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开发实用的染色体加倍体系构建成烟草DH群体 被引量:15
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作者 朱惠琴 张宪银 薛庆中 《分子植物育种》 CAS CSCD 2004年第5期643-648,共6页
通过对4种染色体加倍方法(烟草浸花药法、浸花培苗法,叶片再生法及浸腋芽法等)的比较研究表明:以4 g/L浓度的秋水仙碱浸泡花药法加倍率最高达47.5%~75%,其次为叶片再生法(30%~36.67%)和浸苗法(16.67%~32.35%),而浸腋芽法较低(17.78%)... 通过对4种染色体加倍方法(烟草浸花药法、浸花培苗法,叶片再生法及浸腋芽法等)的比较研究表明:以4 g/L浓度的秋水仙碱浸泡花药法加倍率最高达47.5%~75%,其次为叶片再生法(30%~36.67%)和浸苗法(16.67%~32.35%),而浸腋芽法较低(17.78%).前两种方法加倍率虽高,但有较高畸形苗比率,叶片再生法工序较繁琐.作者认为烟草加倍单倍体产生,应以采用浸苗法为主.在使用秋水仙碱浸苗加倍时,添加DMSO可明显促进秋水仙碱的加倍效率,且促进作用随时间延长而提高;从高效、快捷和节约等原则考虑,我们开发了烟草有效的染色体加倍体系,以4g/L的秋水仙碱+20g/L DMSO溶液浸苗48h的效果最好.对两个组合烟草单倍体苗浸12h以上,其染色体加倍效率达到对照的2.30~2.93倍.本试验用较低浓度秋水仙碱添加DMSO有利于节约实验费用.通过完善染色体加倍技术程序已构建成2个DH群体,供基因定位研究. 展开更多
关键词 染色体 加倍体系 体系 烟草 DH群体
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Change of Annual Extreme Water Levels and Correlation with River Discharges in the Middle-lower Yangtze River: Characteristics and Possible Affecting Factors 被引量:7
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作者 YE Xuchun XU Chong-Yu +2 位作者 LI Yunliang LI Xianghu ZHANG Qi 《Chinese Geographical Science》 SCIE CSCD 2017年第2期325-336,共12页
As one of the fastest developing regions in China, the middle-lower Yangtze River (MLYR) is vulnerable to floods and droughts. With obtained time series of annual highest water level (HWL), annual lowest water lev... As one of the fastest developing regions in China, the middle-lower Yangtze River (MLYR) is vulnerable to floods and droughts. With obtained time series of annual highest water level (HWL), annual lowest water level (LWL) and the corresponding fiver discharges from three gauging stations in MLYR that covering the period 1987-2011, the current study evaluated the change character- istics of annual extreme water levels and the correlation with fiver discharges by using the methods of Vend test, Mann-Whitney-Pettitt (MWP) test and double mass analysis. Major result indicated a decreasing/increasing trend for annual HWL/LWL of all stations in MLYR during the study period. A change point in 1999 was identified for annual HWL at the Hankou and Datong stations. The year 2006 was found to be the critical year that the relationship between annual extreme water levels and fiver discharges changed in the MLYR. With contrast to annual LWL in MLYR, further investigation revealed that the change characteristics of annual HWL were highly consistent with regional precipitation in the Yangtze River Basin, while the linkage with Three Gorges Dam (TGD) operation is not strong. Our observation also pointed out that the effect of serious down cutting of the riverbed and the enlargement of the cross-section area during the initial period of TGD operation caused the downward trend of the relationship between annual LWL and river discharge. Whereas, the relatively raised river water level before the flood season due to TGD regulation since 2006 explained for the changing upward trend of the relationship between annual HWL and river discharge. 展开更多
关键词 extreme water level water level-discharge relationship double mass analysis Yangtze River
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