.

摘要

耐磷(P)胁迫是植物生长发育的一个关键性状。大多数商业化的现代栽培品种缺乏这一性状,并将其视为限制作物生产力的一个非常严重的问题。如果现代高产品种具备这一性状则具有优势,因为它能在缺磷土壤条件下提高产量。鉴于耐磷胁迫的重要性,本研究旨在利用溶液培养和磷吸收1()位点连锁标记,对30个不同水稻基因型进行耐磷胁迫筛选。观察到所有性状的水稻基因型对缺磷的反应差异很大。与+P条件相比,根长和酶活性在-P条件下表现出更高的平均水平。大多数性状获得了中到高的遗传力估计值。相关性分析表明,在-P条件下,根磷含量、地上部鲜重、地上部干重和地上部长等性状之间呈现出高度显著的相关性。基于水培和分子筛选,ADT(R)48、改良普萨巴斯马蒂1号和UPLRI 5这三个基因型因其对缺磷的反应而被归类为耐胁迫型,因为它们在理想的根和地上部性状上有显著增加,酸性磷酸酶活性增强,并且这三个基因型在所有五个标记上都具有等位基因。所选基因型可能有助于探索赋予耐磷胁迫的新基因,并可在育种计划中用作供体亲本。耐旱型(Anna(R)4)和耐淹型(CR 1009 1)水稻基因型中不存在该等位基因,这可能为未来水稻育种计划中旱地和淹水种植系统的多种非生物胁迫耐受性品种的培育提供依据。

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Molecular mechanisms underpinning phosphorus-use efficiency in rice.水稻磷利用效率的分子机制。
Plant Cell Environ. 2018 Jul;41(7):1483-1496. doi: 10.1111/pce.13191. Epub 2018 Apr 20.

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