Suppr超能文献

利用单体五倍体杂种对四倍体和六倍体小麦进行的遗传分析。

Genetic analysis of tetraploid and hexaploid wheat by utilization of monopentaploid hybrids.

机构信息

Laboratorio per le Applicazioni in Agricoltura del C. N. E. N., Centro Studi Nucleari della Casaccia, S. Maria di Galeria, Roma, Italy.

出版信息

Theor Appl Genet. 1971 Jan;41(2):67-74. doi: 10.1007/BF00277047.

Abstract

This report deals with a method of analysis which uses existing hexaploid wheat monosomics to establish gene-chromosome associations in a tetraploid variety. Monosomics of Triticum aestivum cv. Chinese Spring belonging to the 14 lines of A and B genomes were crossed as female parents with Triticum durum cv. Capeiti, a spring type at present widely grown in Italy. For each line, two F 1 populations were obtained, normal pentaploids (2 n = 35) and monopentaploid (2 n = 34), in which, in turn, the monosomic A or B chromosome present was supplied by the tetraploid wheat. The morphological and physiological differences observed in the monopentaploid lines are attributed to differential expression of the genetic information concerning the character investigated, carried by the chromosome present in hemizygous condition. Then, only recessive or partially dominant alleles of the variety to be tested can be identified and attributed to a specific chromosome in the F 1 generation.Eight parameters were analyzed: culm and spike length, length and width of 1st (flag) and 2nd uppermost leaves, days from germination to heading and awn development.As far as culm length is concerned, although heterotic effect is present, seven chromosomes seem to be responsible for the modification of this character (1A, 2A, 2B, 3B, 4B, 5B, and 6 A); chromosomes 2A and 2B in particular, carry major factor (s) for plant height. A similar picture is presented by spike length which seems to be controlled by factors located in several chromosomes belonging to homoeologous groups 1, 2, 3 and 5, as well as the chromosome 4B.Leaf length, also, shows a complex pattern of inheritance. Monosomic conditions for chromosomes 1A and 1B increased, while monosomy for 5A and 5B significantly decreased, leaf length. A highly significant correlation was found between the mean lengths of the 1st and 2 nd leaves (= 0.74). Some monosomic lines (4A, 4B, 5A; 5B; 6A; 7A and 7B) had leaves significantly narrower than in the control and only monosomic 2A had broader leaves. The period from germination to heading seems to be influenced by at least 6 chromosomes. Three monosomic lines are significantly earlier (mono 1A, 7A and 5B) and three (mono 5A, 2B and 7B) are significantly later than the hybrid control.Finally, 8 monosomic lines were found to interfere significantly with awn development. Three lines (mono 2A, 2B and 7A) show a decrease and 5 (mono 1B; 3A, 3B; 4B and 6B) show an increase in awn development. On the basis of evidence in the literature and our own results, it appears that this analysis fits previous results perfectly and actually adds to the picture two further awn-promoting factors, A9 and A10, located on the 7A and 1B chromosomes respectively.

摘要

本报告介绍了一种分析方法,该方法利用现有的六倍体小麦单体来建立四倍体品种中基因-染色体的关联。春小麦中国春的单体属于 A 组和 B 组的 14 条染色体,作为母本与目前在意大利广泛种植的硬粒春小麦 Capeiti 杂交。对于每条染色体,我们获得了两个 F1 群体,正常的五倍体(2n=35)和单体五倍体(2n=34),其中四倍体小麦提供了单体 A 或 B 染色体。单体五倍体系中观察到的形态和生理差异归因于所研究性状的遗传信息的差异表达,这些信息由处于半合状态的染色体携带。然后,只有待测试品种的隐性或部分显性等位基因可以被鉴定出来,并被归为 F1 代中的特定染色体。我们分析了 8 个参数:茎秆和穗长、1 号(旗)和 2 号最上叶的长度和宽度、发芽到抽穗和芒发育的天数。就茎秆长度而言,尽管存在杂种优势效应,但似乎有 7 条染色体负责修饰这个性状(1A、2A、2B、3B、4B、5B 和 6A);特别是 2A 和 2B 染色体携带主要因子(s)决定植株高度。穗长也呈现出类似的遗传模式,似乎由位于同源群 1、2、3 和 5 以及 4B 染色体上的几个染色体上的因子控制。叶片长度也表现出复杂的遗传模式。单体条件下 1A 和 1B 染色体的长度增加,而单体 5A 和 5B 染色体的长度显著降低。1 号和 2 号叶片的平均长度之间存在高度显著的相关性(=0.74)。一些单体系(4A、4B、5A、5B、6A、7A 和 7B)的叶片明显比对照窄,只有单体 2A 的叶片更宽。从发芽到抽穗的时间似乎受到至少 6 条染色体的影响。有 3 个单体系(单体 1A、7A 和 5B)明显更早,而有 3 个(单体 5A、2B 和 7B)明显更晚。最后,有 8 个单体系的芒发育受到显著干扰。有 3 个系(单体 2A、2B 和 7A)表现出芒的减少,有 5 个系(单体 1B、3A、3B、4B 和 6B)表现出芒的增加。基于文献中的证据和我们自己的结果,这种分析与以前的结果完全吻合,实际上增加了另外两个促进芒发育的因子 A9 和 A10,它们分别位于 7A 和 1B 染色体上。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验