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1.
利用根癌农杆菌介导将反义蜡质基因(anti-Waxy)导入三系恢复系湘晴水稻获得转基因植株.从T1代外源基因呈单拷贝整合的转基因湘晴水稻中选取3个稻米直链淀粉含量降低较明显的单株继续种植得到纯合后代.以纯合转基因植株及湘晴水稻(对照)为恢复系分别与寒丰不育系杂交,获得4组杂交稻后代(F2).3个T3代纯合转基因湘晴水稻糙米(T4)直链淀粉含量分别为14.42%、13.96%和14.72%,对照为16.04%;3组由转基因湘晴水稻为父本杂交制种后代(F2)糙米直链淀粉含量分别为14.53%、13.77%和14.64%,对照杂交稻(F2)为16.22%.研究表明,导入湘晴水稻中的反义蜡质基因不仅能够降低湘晴稻米直链淀粉含量,还能够进一步抑制杂交后代的稻米直链淀粉合成.  相似文献   

2.
将含单拷贝Anti-Waxy基因的纯合植株分别作为父本或母本进行正反交,获得两组含双拷贝Anti-Waxy基因的杂交后代,分析了未转基因对照、转基因亲本及两组杂交后代糙米直链淀粉含量以揭示不同Anti-Waxy基因拷贝数对降低稻米直链淀粉含量程度的影响.结果显示,2个单拷贝转基因水稻糙米直链淀粉平均含量分别为10.72%和11.13%,比对照分别降低17.98%和14.84%;两组正交和反交杂交后代糙米直链淀粉平均含量分别为8.96%和8.23%,其平均值为8.60%,比2个转基因杂交亲本糙米直链淀粉含量分别降低19.78%和22.73%,比对照降低了34.20%.结果表明,增加转基因水稻基因组中Anti-Waxy基因拷贝数在一定程度上能够进一步降低稻米直链淀粉含量,通过将独立转化获得同品种转基因植株之间杂交可以成为获得高表达转基因植物的途径.  相似文献   

3.
用根癌农杆菌共转化的方法将p13W8质粒(含反义蜡质基因)和pCAMBIA1300质粒(含潮霉素抗性基因)导入水稻.经PCR检测,发现在29个T1群体中发生抗潮霉素抗性基因和反义蜡质基因的分离;从1 264个T1单株中筛选到183个只带反义蜡质基因片段的转基因植株.选择了4个直链淀粉含量降低的T1单株进行花药培养,获得正常结实的花培苗34株;经PCR检测,有23株为只含反义蜡质基因而无潮霉素抗性基因的植株.从转化到获得直链淀粉含量降低、遗传稳定的转基因植株仅用了一年半时间.  相似文献   

4.
转反义蜡质基因水稻亲本后代性状分析   总被引:1,自引:0,他引:1       下载免费PDF全文
刘清  吴顺  沈革志  彭琼  刘桃李  程鹏  萧浪涛 《遗传》2008,30(9):1195-1200
以单质粒转化的粳稻广粳一号和双质粒共转化的籼稻01早5202所获得的转反义蜡质基因水稻后代为供试材料, 通过潮霉素抗性、PCR检测等手段分析了外源基因的遗传分离特性, 同时, 还分析了转基因材料的直链淀粉含量、waxy蛋白含量的变化特性。结果表明, 无论是采用标记基因(hpt)与目的基因(Anti-sense waxy)连锁的单质粒转化, 还是采用双质粒共转化, 其供试的后代植株材料都发生了外源基因分离现象, 且转基因植株材料的直链淀粉含量都有所下降, 有些单株的直链淀粉含量已降至10%(质量百分比)以下, 远低于对照(其直链淀粉含量为22.04%); SDS-PAGE检测结果显示, 供试的转基因材料的waxy蛋白的含量与对应的直链淀粉含量呈正相关性。  相似文献   

