Introgression of type IV trichomes and zingiberene into tomato from S. habrochaites, LA2329: Current status
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1 Introgression of type IV trichomes and zingiberene into tomato from S. habrochaites, LA2329: Current status John Snyder, Mohammad Dawood and Ammar Al-Bayati University of Kentucky Lexington, KY
2 Figure 1. TYLCV distribution pattern among B. tabaci B and Q biotypes in China. The survey was carried out in the field season of The white and red dots represent B. tabaci B and the Q biotype, respectively. The black portion of the dots denotes TYLCV-infected B. tabaci population and its respective infection rate. Inset: Outline map of China showing all the provinces. Surveyed provinces are highlighted in a blue shade. doi: /journal.pone g001 Pan H, Chu D, Yan W, Su Q, Liu B, et al. (2012) Rapid Spread of Tomato Yellow Leaf Curl Virus in China Is Aided Differentially by Two Invasive Whiteflies. PLoS ONE 7(4): e34817
3 Project Objectives Transfer the production of high levels of zingiberene and high type IV trichome density from the wild tomato Solanum habrochaites to the cultivated tomato using conventional breeding methods Recover good reproductive fitness Evaluate resistance to spidermites and other arthropod species in the breeding population
4 Luckwill, 1943 Trichome diversity in Lycopersicon
5 Luckwill, 1943 Type IV is present on S. habrochaites (L. hirsutum) and absent on S. lycopersicum (L. esculentum) Type V is present on S. lycopersicum (L. esculentum) and absent on S. habrochaites (L. hirsutum). The morphology of the type VI gland differs between the two species.
6 S. habrochaites S. lycopersicum
7 Total Number of Aphids 1600 ES Aphid Resistance of S. habrochaites accessions Beijing, HS 800 S MR R 200 HR 0 Accesssion Number
8 LA2329 was resistant to B. argentifollii In previous tests, LA2329 had intermediate densities of type IV and type VI trichomes.
9 Primary methods Crossing scheme is a modified backcross 7-epizingiberene measured by gas chromatography (GC) Trichome density assessed visually at 50X on abaxial surfaces
10 To measure zingiberene, 10 to 20 cm² of leaf tissue is collected and placed in a scintillation vial. Two ml of hexane + internal standard are added, mixed and then an aliquot is removed for analysis by GC. Leaf area is determined from scanned images of leaf tissue. Zingiberene is expressed as GC area units/ cm². Scan of leaflet tissue FID1 A, ( \B116.D) counts Internal Std min
11 Currently at BC5 ~10 % self fruit set, 10 % High type IV density
12
13
14 Results
15 LA2329 Tomato BC4F2 ZGB MT IS MT IS IS ZGB
16
17 Presence of zingiberene is dominant. High concentration is recessive Plants with very low or 0 concentrations of monoterpenes appear to be homozygous for zingiberene synthase Transgressive segregation for monoterpenes
18
19 Results for BC4F2 For the BC4F2, the segregation for presence:absence of zingiberene was 277:115 (2.4:1), X²=3.93 Concentration of zingiberene ranged from 0 to 1.52 X 10E8 AU/cm² of leaflet tissue Mean was 1.0 X 10E7 Most but not all set fruit in the field
20 Zingiberene concentration (FID area unit/cm²) No. of Seed/Fruit Zingiberene concentration (solid bars, left axis) and seed set (hatched bars, right axis) for 27 selected BC4F2 interspecific genotypes. Of ~550 BC4F2 interspecific hybrids evaluated for type IV trichome density and zingiberene concentration, the 27 depicted in this graph were those having type IV density and zingiberene concentration approximately equal to or greater than those on the wild resistant donor parent S. habrochaites LA2329. Seeds were obtained from 16 hybrids. Thus frequency of individuals in the BC4F2 having type IV trichome density and zingiberene concentration similar to those of wild parent, and had the ability to produce seeds was nearly 3%. 1.35E E E E E E E E E E E E E E+06 0 Genotype
21 O32 fruit ~3.4 x 10 7 zingiberene/cm 2 High IV density ~25 seed per fruit
22 High zingiberene, no IV s
23 Zingiberene differences among four BC3F4 families LINE N Zingiberene (AU/cm²) H E+07 A G E+07 B G E+07 B H E+07 C
24 Reproductive Fitness
25
26
27 Dwarfing can be extreme
28 Exerted Stigma!!! BC4F3 January 2018
29 More stigma problems!
30 Reproductive fitness Seeds Seeds per fruit No. of flowers Flowers per truss Pollen Stigma problems? Seed germination Pollen stainability is significantly correlated with fruit set (r=0.82). Seed germination is a problem.
