Distribution of VA mycorrhizal entry points near the root apex: Is there an uninfectible zone at the root tip of leek or clover?
- 1 November 1992
- journal article
- Published by Wiley in New Phytologist
- Vol. 122 (3) , 469-477
- https://doi.org/10.1111/j.1469-8137.1992.tb00075.x
Abstract
This paper re-examines the question of the susceptibility of plant roots to infection by vesicular-arbuscular mycorrhizal fungi, particularly near the root apex. The cumulative distributions of the observed distance between the root apex and the most apical mycorrhizal entry points are compared with expected distributions based on (i) a random distribution of successful encounters between hypha and root and (ii) an uninfectible apical region (of length Zo ). Data for both Allium porrum L. (leek) and Trifolium subterraneum L. (clover) are well fitted by the expected distributions and in the majority of cases (17/31) the best fit is obtained with zero Zo , with 8 additional cases being best fitted by values of Zo of 1 mm or less. Even where the best fits are obtained with values of Zo greater than zero, the distribution using Zo = 0 is still within the confidence limits for the data. These findings indicate that in neither species is there clear evidence for a subapical region that is immune to infection. The fact that there are short uninfected lengths immediately behind the apex is interpreted as representing a delay between an encounter and a detectable infection. Other consistent deviations of the data from the theoretical distributions are discussed. Fitting the distributions yields values for the frequency of infection (A). These are compared for the two host plants at different propagule densities. The values for leek are much lower than for clover. In both species there are increases in A with increases in propagule density which are consistent with earlier findings.Keywords
This publication has 16 references indexed in Scilit:
- Infection of roots with a dimorphic hypodermis: Possible effects on solute uptakeAgriculture, Ecosystems & Environment, 1990
- Possible influence of hydrolytic enzymes on vesicular arbuscular mycorrhizal infection of alfalfaSoil Biology and Biochemistry, 1990
- THE APPARENT WIDTH OF THE RHIZOSPHERE OF TRIFOLIUM SUBTERRANEUM L. FOR VESICULAR‐ARBUSCULAR MYCORRHIZAL NFECTION: EFFECTS OF TIME AND OTHER FACTORSNew Phytologist, 1986
- EFFECTS OF PHOTON IRRADIANCE ON THE GROWTH OF SHOOTS AND ROOTS, ON THE RATE OF INITIATION OF MYCORRHIZAL INFECTION AND ON THE GROWTH OF INFECTION UNITS IN TRIFOLIUM SUBTERRANEUM L.New Phytologist, 1986
- THE DEVELOPMENT OF MYCORRHIZAL ROOT SYSTEMS IN TRIFOLIUM SUBTERRANEUM L.: GROWTH OF ROOTS AND THE UNIFORMITY OF SPATIAL DISTRIBUTION OF MYCORRHIZAL INFECTION UNITS IN YOUNG PLANTSNew Phytologist, 1986
- THE DEVELOPMENT OF ENDOMYCORRHIZAL ROOT SYSTEMS VI. THE RELATIONSHIP BETWEEN DEVELOPMENT OF INFECTION, AND INTENSITY OF INFECTION IN YOUNG LEEK ROOTSNew Phytologist, 1986
- THE DEVELOPMENT OF ENDOMYCORRHIZAL ROOT SYSTEMS V. THE DETAILED PATTERN OF DEVELOPMENT OF INFECTION AND THE CONTROL OF INFECTION LEVEL BY HOST IN YOUNG LEEK PLANTSNew Phytologist, 1984
- A QUANTITATIVE STUDY OF MYCORRHIZAL INFECTION IN TRIFOLIUM: SEPARATE DETERMINATION OF THE RATES OF INFECTION AND OF MYCELIAL GROWTHNew Phytologist, 1981
- Development of a vesicular-arbuscular mycorrhiza in bean rootsCanadian Journal of Botany, 1979
- Improved procedures for clearing roots and staining parasitic and vesicular-arbuscular mycorrhizal fungi for rapid assessment of infectionTransactions of the British Mycological Society, 1970