5.
籼稻转反义蜡质基因后代的直链淀粉含量测定和纯系选育   总被引:5,自引:0,他引:5  
通过根癌农杆菌介导将反义蜡质基因导入籼型雄性不育保持系龙特甫B中,获得30个PCR检测为阳性的转基因植株,其中,28个为Southern检测阳性。T1种子直链淀粉含量测定结果表明,有21个转基因植株比龙特甫B明显下降,下降幅度为3%-13%,并在部分转基因植株的种子中观察到蜡质状籽粒;对6个转基因植株进行了不同世代的直链淀粉含量测定,在L3和L5的T4代中,选择到直链淀粉含量分别为15.9%和8.4%的纯合株系,经凝胶电泳测定,WX蛋白量明显降低,并与直链淀粉含量下降表现一致。以L3-1-1-1(15.9%)和L5-8-2-1(8.4%)纯合株系为亲本,分别与龙特甫A进行成对杂交和回交,并测定了F1和B1F1种子直链淀粉含量,以L3-1-1-1作亲本的F1为21.4%,B1F1为17.1%;以L5-8-2-1作亲本的F1为13.6%,B1F1为9.3%,结果表明:在不育系的转育过程中,以中低直链淀粉含量的转基因纯合株系为亲本,能有效降低F1和B1F1的种子直链淀粉含量。  相似文献   

6.
通过根癌农杆菌介导将反义蜡质基因导入籼型雄性不育保持系龙特甫B中,获得30个PCR检测为阳性的转基因植株,其中,28个为Southern检测阳性.T1种子直链淀粉含量测定结果表明,有21个转基因植株比龙特甫B明显下降,下降幅度为3%-13%,并在部分转基因植株的种子中观察到蜡质状籽粒;对6个转基因植株进行了不同世代的直链淀粉含量测定,在L3和L5的T4代中,选择到直链淀粉含量分别为15.9%和8.4%的纯合株系,经凝胶电泳测定,Wx蛋白量明显降低,并与直链淀粉含量下降表现一致.以L3-1-1-1(15,9%)和L5-8-2-1(8.4%)纯合株系为亲本,分别与龙特甫A进行成对杂交和回交,并测定了F1和B1F1种子直链淀粉含量,以L3-1-1-1作亲本的F1为21.4%,B1F1为17.1%;以L5-8-2-1作亲本的F1为13.6%,B1F1为9.3%,结果表明在不育系的转育过程中,以中低直链淀粉含量的转基因纯合株系为亲本,能有效降低F1和B1F1的种子直链淀粉含量.  相似文献   

7.
选用稻米蛋白质含量等品质差异较大的7个籼型不育系(A)及相应的保持系(B)与5个籼型恢复系(R)杂交,组成7×5不完全双列杂交组合。应用包括胚乳、细胞质和母体植株基因的遗传主效应以及基因型×环境互作效应的数量性状遗传模型及非条件和条件分析方法,研究了籼稻稻米蛋白质含量与外观品质性状间的遗传相关性,进一步揭示了籼稻糙米重、稻米直链淀粉含量对稻米蛋白质含量与外观品质性状间遗传相关性的影响。非条件分析的结果表明,除了与糙米厚的相关性未达到显著水平以外,蛋白质含量与其它稻米外观品质性状间的遗传相关性均达极显著水平,其中与糙米宽间的相关性表现为正值,其余为负向相关。条件分析的结果显示,糙米重和直链淀粉含量对稻米蛋白质含量与外观品质性状间的遗传相关性均可产生较大的影响。糙米重主要通过基因型×环境互作效应影响蛋白质含量与外观品质性状间的遗传相关性,其中对蛋白质含量与糙米长、糙米宽、糙米厚间遗传相关性的影响主要表现为负向作用,而对蛋白质含量与糙米长宽比、糙米长厚比间遗传相关性的影响则表现为正向作用。稻米直链淀粉主要通过细胞质遗传主效应和母体加性效应影响蛋白质含量与糙米长、糙米长宽比、糙米长厚比间的遗传相关性,而对蛋白质含量与糙米宽间的相关性影响主要表现为负向作用。  相似文献   

