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[黑麦品系亲本基因型对初级八倍体小黑麦数量性状发育的影响分析。株高]

[Analysis of the effects of parental genotypes of rye lines on the development of quantitative traits in primary octaploid triticale. Plant height].

作者信息

Tikhenko H D, Tsvetkova N V, Voĭlokov A V

机构信息

Department of Genetics and Breeding, St. Petersburg State University, St. Petersburg, 199034 Russia.

出版信息

Genetika. 2003 Jan;39(1):64-9.

Abstract

When breeding the primary spring octoploid triticale derived from crosses of various inbred rye lines to wheat Chinese Spring, the effects of the rye genotype and growth conditions on the plant height and proportion of the first, second, and final (pedicle) internodes to the entire stem length were studied. Two triticale groups were examined: homozygotes for the dominant (Ddw1) and recessive (ddw1) alleles of the gene responsible for short stem in rye. In the short stem triticale lines carrying the Ddw1 alleles, the plants were 20 cm shorter on average than those in the ddw1-carrying lines, and the distribution of the two triticale groups overlapped significantly. In both groups, the lines significantly differing in plant height could be differentiated, because of allelic diversity of the additional genes controlling this trait along with the Ddw gene. In most triticale lines, especially in the Ddw1-carrying ones, the plant height was much reduced under unfavorable growth conditions. At the same time, a short-stem line was isolated, which is characterized by ecological plasticity, like the maternal wheat cultivar. In the triticale studied, the stem structure depended on the short-stem rye genotype. The two-year study showed that in the triticale carrying the dominant allele of this gene, the first internode is significantly extended, whereas the upper (pedicle) internode is reduced, which increases plant lodging resistance. The differences revealed between the rye lines as well as their effect on the quantitative triticale traits are discussed in view of a variant of the hybridological analysis, which had been previously proposed for identification and mapping of the correspondent rye genes.

摘要

在用各种自交黑麦品系与中国春小麦杂交得到的初级春性八倍体小黑麦进行育种时,研究了黑麦基因型和生长条件对株高以及第一节、第二节和最末节(穗柄节)长度占整个茎长比例的影响。研究了两个小黑麦群体:携带黑麦中控制矮秆性状的显性(Ddw1)和隐性(ddw1)等位基因的纯合子。在携带Ddw1等位基因的矮秆小黑麦品系中,植株平均比携带ddw1等位基因的品系矮20厘米,且两个小黑麦群体的分布有显著重叠。在两个群体中,由于除Ddw基因外控制该性状的其他基因的等位基因多样性,可区分出株高差异显著的品系。在大多数小黑麦品系中,尤其是携带Ddw1等位基因的品系,在不利生长条件下株高会大幅降低。同时,分离出了一个矮秆品系,其具有与母本小麦品种类似生态可塑性的特征。在所研究的小黑麦中,茎的结构取决于矮秆黑麦基因型。两年的研究表明,在携带该基因显性等位基因的小黑麦中,第一节显著伸长,而上部(穗柄)节缩短,这增加了植株的抗倒伏性。结合先前提出的用于鉴定和定位相应黑麦基因的杂交分析变体,讨论了黑麦品系间的差异及其对小黑麦数量性状的影响。

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