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The physiological genetic effects of 1BL/1RS translocated chromosome in 'stay green' wheat cultivar CN17

机译:1BL / 1RS易位染色体在“保持绿色”小麦品种CN17中的生理遗传效应

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Luo, P. G., Zhang H. Y., Shu,. K., Wu. X. H., Zhang, H. Q. and Ren, Z. L. 2009. The physiological genetic effects of 1BL/1RS translocated chromosome in "stay green" wheat cultivar CN17 Can. J. Plant Sci. 89: 1-10. Rye (Secale cereale L.) chromosome arm 1RS in the wheat (Trilicum aestivitin L.) genetic background has potential significance for yield improvement without affecting its resistance to several diseases. A new wheat cultivar, Chuannong17 (CN17), carrying the wheat-rye 1BL/1RS translocated chromosome, exhibited "stay green" phenotypes. To determine the genetic behavior and physiological effect, MY11, CN17, Bc(1)F(1), and F-2 populations of MY11/CN17 were grown in the normal wheat growing seasons in 2004-2005 and 2005-2006. Analysis of photosynthetic parameters showed that the coordinate increase of net photosynthetic rate (P-n), stomatal conductance (G(s)) and nag leaf area duration from anthesis to maturation (D-2) would be the physiological basis of the high yield potential of the 1BL/1RS translocation (CN17). The analysis for morphological indices proposed that the smaller leaf length (L-1), flag leafwidth (L-w) and angle between stein and nag leaf (A) would be responsible for the morphological basis of the high yield potential. Analysis of the relationship between the yield and physiological indices Suggested that the coordinate increase Of Source, the partitioning of assimilate from source to sink, and the sink strength was the material basis of the high yield potential. These results afforded some persuasive evidence to support the idea that wheat cultivar CN17 also shows a coordinate relationship between physiology and morphology and is indeed functionally a "stay green" cultivar. The results show that exploitation of a foreign chromosome or chromosome arm such as 1RS to develop "stay green" genotype cultivars in wheat breeding has the potential to increase yield.
机译:罗平庚,张慧仪,舒。吴X. H.,Zhang,H. Q. and Ren,Z. L. 2009. 1BL / 1RS易位染色体在“保持绿色”小麦品种CN17 Can中的生理遗传效应。 J.植物科学。 89:1-10。小麦(Trilicum aestivitin L.)遗传背景中的黑麦(Secale graine L.)染色体臂1RS对提高产量而不影响其对几种疾病的抵抗力具有潜在意义。携带小麦-黑麦1BL / 1RS易位染色体的新小麦品种川农17(CN17)表现出“保持绿色”表型。为了确定遗传行为和生理效应,在2004-2005年和2005-2006年的正常小麦生长季节中,MY11 / CN17的MY11,CN17,Bc(1)F(1)和F-2种群生长。光合参数分析表明,从花期到成熟期净光合速率(Pn),气孔导度(G(s))和na叶面积持续时间(D-2)的协调增加将是高产潜力的生理基础。 1BL / 1RS易位(CN17)。对形态指标的分析表明,较小的叶片长度(L-1),旗叶宽度(L-w)和斯坦叶与na叶之间的夹角(A)将成为高产潜力的形态基础。产量与生理指标之间的关系分析表明,源的坐标增加,同化物从源到库的分配以及库的强度是高产潜力的物质基础。这些结果提供了一些有说服力的证据来支持这样的观点,即小麦品种CN17也显示出生理学和形态之间的协调关系,并且在功能上确实是“保持绿色”的品种。结果表明,在小麦育种中利用外来染色体或染色体臂(如1RS)开发“保持绿色”基因型品种具有提高产量的潜力。

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