8.
以前的研究结果表明 ,非糯性的稻米中直链淀粉的含量与各品种中蜡质基因 (Wx)第 1内含子被剪接的效率有关 ,即剪接效率高的品种直链淀粉含量也高。为弄清糯米中不含直链淀粉是否也与此内含子剪接效率有关系 ,构建了蜡质基因启动子 (来自籼稻品种2 32 )、蜡质基因第 1内含子 [来自籼稻品种 2 32 (高直链淀粉含量的品种 )或粳稻品种寒丰 6 36 6 (中、低直链淀粉含量的品种 ) ]与GUS报告基因组成的两种嵌合基因 ,将含有这两种嵌合基因的质粒分别转化进粳性糯稻品种奉糯 5 93中 ,同时还分别转化进非糯性的籼稻品种特青和粳稻品种中花 11中作为对照 ,测定它们的抗性愈伤组织与转基因植株未成熟种子胚乳中的GUS酶活性。结果表明与在非糯性的籼稻和粳稻中一样 ,这两种嵌合质粒在不合成直链淀粉的糯稻中也有相当水平的表达。从此结果可以推测 ,糯稻品种有从嵌合基因的转录本中剪接蜡质基因第 1内含子的正常能力 ,而在糯稻中缺乏直链淀粉可能是糯稻蜡质基因第1内含子中的其它突变所造成的  相似文献   

9.
生育前期遮光对水稻后期功能叶生长及稻米品质的影响   总被引:2,自引:0,他引:2  
刘奇华  李天  张建军 《生态学杂志》2006,25(10):1167-1172
以2个不同直链淀粉含量的水稻品种为材料,研究了生育前期(插秧至幼穗分化期)遮光对水稻后期功能叶生长及稻米品质的影响。结果表明,前期遮光处理后,水稻剑叶面积明显增大,功能叶的碳、氮代谢水平提高;2个品种的籽粒直链淀粉积累过程受到的影响不同,而蛋白质积累受到的影响均一致(即百分含量下降幅度增大);糙米率有所降低,但未达到显著水平;精米率和垩白率极显著下降;整精米率和直链淀粉含量显著或极显著升高;粒长、粒宽和蛋白质含量无显著性变化,但蛋白质含量表现为下降趋势;2个品种间存在着差异。  相似文献   

10.
用于筛选直链淀粉含量为中等的籼稻品种的分子标记   总被引:41,自引:0,他引:41  
用PCR AccⅠ分子标记检测方法 ,检测了来自不同地区的 6 3个栽培水稻品种 (系 )蜡质基因第 1内含子剪接供体 1位碱基是G或是T。另外 ,还测定了这些水稻成熟种子的直链淀粉含量。结果显示该位置是G碱基的水稻品系成熟种子中直链淀粉含量均高于 2 0 % ,该位置是T的均低于 18%。在杂交育种过程中 ,这一分子标记可用于预测水稻植株种子的直链淀粉含量。对高直链淀粉含量的水稻亲本与中等直链淀粉含量的水稻亲本之间 5个籼型杂交组合F2 群体的分析表明 ,蜡质基因第 1内含子 1位碱基是G或是T与水稻种子中直链淀粉含量的高或低是紧密连锁 ,共同分离的。这些结果表明PCR AccⅠ分子标记检测方法可用于选育中等直链淀粉含量的籼稻新品系  相似文献   

11.
12.
颗粒淀粉合成酶(GBSS)和淀粉分支酶3(SBE3)是淀粉合成过程中的两个关键酶,这两个酶主要由耽和SBE3两个基因分别控制,它们的表达量直接影响直链淀粉和支链淀粉的含量比例。为了探讨水稻淀粉关键酶基因耽过量与SBE3干涉复合表达对直链淀粉含量的影响,构建了Wx过量表达与SBE3干涉结合的多基因表达载体,并通过农杆菌介导的方法将其导入日本晴水稻中。经过PCR检测分析获得了65株转基因阳性植株,半定量RT—PCR检测表明转基因株系中Wx基因表达量明显增加,而SBE3基因表达量显著减少。转基因株系籽粒透明度明显降低,直链淀粉含量比野生型的平均高45%,但是千粒重变化不大,与野生型相当。遗传分析表明这些转基因株系多数可稳定遗传。  相似文献   

13.
High temperature significantly alters the amylose content of rice, resulting in mature grains with poor eating quality. However, only few genes and/or quantitative trait loci involved in this process have been isolated and the molecular mechanisms of this effect remain unclear. Here, we describe a floral organ identity gene, OsMADS7, involved in stabilizing rice amylose content at high temperature. OsMADS7 is greatly induced by high temperature at the early filling stage. Constitutive suppression of OsMADS7 stabilizes amylose content under high temperature stress but results in low spikelet fertility. However, rice plants with both stable amylose content at high temperature and normal spikelet fertility can be obtained by specifically suppressing OsMADS7 in endosperm. GBSSI is the major enzyme responsible for amylose biosynthesis. A low filling rate and high expression of GBSSI were detected in OsMADS7 RNAi plants at high temperature, which may be correlated with stabilized amylose content in these transgenic seeds under high temperature. Thus, specific suppression of OsMADS7 in endosperm could improve the stability of rice amylose content at high temperature, and such transgenic materials may be a valuable genetic resource for breeding rice with elite thermal resilience.  相似文献   

