National Center for Soybean Improvement, Nanjing Agricultural University, China.
J Genet Genomics. 2009 Dec;36(12):721-31. doi: 10.1016/S1673-8527(08)60165-4.
Drought stress has long been a major constraint in maintaining yield stability of soybean (Glycine max (L.) Merr.) in rainfed ecosystems. The identification of consistent quantitative trait loci (QTL) involving seed yield per plant (YP) and drought susceptibility index (DSI) in a population across different environments would therefore be important in molecular marker-assisted breeding of soybean cultivars suitable for rainfed regions. The YP of a recombinant line population of 184 F(2:7:11) lines from a cross of Kefeng1 and Nannong1138-2 was studied under water-stressed (WS) and well-watered (WW) conditions in field (F) and greenhouse (G) trials, and DSI for yield was calculated in two trials. Nineteen QTLs associated with YP-WS and YP-WW, and 10 QTLs associated with DSI, were identified. Comparison of these QTL locations with previous findings showed that the majority of these regions control one or more traits related to yield and other agronomic traits. One QTL on molecular linkage group (MLG) K for YP-F, and two QTLs on MLG C2 for YP-G, remained constant across different water regimes. The regions on MLG C2 for YP-WW-F and MLG H for YP-WS-F had a pleiotropic effect on DSI-F, and MLG A1 for YP-WS-G had a pleiotropic effect on DSI-G. The identification of consistent QTLs for YP and DSI across different environments will significantly improve the efficiency of selecting for drought tolerance in soybean.
干旱胁迫长期以来一直是维持雨养生态系统大豆(Glycine max(L.)Merr.)产量稳定性的主要限制因素。因此,在不同环境下的群体中鉴定出与单株产量(YP)和干旱敏感指数(DSI)相关的一致数量性状位点(QTL),对于适合雨养地区的大豆品种的分子标记辅助选择育种将非常重要。在田间(F)和温室(G)试验中,对 Kefeng1 和 Nannong1138-2 杂交的 184 个 F(2:7:11) 系的重组系群体的 YP 在水分胁迫(WS)和充分供水(WW)条件下进行了研究,并在两个试验中计算了产量的 DSI。鉴定出与 YP-WS 和 YP-WW 相关的 19 个 QTL 和与 DSI 相关的 10 个 QTL。将这些 QTL 位置与先前的发现进行比较表明,这些区域中的大多数控制着一个或多个与产量和其他农艺性状相关的性状。在不同水分条件下,YP-F 的分子连锁群(MLG)K 上的一个 QTL 和 YP-G 的 MLG C2 上的两个 QTL 保持不变。YP-WW-F 的 MLG C2 区域和 YP-WS-F 的 MLG H 区域对 DSI-F 具有多效性,而 YP-WS-G 的 MLG A1 对 DSI-G 具有多效性。在不同环境下鉴定出一致的 YP 和 DSI QTL 将显著提高在大豆中选择耐旱性的效率。