Literature DB >> 33583963

Assessment of Management Options on Striga Infestation and Maize Grain Yield in Kenya.

Fred Kanampiu1, Dan Makumbi2, Edna Mageto3, Gospel Omanya4, Sammy Waruingi5, Peter Musyoka6, Joel Ransom7.   

Abstract

The parasitic purple witchweed [Striga hermonthica (Del.) Benth.] is a serious constraint to maize production in sub-Saharan Africa, especially in poor soils. Various Striga spp. control measures have been developed, but these have not been assessed in an integrated system. This study was conducted to evaluate a set of promising technologies for S. hermonthica management in western Kenya. We evaluated three maize genotypes either intercropped with peanut (Arachis hypogaea L.), soybean [Glycine max (L.) Merr.], or silverleaf desmodium [Desmodium uncinatum (Jacq.) DC] or as a sole crop at two locations under artificial S. hermonthica infestation and at three locations under natural S. hermonthica infestation between 2011 and 2013. Combined ANOVA showed significant (P < 0.05) cropping system and cropping system by environment interactions for most traits measured. Grain yield was highest for maize grown in soybean rotation (3,672 kg ha-1) under artificial infestation and in D. uncinatum and peanut cropping systems (3,203 kg ha-1 and 3,193 kg ha-1) under natural infestation. Grain yield was highest for the Striga spp.-resistant hybrid under both methods of infestation. A lower number of emerged S. hermonthica plants per square meter were recorded at 10 and 12 wk after planting on maize grown under D. uncinatum in the artificial S. hermonthica infestation. A combination of herbicide-resistant maize varieties intercropped with legumes was a more effective method for S. hermonthica control than individual component technologies. Herbicide-resistant and Striga spp.-resistant maize integrated with legumes would help reduce the Striga spp. seedbank in the soil. Farmers should be encouraged to adopt an integrated approach to control Striga spp. for better maize yields. © Weed Science Society of America, 2018.

Entities:  

Keywords:  Cropping systems; herbicide resistance; imazapyr-resistant hybrids; legumes; maize varieties; peanut

Year:  2018        PMID: 33583963      PMCID: PMC7797635          DOI: 10.1017/wsc.2018.4

Source DB:  PubMed          Journal:  Weed Sci        ISSN: 0043-1745            Impact factor:   2.713


  2 in total

Review 1.  Pest management strategies in traditional agriculture: an African perspective.

Authors:  T Abate; A van Huis; J K Ampofo
Journal:  Annu Rev Entomol       Date:  2000       Impact factor: 19.686

2.  Primary Haustorial Development of Striga asiatica on Host and Nonhost Species.

Authors:  M E Hood; J M Condon; M P Timko; J L Riopel
Journal:  Phytopathology       Date:  1998-01       Impact factor: 4.025

  2 in total
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Review 1.  Genome Editing for Sustainable Agriculture in Africa.

Authors:  Leena Tripathi; Kanwarpal S Dhugga; Valentine O Ntui; Steven Runo; Easter D Syombua; Samwel Muiruri; Zhengyu Wen; Jaindra N Tripathi
Journal:  Front Genome Ed       Date:  2022-05-12

2.  Genetic dissection of Striga hermonthica (Del.) Benth. resistance via genome-wide association and genomic prediction in tropical maize germplasm.

Authors:  Manje Gowda; Dan Makumbi; Biswanath Das; Christine Nyaga; Titus Kosgei; Jose Crossa; Yoseph Beyene; Osval A Montesinos-López; Michael S Olsen; Boddupalli M Prasanna
Journal:  Theor Appl Genet       Date:  2021-01-03       Impact factor: 5.699

Review 3.  Farmers' indicators of soil health in the African highlands.

Authors:  Samuel Eze; Andrew J Dougill; Steven A Banwart; Susannah M Sallu; Harriet E Smith; Hemant G Tripathi; Rashid N Mgohele; Catherine J Senkoro
Journal:  Catena (Amst)       Date:  2021-08       Impact factor: 5.198

  3 in total

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