首页> 外国专利> Increased performance, the force and stress Tolerance in Plants by introduction of a Nucleic Acid encoding the transcription factor s (Hy5 hypocotyl)

Increased performance, the force and stress Tolerance in Plants by introduction of a Nucleic Acid encoding the transcription factor s (Hy5 hypocotyl)

机译:通过引入编码转录因子s(Hy5下胚轴)的核酸,提高了植物的性能,耐力和胁迫耐受性

摘要

It also provides a method for altering a property of a plant and a plant that exhibits a property altered.Claim 1: a Nucleic Acid Construct comprising a recombinant Nucleic Acid Sequence, wherein the introduction of nucleic acid Construct in a Plant results in the reduction or elimination of expression of a polypeptide of members Hy5 CLADE or sth2,In comparison with a Control Plant; wherein the members of the CLADE Hy5 polypeptide is encoded by a Gene that is Hybrid in SEQ ID no 2 in Harsh conditions; or comprises a domain V / D - P - e - F - G has an identity of amino acid on the am Inou00e1cidos 35 - 47 of the SEQ ID no 2,And a bzip Domain that has an identity of amino acid from the amino acids 78 - 157 of the SEQ ID no 2; or has an identity of amino acid in SEQ ID no 2; and wherein the Member of the CLADE sth2 polypeptide is encoded by a Gene that is Hybrid and The SEQ ID no 24 in Harsh conditions; or comprises two domains of the Box BAnd the first domain of Box B has an identity of amino acid from the amino acids 2 - 33 of the SEQ ID no 24 and the second domain of Box B has an identity of amino acid from the amino acids 60 - 102 of the SEQ ID no: 24; or has an identity of amino acid on the S ID Ns EQ 24; and the identity of amino acid selected from the group consisting of at least: 31%, 32%,33%, 34%, 35%, 36%, 37%, 39%, 38%, 40%, 41%, 42%, 43%, 44%, 45%, 46%, 47%, 48%, 49%, 50%, 51%, 52%, 53%, 54%, 55%, 56%, 57%, 58%, 59%, 60%, 61%, 62%, 63%, 64%, 65%, 66%, 67%, 68%, 69%, 70%, 71%, 72%, 73%, 74%, 75% 76%, 77%, 78%, 79%, 80%, 81%, 82%, 83%, 84%, 85%, 86%, 87%, 88%, 89%, 90%, 91%, 92%, 93%, 94%, 95%, 96%, 98%, 98%, 99% and 100%, and these plants exhibited improved performanceMore Greater Germination, Seedling vigour, Plant Height, more mature, more growth of Secondary Roots, higher number of Plants per row, thicker stems, resistance to lodging, higher number of nodes, Better Cold Tolerance, Greater tolerance to water scarcity, M The Stoma conductance Detection altered enor, C / n, increased tolerance to low Nitrogen,Enhanced tolerance to hyperosmotic stress, delay in Senescence, altering levels of Photosynthetically Active Pigments, best quality of Seeds, Lower percentage of hard Seeds, higher average STEM diameter, higher density, Better growth or greater Force in time ta Rdu00eda, greater number of nodes on the main stem in legumesGreater coverage of drink in the late era of the station, or a combination of these properties, in comparison with the control plants.
机译:本发明还提供了用于改变植物的性质的方法和表现出改变的性质的植物。权利要求1:包含重组核酸序列的核酸构建体,其中将核酸构建体引入植物中导致减少或减少。与对照植物相比,消除了Hy5 CLADE或sth2成员的多肽的表达;其中CLADE Hy5多肽的成员是由在严酷条件下以SEQ ID No 2杂合的基因编码的;或包含结构域V / D-P-e-F-G具有SEQ ID no 2的ino u00e1cidos 35-47上的氨基酸同一性,以及具有与来自以下结构的氨基酸同一性的bzip域SEQ ID No 2的氨基酸78-157;或具有SEQ ID No 2中氨基酸的同一性;其中CLADE sth2多肽的成员由在严酷条件下为杂种且SEQ ID NO为24的基因编码;或包含框B的两个域,框B的第一个域与SEQ ID no 24的氨基酸2-33具有氨基酸同一性,框B的第二个域与该氨基酸具有氨基酸同一性SEQ ID no:24的60-102;或在S ID Ns EQ 24上具有氨基酸身份;且氨基酸的身份至少选自:31%,32%,33%,34%,35%,36%,37%,39%,38%,40%,41%,42% ,43%,44%,45%,46%,47%,48%,49%,50%,51%,52%,53%,54%,55%,56%,57%,58%,59 %,60%,61%,62%,63%,64%,65%,66%,67%,68%,69%,70%,71%,72%,73%,74%,75%76 %,77%,78%,79%,80%,81%,82%,83%,84%,85%,86%,87%,88%,89%,90%,91%,92%, 93%,94%,95%,96%,98%,98%,99%和100%表现出更好的性能。更大的发芽,幼苗活力,株高,更成熟,次生根的生长更多,数量更多每行植株数,茎粗,抗倒伏性,结节数更多,耐寒性更好,对缺水的耐受性更大,M气孔电导检测改变了碳氮比,提高了对低氮的耐受性,对高渗的耐受性胁迫,衰老延迟,光合活性色素水平的改变,种子的最佳品质,硬种子的百分比降低,平均STEM直径更高,密度更高,生长更好或时间上的力更大,豆科植物主茎上的结点数量更多,相比之下后期站中饮料的覆盖率更高,或者这些特性的组合与对照植物。

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