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Modified complementation test of male sterility mutants in pepper (Capsicum annuum L.): preliminary study to convert male sterility system from GMS to CMS

机译:辣椒(Capsicum annuum L.)雄性不育突变体的改良互补试验:将雄性不育系统从GMS转化为CMS的初步研究

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The male sterility system in hybrid seed production can eliminate the cost of emasculation and ensure seed hybridity through avoidance of self pollination. GMS and CMS are two types of male sterility system that currently employed in pepper breeding. Conversion from GMS to CMS will increase the male sterility proportion of female parent from 50 to 100%. In this study, segregation analysis of four male sterile mutants consisting of one CMS mutant (CA1) and three GMS mutants (GA1, GA3 and GA4) showed that each had single recessive gene inheritance. A modified complementation test was performed by replacing male sterile mutants with their maintainer line as male parent. The nuclear restorer gene for CMS was independent of all nuclear restorer genes for GMS and all nuclear restorer genes for GMS were independent each other. Further observation on CMS and GMS male sterility loci revealed that GA1 and GA3 had mutated in both nuclear restorer genes for CMS and GMS, while CA1 and GA4 each carried mutation in single male sterility system of nuclear restorer gene for CMS and GMS, respectively. Conversion from GMS to CMS in the case of lines carried mutations in both sterility systems required only S-type cytoplasm donor, while lines carried mutation in single nuclear restorer gene for GMS required not only S-type cytoplasm but also rf allele donors. The important finding is the broader function of maintainer line in certain male sterility system that can be used as a maintainer or restorer line for other male sterility systems. We also confirmed that line CC1 is the general restorer for both CMS and GMS systems. Keywords Capsicum annuum L. - Complementation test - Male sterility - Conversion from GMS to CMS
机译:杂交种子生产中的雄性不育系统可以消除去雄的成本,并通过避免自花传粉来确保种子杂交。 GMS和CMS是目前在胡椒育种中使用的两种雄性不育系统。从GMS转换为CMS将使女性父母的男性不育率从50%增加到100%。在这项研究中,对由一个CMS突变体(CA1)和三个GMS突变体(GA1,GA3和GA4)组成的四个雄性不育突变体的分离分析表明,每个突变体都具有单个隐性基因遗传。通过用雄性不育突变体的维持系代替雄性不育突变体来进行改良的互补试验。 CMS的核恢复子基因独立于GMS的所有核恢复子基因,GMS的所有核恢复子基因彼此独立。通过对CMS和GMS雄性不育基因座的进一步观察,发现CMS和GMS的两个核恢复基因中GA1和GA3均发生了突变,而CMS和GMS的单个核不育基因的雄性不育系统中CA1和GA4各自携带了突变。在两个不育系中携带系突变的情况下,从GMS向CMS的转化仅需要S型细胞质供体,而对于GMS而言,在单个核恢复基因中携带系的突变不仅需要S型细胞质,还需要rf等位基因供体。重要的发现是某些雄性不育系统中维持系的功能更广泛,可以用作其他雄性不育系的维持系或恢复系。我们还确认,CC1行是CMS和GMS系统的通用还原器。关键词辣椒-互补试验-雄性不育-从GMS转化为CMS

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