Plant Defense by Latex: Ecological Genetics of Inducibility in the Milkweeds and a General Review of Mechanisms, Evolution, and Implications for Agriculture

被引:14
作者
Agrawal, Anurag A. [1 ,2 ]
Hastings, Amy P. [1 ]
机构
[1] Cornell Univ, Dept Ecol & Evolutionary Biol, Ithaca, NY 14850 USA
[2] Cornell Univ, Dept Entomol, Ithaca, NY 14853 USA
基金
美国国家科学基金会; 美国食品与农业研究所;
关键词
Asclepias; Jasmonic acid; Monarch butterfly Danaus plexippus; Phenotypic plasticity; Plant-insect interactions; Trade-offs; ASCLEPIAS-SYRIACA; HEVEA-BRASILIENSIS; TRENCHING BEHAVIOR; INDUCED RESPONSES; TRADE-OFFS; RESISTANCE; TRAITS; GROWTH; CARDENOLIDES; SPECIFICITY;
D O I
10.1007/s10886-019-01119-8
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Latex occurs in 10% of plant families, has evolved independently many times, and is the most effective defense of milkweeds against its chewing herbivores. Here we report on new experiments on the heritability and inducibility of latex in several milkweed species. In addition, we review what is known about the genetic and environmental determinants of latex exudation, hormonal regulation, evolution within and among species, and the role and frequency of latex in agricultural crops. We first evaluated genotype-by-environment interactions using similar to 20 full-sibling genetic families in each of seven Asclepias species treated as controls or attacked by monarch butterfly caterpillars. All species showed substantial genetic variation for latex exudation and six of seven species responded to monarch herbivory (two species increased latex, two species decreased, and two showed variation among genetic families). Exogenous application of jasmonic acid (JA) to three species induced a consistent increase in latex (including species which showed a decline following caterpillar herbivory). We next evaluated three hypotheses for what determines genetic variation for induced latex in A. syriaca: 1) a trade-off with constitutive investment, 2) differential endogenous JA induction, or 3) variation in responsiveness to JA. We only found support for the second hypothesis: genetic families with a stronger JA-burst showed the greatest latex exudation following herbivory. We conclude that most species exhibit a genetic and inducible basis for latex, although genetic variation in inducibility is not pervasive. Finally, we summarized studies across 22 species of Asclepias and found that neither a species' latitude nor its phylogenetic position predicted latex inducibility. Nonetheless, a negative association between constitutive and induced latex across species indicates a macroevolutionary trade-off in allocation to this defense. Our review indicates that jasmonic acid is a key regulator of latex exudation, laticifer morphology, and defensive metabolites within latex. Biotic and abiotic factors strongly modulate latex expression. A survey of latex in food crops revealed that latex and analogous exudates (gums, resins, mucilage) are more common than expected based on their distribution across all plants. In conclusion, despite its widespread occurrence, the literature on latex is currently dominated by rubber trees and milkweeds, and we look forward to the broadening of ecological, agricultural, and mechanistic research into other systems.
引用
收藏
页码:1004 / 1018
页数:15
相关论文
共 92 条
  • [1] Agrawal A., 2017, Monarchs and Milkweed: A Migrating Butterfly, a Poisonous Plant, and Their Remarkable Story of Coevolution, DOI DOI 10.2307/J.CTVC775WC
  • [2] Agrawal A.A., 2015, Monarchs in a Changing World: Biology and Conservation of an Iconic Insect, P47
  • [3] Agrawal AA, 2005, EVOL ECOL RES, V7, P651
  • [4] Resistance and susceptibility of milkweed: Competition, root herbivory, and plant genetic variation
    Agrawal, AA
    [J]. ECOLOGY, 2004, 85 (08) : 2118 - 2133
  • [5] Ecological play in the coevolutionary theatre: genetic and environmental determinants of attack by a specialist weevil on milkweed
    Agrawal, AA
    Van Zandt, PA
    [J]. JOURNAL OF ECOLOGY, 2003, 91 (06) : 1049 - 1059
  • [6] Evolution of latex and its constituent defensive chemistry in milkweeds (Asclepias):: a phylogenetic test of plant defense escalation
    Agrawal, Anurag A.
    Lajeunesse, Marc J.
    Fishbein, Mark
    [J]. ENTOMOLOGIA EXPERIMENTALIS ET APPLICATA, 2008, 128 (01) : 126 - 138
  • [7] Phylogenetic escalation and decline of plant defense strategies
    Agrawal, Anurag A.
    Fishbein, Mark
    [J]. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2008, 105 (29) : 10057 - 10060
  • [8] Trade-offs constrain the evolution of an inducible defense within but not between plant species
    Agrawal, Anurag A.
    Hastings, Amy P.
    [J]. ECOLOGY, 2019, 100 (12)
  • [9] Evolution of Plant Growth and Defense in a Continental Introduction
    Agrawal, Anurag A.
    Hastings, Amy P.
    Bradburd, Gideon S.
    Woods, Ellen C.
    Zuest, Tobias
    Harvey, Jeffrey A.
    Bukovinszky, Tibor
    [J]. AMERICAN NATURALIST, 2015, 186 (01) : E1 - E15
  • [10] Tests of the coupled expression of latex and cardenolide plant defense in common milkweed (Asclepias syriaca)
    Agrawal, Anurag A.
    Patrick, Eamonn T.
    Hastings, Amy P.
    [J]. ECOSPHERE, 2014, 5 (10):