期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
转TaSCL14基因小麦的遗传稳定性及农艺性状分析 被引量:2
1
作者 牛艳路 朱浩 +3 位作者 王佩 陈坤梅 李宏伟 陈耀锋 《麦类作物学报》 CAS CSCD 北大核心 2018年第12期1420-1426,共7页
为了获得农艺性状优良的转TaSCL14基因小麦品系,以普通小麦品种小偃39为受体获得的转TaSCL14基因小麦T1~T3代株(系)为材料,对其中TaSCL14基因的遗传稳定性和主要的农艺特性进行分析。结果表明,转TaSCL14基因小麦的T1和T2代植株的阳性... 为了获得农艺性状优良的转TaSCL14基因小麦品系,以普通小麦品种小偃39为受体获得的转TaSCL14基因小麦T1~T3代株(系)为材料,对其中TaSCL14基因的遗传稳定性和主要的农艺特性进行分析。结果表明,转TaSCL14基因小麦的T1和T2代植株的阳性率分别达到55.9%和85.6%,穗粒数、冬前分蘖与对照存在显著差异;T3代4个转基因株系3-4、3-7、3-8和3-11的阳性率达到90%以上,且TaSCL14基因在各株系中的表达水平都高于对照。与野生型相比,转基因小麦T3代部分株系的冬前分蘖、冬后分蘖、有效分蘖和小穗数均较野生型呈显著或极显著提高,但千粒重都较野生型有所降低,其中株系3-4和3-7降低幅度较大,分别达到显著和极显著水平。以上结果说明,TaSCL14基因的过表达能够影响转基因小麦的部分农艺特性,并且在株(系)间有差异。 展开更多
关键词 小麦 tascl14基因 转基因 农艺性状
在线阅读 下载PDF
TaSCL14,a Novel Wheat(Triticum aestivum L.)GRAS Gene,Regulates Plant Growth,Photosynthesis,Tolerance to Photooxidative Stress,and Senescence 被引量:14
2
作者 Kunmei Chen Hongwei Li +3 位作者 Yaofeng Chen Qi Zheng Bin Li Zhensheng Li 《Journal of Genetics and Genomics》 SCIE CAS CSCD 2015年第1期21-32,共12页
Rates of photosynthesis, tolerance to photooxidative stress, and senescence are all important physiological factors that affect plant development and thus agricultural productivity. GRAS proteins play essential roles ... Rates of photosynthesis, tolerance to photooxidative stress, and senescence are all important physiological factors that affect plant development and thus agricultural productivity. GRAS proteins play essential roles in plant growth and development as well as in plant responses to biotic and abiotic stresses. So far few GRAS genes in wheat (Triticum aestivum L.) have been characterized. A previous transcriptome analysis indicated that the expression of a GRAS gene (TaSCL14) was induced by high-light stress in Xiaoyan 54 (XY54), a common wheat cultivar with strong tolerance to high-light stress. In this study, TaSCL14 gene was isolated from XY54 and mapped on chromosome 4A. TaSCL14 was expressed in various wheat organs, with high levels in stems and roots. Our results confirmed that TaSCL14 expression was indeed responsive to high-light stress. Barley stripe mosaic virus (BSMV)-based virus-induced gene silencing (VIGS) of TaSCL14 in wheat was performed to help characterize its potential functions. Silencing of TaSCL14 resulted in inhibited plant growth, decreased photosynthetic capacity, and reduced tolerance to photooxidative stress. In addition, silencing of TaSCL14 in wheat promoted leaf senescence induced by darkness. These results suggest that TaSCL14 may act as a multifunctional regulator involved in plant growth, photosynthesis, tolerance to photooxidative stress, and senescence. 展开更多
关键词 Triticum aestivum L. tascl14 PHOTOSYNTHESIS Photooxidative resistance SENESCENCE BSMV--VIGS
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部