水分胁迫下影响水稻柱头外露数量性状位点的加性、上位效应和Q × E互作分析

YU Xin-Qiao, MEI Han-Wei, LUO Li-Jun, LIU Guo-Lan, LIU Hong-Yan, ZOU Gui-Hua, HU Song-Ping, LI Ming-Sou, WU Jin-Hong
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引用次数: 25

摘要

以水稻185系为材料,在2年的干旱胁迫和非干旱胁迫条件下,研究了水稻4个开花相关性状,即每穗小穗数(SNP)、单外露柱头百分率(pse)、双外露柱头百分率(PDES)和总外露柱头百分率(PES)。方差分析结果显示,不同年份、不同品系和不同水分胁迫处理之间存在显著性差异,且它们之间存在相互作用。pse与PES表型相关性最高(r = 0.9752***),其次为PDES与PES (r = 0.7150***), pse与PDES表型相关性最高(r = 0.5424***)。基于203个SSR标记的连锁图谱,检测到6个SNP主效应qtl,在胁迫和非胁迫条件下,有3个或4个主效应qtl与pse、PDES和PES相关。有1 ~ 9对上位qtl影响SNP和柱头外露。在大多数情况下,加性效应和上位性效应的贡献率较低(0.76% ~ 9.92%),少数QTL或QTL对对总方差的贡献率超过10%。在PES、PDES和PES中普遍存在主效QTL和上位性,说明它们之间存在高度正相关。水分胁迫和非胁迫条件下检测到的qtl较少,说明干旱对小穗数和柱头外露的遗传行为都有严重影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dissection of Additive, Epistatic Effect and Q × E Interaction of Quantitative Trait Loci Influencing Stigma Exsertion Under Water Stress in Rice

Four flowering related traits, spikelet number per panicle (SNP), percentage of single exserted stigma (PSES), dual exserted stigma (PDES) and total exserted stigma (PES) of a RI population with 185 lines under water stress and non-stress conditions for 2 years, were investigated in a drought tolerance screening facility. ANOVA results showed high significance between years, lines, and water stress treatments, together with interactions among them in pairs. Highest phenotypic correlation was found between PSES and PES (r = 0.9752***), followed by PDES and PES (r = 0.7150***), and PSES and PDES (r = 0.5424***). Based on a linkage map of 203 SSR markers, six main effect QTLs were detected for SNP and three or four main effect QTLs were associated with PSES, PDES and PES under stress or non-stress conditions. There were one to nine pairs of epistatic QTLs influencing SNP and stigma exsertion. The contribution rates of additive and epistatic effects seemed to be in a low magnitude for most cases (0.76%–9.92%) while a few QTLs or QTL pairs explained more than 10% of total variance. Some main effect QTL and epistasis were commonly detected among PSES, PDES and PES, explaining the high positive correlation between them. Few QTLs were detected under both water stress and non-stress condition, implying that drought had severe impact on the genetic behaviors of both spikelet number and stigma exsertion.

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