小麦偶氮螺旋菌定位群体对植物促生长响应的生理和遗传分析

Thelma Castellanos-Cervantes, J. L. Diaz de León, J. Ling, M. Röder
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引用次数: 1

摘要

巴西氮螺旋菌是一种促进植物生长的根瘤菌,具有减少化肥用量的接种剂的潜力。研究了巴西螺接种对Opata / WSHD67.2(257)杂交双单倍体群体的影响,并检测了7个农艺性状的QTL。人口被隔离,关于他们的反应接种,分为三个亚组:中性,积极和消极的比例为60:25:15。共有18个主要QTL和83个次要QTL控制被测性状的表达。19个QTL表现出多效性;染色体5A, 7A, 7B和7D被区分为QTL控制所测7种表型中的4种。与主要QTL最近的标记序列检测到与至少38个候选基因编码的水稻序列的同源性,这是了解小麦与巴西芽孢杆菌相互作用的第一步。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Physiological and genetic analysis of a mapping population responsiveness to plant growth-promoting Azospirillum in wheat
Azospirillum brasilense is a plant growth-promoting rhizobacteria (PGPR) with the potential of being employed as an inoculant to decrease the use of chemical fertilizers. We investigated the ef fect of A. brasilense inoculation on a doubled haploid population derived from Opata / WSHD67.2(257) cross and detected Quantitative Trait Loci (QTL) for seven agronomic traits. The population was segregated, concerning their response to inoculation, into three subgroups: neutral, positive, and negative in a proportion of 60:25:15. A total of 18 major QTL and 83 minor QTL controlled the expression of measured traits. Nineteen QTL showed pleiotropic characteristics; chromosomes 5A, 7A, 7B, and 7D were distinguished as those with QTL controlling four of the seven phenotypes measured. The sequences of nearest markers to major QTL detected synteny to rice sequences that codified for at least 38 candidate genes described and discussed as a first step to understanding the interaction of wheat with A. brasilense.
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