[水稻离体叶片叶绿素含量和叶绿素降解速度控制qtl的定位]。

Hai Long Zuo, Ke Xiao, Yong Juan Zhang, Jun Zhi Zhang, Ying Jun Gong, Yan Jun Dong
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引用次数: 0

摘要

以籼稻品种IR24与粳稻品种Asominori杂交而成的重组自交系(RI)群体为研究对象,利用复合区间作图分析(CIM)对水稻分蘖期离体叶片控制叶片叶绿素含量(LCC)和叶绿素降解速度(CDS)的qtl进行了定位。结果检测到4个控制LCC的qtl (qLCC-3、qLCC-5、qLCC-7、qLCC-12)和3个与CDS相关的qtl (qCDS-1、qCDS-6、qCDS-7)。其中,对CDS影响最大的qCDS-7位于7号染色体上,与检测到的LCC的qCDS-7基因组区域重合。本研究结果基本阐明了水稻叶片叶绿素含量和离体叶片叶绿素降解速度的遗传基础,为水稻生长早期叶片衰老的快速测定和高光合效率育种提供了依据。
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[Mapping of QTLs controlling leaf chlorphyll content and chlorphyll degradation speed of detached leaves in rice].

A recombinant inbred (RI) population derived from the cross between an indica variety, IR24, and a japonica variety, Asominori, was used to map QTLs controlling leaf chlorophyll content (LCC) and chlorophyll degradation speed (CDS) of detached leaves collected at the tillering stage of rice through composite interval mapping analysis (CIM). Resultantly, four QTLs (qLCC-3, qLCC-5, qLCC-7, qLCC-12) controlling LCC and three QTLs (qCDS-1, qCDS-6, qCDS-7) associated with CDS were detected respectively. Among them, qCDS-7 with the largest effect for CDS, located on chromosome 7, coincided with the genomic region of qLCC-7 for LCC detected. Those results from this study basically can explicate the genetic basis associated with leaf chlorophyll content and chlorophyll degradation speed of detached leaves in rice, which might be available for a rapid determination of leaf senescence at early growth-stages and breeding of high-photosynthetic efficiency in rice.

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