14.
In addition to rice (Oryza sativa L.) cultivars, there are three wild rice species, namely O.rufipogon Griff, O. officinalis Wall and O. granulata Baill, in Yunnan Province, China. Each species has different subtypes and ecological distributions. Yunnan wild rice species are excellent genetic resources for developing new rice cultivars. The nutritional components of the husked seeds of wild rice have not been investigated thus far. Herein, we report on the contents of total protein, starch, amylose, 17 amino acids, and five macro and five trace mineral elements in husked seeds from three wild rice species and six O. sativa cultivars. The mean (± SD) protein content in the husked rice of O. rufipogon, O. officinalis, and O. granulata was (14.5 ± 0.6)%, (16.3 ± 1. 1)%, and (15.3 ± 0.5)%, respectively. O. officinalis Ⅲ originating from Gengma had the highest protein content (19.3%). In contrast, the average protein content of six O. sativa cultivars was only 9.15%. The total content of 17 amino acids of three wild rice species was 30%-50% higher than that of the six cultivars. Tyrosine, lysine, and valine content in the three wild rice species was 34%-209% higher than that of the cultivars. However, the difference in total starch content among different O. sativa varieties or types of wild rice species was very small. The average amylose content of O. rufipogon, O. officinalis,and O. granulata was 12.0%, 9.7%, and 11.3%, respectively, much lower than that of the indica and japonica varieties (14.37%-17.17%) but much higher than that of the glutinous rice cultivars (3.89%). The sulfur, phosphorus, magnesium, zinc, and ferrite content in the three wild rice species was 30%-158% higher than that of the six cultivars. The considerable difference in some nutritional components among wild rice species and O. sativa cultivars represents a wide biodiversity of Yunnan Oryza species. Based on the results of the present study, it is predicted that some good genetic traits, especially high protein and ideal amylose content, of Yunnan wild rice species may be useful in improving the nutritional value of rice. This is the first report regarding the amino acid, mineral element, protein and amylose content of husked seeds of some Yunnan wild rice species that have important genetic characteristics for rice quality and nutritional value.  相似文献   

15.
将反义Wx基因转入水稻,导致Wx蛋白不同程度减少,颖果中的直链淀粉含量不同程度下降,总淀粉含量显著降低,直链淀粉与总淀粉的比值极显著降低。在水稻颖果发育过程中,ADPG-PPase、GBSS、SSS和SBE的活性在灌浆前期迅速升高,达最大值后很快下降,在灌浆中后期下降趋缓。Wx蛋白减少后的转基因水稻颖果中的GBSS活性明显下降,下降幅度与直链淀粉含量相一致,而且活性高峰期比其亲本有所提前。转基因水稻颖果中ADPG-PPase和SSS的活性在颖果发育的前中期,SBE则在中后期高于相应的亲本。  相似文献   

16.
The Waxy (Wx) gene encodes a granule-bound starch synthase (GBSS) that plays a key role in the amylose synthesis of rice and other plant species. Two functional Wx alleles of rice exist: Wx(a), which produces a large amount of amylose, and Wx(b), which produces a smaller amount of amylose because of the mutation at the 5' splice site of intron 1. Wx(b) is largely distributed in Japonica cultivars, and high amylose cultivars do not exist in Japonica cultivars. We introduced the cloned Wx(a) cDNA into null-mutant Japonica rice (wx). The amylose contents of these transgenic plants were 6-11% higher than that of the original cultivar, Labelle, which carries the Wx(a) allele, although the levels of the Wx protein in the transgenic rice were equal to those of cv. Labelle. We also observed a gene-dosage effect of the Wx(a) transgene on Wx protein expression, but a smaller dosage effect was observed in amylose production with over 40% of amylose content in transgenic rice. Moreover, one transgenic line carrying eleven copies of the transgene showed low levels of Wx expression and amylose in the endosperm. This suggested that the integration of excessive copies of the transgene might lead to gene silencing.  相似文献   

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