| Literature DB >> 30984219 |
Olbert Nicolas1,2, Marie Thérèse Charles2, Sylvie Jenni2, Vicky Toussaint2, Serge-Étienne Parent3, Carole Beaulieu1.
Abstract
Bacterial leaf spot (BLS) caused by Xanthomonas campestris pv. vitians (Xcv) places a major constraint on lettuce production worldwide. The most sustainable strategy known to date for controlling BLS is the use of resistant cultivars. The nutrient elemental signature (ionome) of ten lettuce cultivars with three levels of resistance was analyzed by inductively coupled plasma optical emission spectroscopy (ICP-OES) to determine which nutrient balances are linked to resistance to BLS, and to assess the effect of Xcv infection on the ionome. The elemental concentrations were preprocessed with isometric log-ratios to define nutrient balances. Using this approach, 4 out of 11 univariate nutrient balances were found to significantly influence the resistance of lettuce cultivars to BLS (P < 0.05). These significant balances were the overall nutritional status balancing all measured nutrients with their complementary in the dry mass, as well as balances [Mn | Zn,Cu], [Zn | Cu], and [S,N | P]. Moreover, the infection of lettuce cultivars mostly affected the lettuce ionome on the [N,S | P] balance, where infection tended to lean the balance toward the N,S part relatively to P. This study shows that nutrient uptake in lettuce can be affected by BLS infection and that nutrient status influences resistance to BLS infection.Entities:
Keywords: ICP-OES; Lactuca sativa; Xanthomonas campestris; bacterial leaf spot; ionomics; lettuce; nutrient balance; plant resistance
Year: 2019 PMID: 30984219 PMCID: PMC6448033 DOI: 10.3389/fpls.2019.00351
Source DB: PubMed Journal: Front Plant Sci ISSN: 1664-462X Impact factor: 5.753
Susceptibility of the ten lettuce cultivars used in this study when inoculated with Xanthomonas campestris pv. vitians (after Nicolas et al., 2018).
| Cultivar | Type | Plant IDa | Resistance to BLS |
|---|---|---|---|
| Chief | Romaine | PI635108 | Susceptible |
| Gorilla | Romaine | PI630943 | Susceptible |
| Paris Island Cos | Romaine | PI536817 | Susceptible |
| Vista Verde | Romaine | W629938 | Susceptible |
| Romora | Romaine | –b | Intermediate |
| Turbo | Romaine | – | Intermediate |
| Batavia R.G. | Batavia | PI634668 | Tolerant |
| Hochelaga | Crisphead Great Lakes | – | Tolerant |
| Estival | Crisphead Vanguard | PI651883 | Tolerant |
| Little Gem | Latin | PI617959 | Tolerant |
Figure 1Bifurcating tree identification showing 11 hierarchical balances representing a subcomposition of nutrients in the lettuce ionome: [Fv | Fe,Mn,Zn,Cu,Mg,Ca,Na,K,S,N,P], [Fe, Mn,Zn,Cu | Mg,Ca,Na,K,S,N,P], [Fe | Mn,Zn,Cu], [Na,Mg,K,Ca | N,S,P], [Mn | Zn,Cu], [Mg,Ca | Na,K], [S,N | P], [Zn | Cu], [Mg | Ca], [Na | K], [S | N]. The experimental effect on nutrient balances was removed prior to data processing using mixed modeling with the nutrient balance as response and the experiment as random intercept (more details in the Results section).
Figure 2Density curves of balance variables by experiment and treatment before and after detrending the experimental effect.
Figure 3Effects of cultivars and treatments on the ilr values.
Figure 4Correlation (scaling 2) biplots of linear discriminant analysis of susceptibility groups for (A) uninfected and (B) infected across BLS infection susceptibility groups of cultivars.
Figure 5Redundancy analysis correlation triplot (scaling 2) with ionomic balances as response (dark labels) and cultivar, treatment and their interactions as descriptors. The reference case is the uninfected PIC cultivar, one of the susceptible cultivars chosen at random. c_ denotes cultivar, t∗ infected treatment and : (a colon) interaction.
Figure 6Linear effects of nutrient balances and infection on the severity index with experiment as random intercept. Significance was tested at the 0.05 level.