Automated Thinning Increases Uniformity of In-row Spacing and Plant Size in Romaine Lettuce

Author:

Chu Qingquan1,Liu Jiangang1,Bali Khaled2,Thorp Kelly R.3,Smith Richard4,Wang Guangyao (Sam)5

Affiliation:

1. 1College of Agronomy and Biotechnology, China Agricultural University, No. 2 West Yuanmingyuan Road, Beijing 100193, China

2. 2University of California Cooperative Extension, Imperial County, 1050 East Holton Road, Holtville, CA 92250

3. 3U.S. Arid-Land Agricultural Research Center, U.S. Department of Agriculture—Agricultural Research Service, 21881 North Cardon Lane, Maricopa, AZ 85138

4. 4University of California Cooperative Extension, Monterey County, 1432 Abbott Street, Salinas, CA 93901

5. 5Institute of Cotton Research, Shanxi Academy of Agricultural Sciences, 118 Huanghe Road, Yuncheng, Shanxi 044000, China

Abstract

The low availability and high cost of farm hand labor make automated thinners a faster and cheaper alternative to hand thinning in lettuce (Lactuca sativa). However, the effects of this new technology on the uniformity of plant spacing and size as well as crop yield are not proven. Three experiments were conducted in commercial romaine heart lettuce fields in 2013 and 2014 in Imperial Valley, CA, to compare the effects of automated thinning and hand thinning on uniformity of in-row spacing, plant size, and crop yield. Overhead images taken at 1 week after hand thinning indicate that thinning 8 to 11 days earlier by automated thinners did not affect plant size compared with the hand thinning treatment. However, lettuce plants in the automated thinning treatment were larger than plants in the hand thinning treatment 2 to 3 weeks after hand thinning. Automated thinners increased the uniformity of in-row spacing, increased the percentage of plants with the desired in-row spacing of 24 to 32 cm, and almost completely removed plants with an undesirable in-row spacing of 4 to 20 cm. As a result, individual lettuce plant weight and heart weight from the automated thinning plots was significantly greater and plants were more uniform compared with the hand thinned plants. Despite increases in lettuce plant size and uniformity in all three experiments, yield benefits of automated thinning were only significant in one of the three experiments due to larger plant populations resulting from hand thinning. This study suggests that automated thinning increases lettuce plant size and uniformity and makes it possible for growers to increase plant population and crop yield by optimizing in-row spacing.

Publisher

American Society for Horticultural Science

Subject

Horticulture

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