Suppr超能文献

fs3.1:辣椒中一个保守的主要果实形状数量性状基因座。

fs3.1: a major fruit shape QTL conserved in Capsicum.

作者信息

Ben Chaim Arnon, Borovsky Yelena, Rao G U, Tanyolac Bahattin, Paran Ilan

机构信息

Department of Research Organization, The Volcani Center, PO Box 6, Bet Dagan 50250, Israel.

出版信息

Genome. 2003 Feb;46(1):1-9. doi: 10.1139/g02-096.

Abstract

fs3.1 is a major fruit shape (defined as the ratio of fruit length to fruit width) quantitative trait locus (QTL) originally detected in an intraspecific cross of Capsicum annuum between the blocky and elongated-fruited inbreds 'Maor' and 'Perennial', respectively. In addition to increasing fruit shape index, the 'Perennial' allele at fs3.1 increased fruit elongation and decreased fruit width and pericarp thickness. We verified the effect of fs3.1 in backcross inbred lines (BILs) derived from crossing 'Perennial' with 'Maor' and with a second blocky-type inbred line of C. annuum. To determine the effect of the fs3.1 region in additional Capsicum species, we constructed an advanced backcross population from the cross of 'Maor' and the oval-fruited Capsicum frutescens BG 2816 and an F2 of the introgression line IL 152 that contains an introgression of the fs3.1 region from Capsicum chinense PI 152225. QTLs for fruit shape, fruit width, and pericarp thickness, but not for fruit length, were detected in both crosses, indicating the conservation of the fs3.1 region as a QTL affecting fruit shape in pepper. We also tested tomato (Lycopersicon spp.) introgression lines containing the corresponding fs3.1 region from L. pennellii and L. hirsutum, but we did not detect a significant fruit shape QTL in these lines. The effect of fs3.1 on the growth of fruit dimensions varied with the genetic background. By measuring the length and width of ovaries and fruits of near-isogenic C. annuum lines that differ in fs3.1 during fruit development, we determined that fs3.1 controls shape predominantly by increasing the growth rate of the longitudinal axis in the first 2 weeks after pollination. However, in the crosses of C. annuum with C. frutescens and C. chinense, fs3.1 predominantly exerted its effect on the width dimension.

摘要

fs3.1是一个主要的果实形状(定义为果实长度与果实宽度之比)数量性状基因座(QTL),最初在辣椒(Capsicum annuum)的种内杂交中被检测到,该杂交分别发生在块状果实和长形果实的自交系“Maor”和“Perennial”之间。除了增加果实形状指数外,fs3.1处的“Perennial”等位基因还增加了果实的长度,减小了果实宽度和果皮厚度。我们在由“Perennial”与“Maor”以及与辣椒的第二个块状类型自交系杂交产生的回交自交系(BIL)中验证了fs3.1的作用。为了确定fs3.1区域在其他辣椒物种中的作用,我们从“Maor”与椭圆形果实的辣椒(Capsicum frutescens)BG 2816的杂交以及导入系IL 152的F2构建了一个高代回交群体,IL 152包含来自中国辣椒(Capsicum chinense)PI 152225的fs3.1区域的导入。在这两个杂交中均检测到了影响果实形状、果实宽度和果皮厚度的QTL,但未检测到影响果实长度的QTL,这表明fs3.1区域作为影响辣椒果实形状的QTL具有保守性。我们还测试了含有来自彭氏番茄(Lycopersicon pennellii)和多毛番茄(Lycopersicon hirsutum)相应fs3.1区域的番茄(Lycopersicon spp.)导入系,但在这些品系中未检测到显著的果实形状QTL。fs3.1对果实尺寸生长的影响因遗传背景而异。通过测量在果实发育过程中fs3.1不同的近等基因辣椒品系的子房和果实的长度和宽度,我们确定fs3.1主要通过在授粉后的前2周增加纵轴的生长速率来控制果实形状。然而,在辣椒与辣椒和中国辣椒的杂交中,fs3.1主要对宽度维度发挥作用。

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