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小麦灌浆相关基因TaGIF1的克隆及表达分析 被引量:4
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作者 田小萍 王光浩 +1 位作者 张宏 吉万全 《麦类作物学报》 CAS CSCD 北大核心 2020年第1期30-40,共11页
GIF1(grain incomplete filling 1)编码了一种质外体途径中催化蔗糖不可逆水解的细胞壁蔗糖转化酶,主要在组织生长旺盛并且需要供能的库中表达,是影响灌浆的关键基因。根据水稻OsGIF1基因序列,同源克隆了普通小麦第2部分同源群染色体上... GIF1(grain incomplete filling 1)编码了一种质外体途径中催化蔗糖不可逆水解的细胞壁蔗糖转化酶,主要在组织生长旺盛并且需要供能的库中表达,是影响灌浆的关键基因。根据水稻OsGIF1基因序列,同源克隆了普通小麦第2部分同源群染色体上的TaGIF1基因,它包含7个外显子和6个内含子,与水稻OsGIF1基因结构相似。小麦TaGIF1-2A基因含有237 bp的5′UTR、1986 bp的ORF、262 bp的3′UTR,编码661个氨基酸。通过分析15份大小粒小麦品种的gDNA序列,在TaGIF1-2A基因中共发现21个SNP位点,9个位于编码区,12个位于非编码区。SNP分组发现,15份大小粒小麦品种中TaGIF1-2A基因共存在8种单倍型。氨基酸序列比对显示,共存在2个氨基酸变异位点,其余SNP位点未引起氨基酸的改变。大小粒品种中无特异SNP变异,表明该基因编码区序列高度保守。就TaGIF1-2A启动子区而言,大粒材料元件数量和种类均多于小粒材料,而且这些元件均与籽粒发育相关,说明TaGIF1-2A基因启动子的活跃程度与最终籽粒灌浆饱满度的形成可能存在密切联系。qRT-PCR分析表明,TaGIF1-2A在籽粒和颖壳中都有表达,在不同小麦材料中表达模式相同,说明与籽粒大小无关;而在2~6 DAA的籽粒中,表达量剧烈上调,而后急剧下调,由此推测TaGIF1-2A可能影响籽粒灌浆,在灌浆前期与籽粒发育密切相关。亚细胞定位结果表明,TaGIF1-2A主要作用在细胞壁上。 展开更多
关键词 小麦 蔗糖转化酶 tagif1 启动子分析 表达分析
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Enhancing wheat regeneration and genetic transformation through overexpression of TaLAX1
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作者 Yang Yu Haixia Yu +8 位作者 Jing Peng Wang Jinsong Yao Yi Peng Wang Feng Li Zhang Shi Rong Wang Yajie Zhao Xiang Yu Zhao Xian Sheng Zhang Ying Hua Su 《Plant Communications》 SCIE CSCD 2024年第5期9-24,共16页
In the realm of genetically transformed crops,the process of plant regeneration holds utmost significance.However,the low regeneration efficiency of several wheat varieties currently restricts the use of genetic trans... In the realm of genetically transformed crops,the process of plant regeneration holds utmost significance.However,the low regeneration efficiency of several wheat varieties currently restricts the use of genetic transformation for gene functional analysis and improved crop production.This research explores overex-pression of TaLAX PANICLE1(TaLAX1),which markedly enhances regeneration efficiency,thereby boost-ing genetic transformation and genome editing in wheat.Particularly noteworthy is the substantial increase in regeneration efficiency of common wheat varieties previously regarded as recalcitrant to genetic trans-formation.Our study shows that increased expression of TaGROWTH-REGULATING FACTOR(TaGRF)genes,alongside that of their co-factor,TaGRF-INTERACTING FACTOR 1(TaGIF1),enhances cytokinin accumulation and auxin response,which may play pivotal roles in the improved regeneration and transfor-mation of TaLAX1-overexpressing wheat plants.Overexpression of TaLAX1 homologs also significantly in-creases the regeneration efficiency of maize and soybean,suggesting that both monocot and dicot crops can benefit from this enhancement.Ourfindings shed light on a gene that enhances wheat genetic trans-formation and elucidate molecular mechanisms that potentially underlie wheat regeneration. 展开更多
关键词 plant regeneration genetic transformation TaLAX1 TaGRF4–tagif1 CYTOKININ AUXIN WHEAT
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