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发现西瓜实心深绿果皮与浅绿果皮花纹的第二个基因。

Discovery of second gene for solid dark green versus light green rind pattern in watermelon.

机构信息

Syngenta Seeds Inc., 21435 County Road 98, Woodland, CA 95616, USA.

出版信息

J Hered. 2011 Jul-Aug;102(4):489-93. doi: 10.1093/jhered/esr025. Epub 2011 May 12.

Abstract

The watermelon (Citrullus lanatus (Thunb.) Matsum. & Nakai var. lanatus) has high variability for fruit size, shape, rind pattern, and flesh color. This study was designed to measure the qualitative inheritance of rind phenotypes (solid dark green vs. light green). For each of the 2 families, "Mountain Hoosier" × "Minilee" and "Early Arizona" × "Minilee," 6 generations (P(a)S(1), P(b)S(1), F(1), F(2), BC(1)P(a), BC(1)P(b)) were developed. Each family was tested in summer 2008 in 3 environments in North Carolina. Phenotypic data were analyzed with the χ(2) method to test the segregation of Mendelian genes. Deviations from the expected segregation ratios based on hypothesized single dominant gene for solid dark green versus light green rind pattern were recorded, raising questions on the inheritance of this trait. Inheritance of solid dark green rind versus light (gray) rind showed duplicate dominant epistasis. Duplicate dominant epistasis gives rise to a 15:1 ratio (solid dark green:light rind pattern) in F(2) generation. When both the loci are homozygous recessive, we observe light rind pattern. The g-1 and g-2 genes were identified to control light green rind when in homozygous recessive form.

摘要

西瓜(Citrullus lanatus (Thunb.) Matsum. & Nakai var. lanatus)的果实大小、形状、果皮图案和果肉颜色具有高度的可变性。本研究旨在测量果皮表型(深绿色与浅绿色)的定性遗传。对于每个家系“Mountain Hoosier”דMinilee”和“Early Arizona”דMinilee”,都开发了 6 个世代(P(a)S(1)、P(b)S(1)、F(1)、F(2)、BC(1)P(a)、BC(1)P(b))。每个家系在 2008 年夏季在北卡罗来纳州的 3 个环境中进行了测试。使用 χ(2)方法分析表型数据,以检验孟德尔基因的分离。对与假设的深绿色与浅绿色果皮图案的单一显性基因分离不一致的分离比例进行了记录,这引发了对该性状遗传的质疑。深绿色果皮与浅色(灰色)果皮的遗传表现出重复显性上位性。重复显性上位性导致 F(2)代出现 15:1 的比例(深绿色:浅色果皮图案)。当两个位点都是纯合隐性时,我们观察到浅色果皮图案。当 g-1 和 g-2 基因以纯合隐性形式存在时,它们被鉴定为控制浅绿色果皮。

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