31 Some valuable phenotypes? Small Stature (~20 inches tall Erect, 1 major branch (no staking?) Very concentrated set (~50 fruit in two weeks) Other phenotypes with value Very high brix (2x normal) High flavor
32 Columnar Plants
33 Thanks to: Belinda Labadie Mohammad Dawood Ammar Al-Bayati Dr. Barbara Liedl Trichomes on wild and cultivated eggplant
34 A NEW SESQUITERPENE ALCOHOL FROM WILD TOMATO REPELLED THE TWO-SPOTTED SPIDER MITE, TETRANYCHUS URTICAE Mohammad H Dawood: PhD Student Advise by Dr. John Snyder Horticulture Department April 6 th 2018
35 INTRODUCTION Tomato Solanum lycopersicum is one of the most economically important world-wide grown vegetable. However, tomato is a host for numerous pests that reduce productivity. Tomato breeders have focused more on increasing fruit quantity and quality and less on enhancing crop resistance to herbivores. Ric Bessin, UKY
36 Because of many pathogens and pests, tomato cultivation in most cases considered a high risk crop. Because it needs intensive use of insecticides and pesticides. ashmkn.com
37 Levels of cultivar insect resistance are not enough to decrease the amount of insecticides applied. Alternative approach: decrease the chemical sprays, and allows for a smaller environmental impact. Why wild type? S. habrochaites
38 OBJECTIVES Do other compounds present in trichome secretions have repulsive activities against the two spotted-spider mite Tetranychus urticae, similar to that of zingiberene? Ric Bessin, UKY
39 MATERIAL AND METHODS Plant materials LA2329 accession Solanum habrochaites Florida Materials 2015
40 Column Chromatography Silica gel, MTBE, Hexane Spot test on TLC plate, UV illumination
41 GC/MS (GC)
42 SPIDER MITES (TETRANYCHUS URTICAE KOCH) AND BIOASSAY Hexane zingiberene Spider mites nurtured on bean Phaseolus vulgaris L.
43
44 RESULTS AND DISCUSSION Florida materials
45
46 LA2329 A accession LA2329 F accession
47 After Separation
48 CONCLUSION LA2329 (A) which has ZGB-OH had activity against spider mite behavior more than LA2329 F that included ZGB only. After separation of two major components, the ZGB-OH affected spider mite behavior more than ZGB.
49 THANKS
50 Department of Horticulture The Role of Trichome Secretions and Densities in Spider Mite Behavior for an Interspecific Population of Tomato Advisor Dr. John Snyder Presented by Ammar AL-Bayati, PhD candidate
51 Overview Introduction Hypothesis Objectives Materials and Methods Results Conclusion
52 Introduction There is significant necessity for assay platforms to assess and identify levels of resistance and insect performance, as demonstrated by recent publications reporting this subject. Our hypothesis: Are behavioral differences of mites associated with the presence or absence of leaf compounds and trichome densities?
53 Objectives 1- Observe the differences of mite behavior among a range of hybrids compared to the positive and negative controls. 2- Identify the interactions between genotypes and leaf surfaces with spider mites with respect to presence and absence of type IV trichomes. 3- Determine the interaction of zingiberene content on mite performance.
54 Plant Materials and Methods An interspecific population between Solanum lycopersicum and a wild relative, Solanum habrochaites LA2329, used in this research was maintained in the greenhouse and field in summer 2017 at the University of Kentucky, Lexington, Ky. 13 tomato genotypes (BC 3 F 3 & BC 3 F 4 ) were selected based on presence or absence of trichome type IV, and ZGB. Whole Leaf Bioassay
55 Parameters Measured Leaflet position (1-5) and surface infested by mites Mite webbing score and Feeding damage score (0-3) Leaflet position of webbing and feeding damage (1-5) Egg density (Egg No. per cm 2 of total leaf area) ZGB and monoterpene (MTP) content using gas chromatography (GC-FID). Type IV trichome counting for abaxial and adaxial surfaces using a microgrid. Data were analyzed by SAS using GLM & CORR procedures.
56 Results Genotype Mean (n=3) for Trichome Type IV Density per 4.3 mm 2 Microgrid and Phytochemical concentration per cm 2 Generation Type IV Density Lower Surface Monoterpene (AU/cm 2 leaf area) Zingiberene (AU/cm 2 leaf area) LA2329 Wild Parent E E+06 LA2329OH Wild Control E E+06 PI Wild Control E E+07 W126 Tomato 0 2.3E E+00 W129 Tomato Control 0 3.1E E+00 W160 Tomato Parent 0 4.8E E+00 X155 BC3F E E+00 X166 BC3F E E+07 X71 BC3F E E+07 Z116 BC3F E E+00 Z120 BC3F E E+00 Z161 BC3F E E+06 Z58 BC3F E E+06
57 Results Correlations among parameters after Combining Variables by Surface
58 Results 2.5 Webbing Score, Day PI X166 X155 Z116 LA2329OH LA2329 Z161 Z120 W126 X71 W160 Z58 W129 Tomato Genotypes Spider mite Webbing and Feeding Damage
59 Results Spider mite Webbing and Feeding Damage
60 Results Egg Density (No/cm2 leaf area), Day PI LA2329OH X71 X166 X155 LA2329 Z116 Z161 Z120 Z58 W126 W160 W129 Tomato Genotypes Two-spotted spider mites with eggs Tetranychus urticae Koch
61 Results Web Resistant Line Susceptible line
62 Conclusion Based on reduced mite success on some of the genotypes, we concluded: Resistance has been successfully transferred from the wild to the interspecific population. This bioassay demonstrated behavioral differences of mites associated with the presence or absence of leaf compounds and trichome densities. New plant versions that can produce toxic or repellent chemicals on their own can defend themselves against certain types of arthropods and insects which in turn reduce or eliminate extensive synthetic pesticide utilization and cost.
63
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