Tek Ahmet L, Stevenson Walter R, Helgeson John P, Jiang Jiming
Department of Horticulture, University of Wisconsin, Madison, WI 53706, USA.
Theor Appl Genet. 2004 Jul;109(2):249-54. doi: 10.1007/s00122-004-1638-4. Epub 2004 Mar 30.
Tuber soft rot and early blight are serious potato diseases. Development of potato varieties resistant to these diseases has been hindered by the scarcity of resistant germplasm. A diploid wild species, Solanum brevidens, shows significant resistance to both diseases. Numerous potato breeding lines have been developed from a potato- S. brevidens somatic hybrid, A206. A BC(3) clone, C75-5+297, derived from this somatic hybrid as well as its BC(1) and BC(2) parental lines showed resistance to both tuber soft rot and early blight. Clone C75-5+297 has consistently out-yielded common varieties under disease stress. Using both molecular and cytogenetic approaches we demonstrated that a single copy of chromosome 8 from S. brevidens replaced a potato chromosome 8 in C75-5+297. Thus, C75-5+297 represents a potato- S. brevidens chromosome substitution line. Our results suggest that the presence of a single chromosome from S. brevidens may significantly impact the resistance to multiple potato diseases. The high yield potential of C75-5+297 makes it an excellent parent for developing potato varieties with resistances to both tuber soft rot and early blight.
块茎软腐病和早疫病是马铃薯的严重病害。抗这些病害的马铃薯品种的培育一直受到抗性种质稀缺的阻碍。一种二倍体野生种,即短柄茄(Solanum brevidens),对这两种病害均表现出显著抗性。从马铃薯 - 短柄茄体细胞杂种A206培育出了许多马铃薯育种系。源自该体细胞杂种的一个BC(3)克隆C75 - 5 + 297及其BC(1)和BC(2)亲本系对块茎软腐病和早疫病均表现出抗性。在病害胁迫下,克隆C75 - 5 + 297的产量一直高于普通品种。我们使用分子和细胞遗传学方法证明,短柄茄的一条8号染色体单拷贝取代了C75 - 5 + 297中的一条马铃薯8号染色体。因此,C75 - 5 + 297代表了一个马铃薯 - 短柄茄染色体代换系。我们的结果表明,来自短柄茄的一条单一染色体的存在可能显著影响对多种马铃薯病害的抗性。C75 - 5 + 297的高产潜力使其成为培育对块茎软腐病和早疫病均有抗性的马铃薯品种的优良亲本。