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首页> 外文期刊>Journal of Crop Improvement >Genetic variation for phosphorus-use efficiency in diverse wheat germplasm
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Genetic variation for phosphorus-use efficiency in diverse wheat germplasm

机译:不同小麦种质中磷利用效率的遗传变异

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摘要

Phosphorus (P) is the second most essential element for the growth and development of plants because of its role in vital biochemical reactions in the plant system. The positive response of wheat {Triticum aestivum L.) to P and dwindling raw materialsfor P fertilizer necessitate identification of P-efficient cultivars of wheat. Thirty wheat genotypes consisting of bread, synthetic, and wild wheats were assessed for P-use efficiency (PUE) at two P levels for identification of P-use efficient and P-deficiency-tolerant genotypes. PUE was measured by recording agro-morphological traits and P concentration in straw and grains. T. dicoccoides, T. boeoticum acc. pau5147, and synthetic wheats derived from different Aegilops tauschii accessions were observed to be P-acquisition efficient, as indicated by shoot P uptake. Hexaploid wheat introgression lines pau 16059, pau16063, pau16065, pau16066, and pau16067 were identified to be P-utilization efficient. Synthetic wheats from Ae. tauschii acc. pau14201, pau9796, pau14128, and pau14170; T. boeoticum acc. pau5147; T. dicoccoides acc. pau5366, pau7127, and pau7142; and hexaploid wheat lines pau16065, pau16066, pau16067, and pau16059 were found to be P-deficiency tolerant. Overall, wild germplasm was more efficient in uptake and accumulation of P in the snoots, and hexaploid wheats were more efficient in utilization of the accumulated P in realizing increased grain yields and PUE. These genotypes will be exploited for developing P-use efficient wheat cultivars and identifying genomic regions conditioning PUE.
机译:磷(P)是植物生长和发育的第二个最重要的因素,因为它在植物系统中重要的生化反应中的作用。小麦{Triticum aestivum L.)对P和Dwindling原料的阳性反应,这对于P肥料需要鉴定小麦的高效培养品。由面包,合成和野生小麦组成的30个小麦基因型,用于在两个P水平下进行P-MUDIce效率(PUE),以鉴定P-Meferure有效和P缺乏耐受性基因型。通过记录秸秆和谷物中的农业形态性状和P浓度来测量PUE。 T. Dicoccoides,T. Boeoticum Acc。 Pau5147,并观察到从不同Aegilops Tauschii脱离的合成小麦进行P取得效率,如拍摄P吸收所示。六倍体小麦梭菌线Pau 16059,Pau16063,Pau16065,Pau16066和Pau16067被识别为P利用率。来自AE的合成小麦。 Tauschii Acc。 PAU14201,PAU9796,PAU14128和PAU14170; T. Boeoticum Acc。 Pau5147; T. dicoccoides acc。 PAU5366,PAU7127和PAU7142;和六倍体麦系Pau16065,Pau16066,Pau16067和Pau16059被发现是p缺乏耐受性。总体而言,野生种质更有效地在鼻中的P中的摄影和积累,并且在实现增加的谷物产量和扁平时,六倍体小麦在利用累积的P方面更有效。这些基因型将被利用用于开发P-Medium效率的小麦品种并鉴定基因组区域调节型举行。

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