BREEDING POTENTIAL OF UPLAND COTTON FOR WATER STRESS TOLERANCE

被引:4
作者
Rehman, Abdul [1 ]
Azhar, Muhammad Tehseen [1 ,2 ,3 ]
Shakeel, Amir [1 ]
Basra, Shahzad Maqsood Ahmad [4 ]
机构
[1] Univ Western Australia, Dept Plant Breeding & Genet, Nedlands, WA, Australia
[2] Univ Western Australia, US Pakistan Ctr Adv Studies Agr & Food Secur, Climate Change Chair, Nedlands, WA, Australia
[3] Univ Western Australia, Sch Biol Sci M084, Nedlands, WA, Australia
[4] Univ Agr Faisalabad, Dept Agron, Faisalabad, Pakistan
来源
PAKISTAN JOURNAL OF AGRICULTURAL SCIENCES | 2017年 / 54卷 / 03期
关键词
Combining ability; cotton; gene action; line x tester; water stress; GOSSYPIUM-HIRSUTUM GERMPLASM; MORPHOLOGICAL TRAITS; YIELD COMPONENTS; L; MAIZE;
D O I
10.21162/PAKJAS/17.6324
中图分类号
S [农业科学];
学科分类号
09 ;
摘要
To develop genotypes that can yield, better under water stress conditions, plant breeders must have knowledge about gene action and combining abilities of parents for various quantitative traits related to drought tolerance. The objective of the study was to provoke genetic information which may be used in cotton breeding program to enhance drought tolerance. Thirty cotton genotypes were screened on the basis of root and shoot length at seedling stage in glasshouse. Ten cotton genotypes namely NIAB-111, CP-15/2, BH-160, CIM-1100, CRIS-134, CIM-446, FH-900, MNH-93, CIM-707 and CIM-482 were declared to be drought tolerant due to overwhelming performance. In contrast, CIM-506, NIAB Karishma, MNH-129, FH-1000, S-12 and Acala-1517C were identified as drought sensitive, later on they were hybridized following Line x Tester mating fashion. Breeding potential of sixty families along with parents was assessed for plant height, monopodial branches per plant, sympodial branches per plant, number of bolls per plant, seed index, uniformity index and excised leaf water loss. Analysis of variance revealed the predominance of non-additive genetic effects in the inheritance of characters studied. The plants selected in early segregating generation may not be dependable, but selection at later segregating generations may show good level of tolerance to water stress.
引用
收藏
页码:619 / 626
页数:8
相关论文
共 31 条
  • [1] Ali Q, 2013, ADVAN LIFE SCI, V1, P52
  • [2] Ali Y., 2005, International Journal of Environmental Science and Technology, V2, P27
  • [3] [Anonymous], 1982, BREEDING PLANTS LESS
  • [4] Benjamin JG., 2014, Open J. of Soil Sci, V4, P151, DOI [DOI 10.4236/0JSS.2014.44018, 10.4236/ojss.2014.44018, DOI 10.4236/OJSS.2014.44018]
  • [5] Clarke JM, 1982, J PLANT SCI, V62, P571, DOI DOI 10.4141/CJPS82-086
  • [6] Cobley L.S., 1976, An introduction to the botany of tropical crops, V2nd, P252
  • [7] Combining ability for nodulation in common bean (Phaseolus vulgaris L.) genotypes from Andean and Middle American gene pools
    Caixeta Franco M.
    Tulio Cassini S.
    Rodrigues Oliveira V.
    Vieira C.
    Mui Tsai S.
    Damiao Cruz C.
    [J]. Euphytica, 2001, 118 (3) : 265 - 270
  • [8] Characterization of Cotton (Gossypium hirsutum) Germplasm for Drought Tolerance using Seedling Traits and Molecular Markers
    Hassan, Hafiz Mumtaz
    Azhar, Faqir Muhammad
    Khan, Asif Ali
    Basra, Shahzad M. A.
    Hussain, Manzoor
    [J]. INTERNATIONAL JOURNAL OF AGRICULTURE AND BIOLOGY, 2015, 17 (06) : 1213 - 1218
  • [9] hatt J, 1979, P IND ACAD SCI, V8, P451
  • [10] Root physiological characteristics associated with drought resistance in tall fescue cultivars
    Huang, BR
    Gao, HW
    [J]. CROP SCIENCE, 2000, 40 (01) : 196 - 203